生材研・無機生体材料学分野

396  件  
※ 登録方法の違いにより重複して表示されている場合があります。
  1. Kobayashi, M; Shimabukuro, M; Aoki, S; Kishida, R; Kawashita, M: Micro-arc oxidation for balancing antibacterial activity and bone formation on titanium surface MATERIALS LETTERS. 2024.12; 377 137531. ( DOI )

  2. Miyake, R; Shimabukuro, M; Terauchi, M; Marukawa, E; Kawashita, M: Amorphous Magnesium Coating for Achieving Functional Changes from Antibacterial to Osteogenic Activities ACS APPLIED BIO MATERIALS. 2024.12; 7 (12): 8565-8572. ( PubMed , DOI )

  3. Rosciszewska, M; Shimabukuro, M; Ronowska, A; Mielewczyk-Gryn, A; Hanawa, T: Enhanced bioactivity and mechanical properties of silicon-infused titanium oxide coatings formed by micro-arc oxidation on selective laser melted Ti13Nb13Zr alloy CERAMICS INTERNATIONAL. 2024.11; 50 (21): 43979-43993. ( DOI )

  4. Li Chang, Peng Chen, Takayuki Mokudai, Masakazu Kawashita, Itaru Mizoguchi, Hiroyasu Kanetaka: Enhancing Titanium Osteoconductivity by Alkali-Hot Water Treatment ACS Omega. 2024.11; 9 (44): 44568-44576. ( PubMed , DOI )

  5. Yokoi, T; Watanabe, M; Kawashita, M: Octacalcium phosphate with incorporated meso-2,3-dimercaptosuccinate ions exhibiting continuous interplanar spacing expansion JOURNAL OF THE CERAMIC SOCIETY OF JAPAN. 2024.11; 132 (11): ( DOI )

  6. Taishi Yokoi, Tomoyo Goto, Tohru Sekino, Tomoka Hasegawa, Peng Chen, Hiroyasu Kanetaka, Kaname Yoshida, Masaya Shimabukuro, Masakazu Kawashita: LaMer-model-based synthesis method for fine particles of octacalcium phosphate and related functional compounds CrystEngComm. 2024.11; 26 6008-6016. ( DOI )

  7. Koichiro Hayashi, Masaya Shimabukuro, Cheng Zhang, Ahmad Nazir Taleb Alashkar, Ryo Kishida, Akira Tsuchiya, Kunio Ishikawa: Silver phosphate-modified carbonate apatite honeycomb scaffolds for anti-infective and pigmentation-free bone tissue engineering Materials today. Bio. 2024.08; 27 101161. ( PubMed , DOI )

  8. Yokoi, T; Tomita, S; Nakamura, J; Sugawara-Narutaki, A; Matsukawa, Y; Kawashita, M; Ohtsuki, C: Apatite Formation on α-Tricalcium Phosphate Modified with Bioresponsive Ceramics in Simulated Body Fluid Containing Alkaline Phosphatase BIOMIMETICS. 2024.08; 9 (8): ( PubMed , DOI )

  9. Wang, YJ; Yokoi, T; Shimabukuro, M; Kawashita, M: Calcium Citrate Amount and Gelatine Source Impact on Hydroxyapatite Formation in Bone Regeneration Material in Simulated Body Fluid MOLECULES. 2024.08; 29 (16): ( PubMed , DOI )

  10. Yokoi, T; Watanabe, M; Kawashita, M: Octacalcium phosphate with incorporated terephthalate ion derivatives: novel guest molecules and unique fluorescence properties DALTON TRANSACTIONS. 2024.07; 53 (34): 14163-14170. ( PubMed , DOI )

  11. Zhibin Wang, Masaya Shimabukuro, Ryo Kishida, Taishi Yokoi, Masakazu Kawashi: Effects of pH on the Microarchitecture of Carbonate Apatite Granules Fabricated Through a Dissolution–Precipitation Reaction Frontiers in Bioengineering and Biotechnology. 2024.06; 12 1396275. ( PubMed , DOI )

  12. Sung, PC; Yokoi, T; Shimabukuro, M; Mokudai, T; Kawashita, M: Apatite-Forming Ability and Visible Light-Enhanced Antibacterial Activity of CuO-Supported TiO2 Formed on Titanium by Chemical and Thermal Treatments JOURNAL OF FUNCTIONAL BIOMATERIALS. 2024.05; 15 (5): ( PubMed , DOI )

  13. Reziwanguli Aili, Hidemi Nakata, Munemitsu Miyasaka, Shinji Kuroda, Yukihiko Tamura, Taishi Yokoi, Masakazu Kawashita, Yasushi Shimada, Shohei Kasugai, Eriko Marukawa: Evaluation of a hydroxyapatite-crosslinked fish gelatin membranes. J Dent Sci. 2024.04; 19 (2): 900-908. ( PubMed , DOI )

  14. 島袋将弥: 骨・関節領域感染制御のためのバイオマテリアル開発 まてりあ. 2024.04; 63 (4): 243-247. ( DOI )

  15. Katada H, Inokoshi M, Kamijo S, Liu H, Xu K, Kawashita M, Yokoi T, Shimabukuro M, Minakuchi S: Effects of multiple firings on the translucency, crystalline phase, and mechanical strength of highly translucent zirconia. Dent Mater J. 2024.03; 43 (2): 294-302. ( PubMed , DOI )

  16. Katada Haruko, Inokoshi Masanao, Kamijo Singo, Liu Hengyi, Xu Kaiqi, Kawashita Masakazu, Yokoi Taishi, Shimabukuro Masaya, Minakuchi Shunsuke: Effects of multiple firings on the translucency, crystalline phase, and mechanical strength of highly translucent zirconia Dental Materials Journal. 2024.03; 43 (2): 294-302. ( 医中誌 )

  17. Shimabukuro, M; Morinobu, M; Tsuchiya, A; Kishida, R; Kawashita, M; Ishikawa, K: Antibacterial and osteogenic thin films on Ti-6Al-4V surface formed by passivation process in copper hydroxide solution SCIENCE AND TECHNOLOGY OF ADVANCED MATERIALS. 2024.02; 25 (1): 2303327. ( PubMed , DOI )

  18. Toshiki Miyazaki, Takumi Wakayama, Masaru Oda, Masakazu Kawashita: Fabrication of quantum dot-immobilized Y2O3 microspheres with effective photoluminescence for cancer radioembolization therapy Science and Technology of Advanced Materials. 2024; 25 (1): 2331412. ( PubMed , DOI )

  1. Aoki S, Shimabukuro M, Kishida R, Kyuno K, Noda K, Yokoi T, Kawashita M: Electrochemical Deposition of Copper on Bioactive Porous Titanium Dioxide Layer: Antibacterial and Pro-Osteogenic Activities. ACS applied bio materials. 2023.11; 6 (12): 5759-5767. ( PubMed , DOI )

  2. Taishi Yokoi, Masahiro Watanabe, Yuejun Wang, Tomoyo Goto, Tohru Sekino, Masaya Shimabukuro, Masakazu Kawashita: Synthesis and fluorescence properties of octacalcium phosphate with incorporated pyridinedicarboxylate ions Journal of the Ceramic Society of Japan. 2023.10; 131 (10): 701-707. ( DOI )

  3. Kubota, M; Furuya, M; Yokota, K; Kanetaka, H; Ogawa, T; Saito, S; Jeyadevan, B; Shimabukuro, M; Yokoi, T; Kawashita, M: Proliferation and differentiation of MC3T3-E1 cells on polymethyl methacrylate cements containing Fe3O4 and TiO2 for hyperthermic treatment of metastatic bone tumors JOURNAL OF BIOMATERIALS APPLICATIONS. 2023.10; 38 (5): 605-613. ( PubMed , DOI )

  4. Kuroyama K, Fujikawa R, Goto T, Sekino T, Nakamura F, Kimura-Suda H, Chen P, Kanetaka H, Hasegawa T, Yoshida K, Murata M, Nakata H, Shimabukuro M, Kawashita M, Yoda T, Yokoi T: Development of bioinspired damage-tolerant calcium phosphate bulk materials. Science and technology of advanced materials. 2023.10; 24 (1): 2261836. ( PubMed , DOI )

  5. Tan, JLT; Shimabukuro, M; Kobayashi, M; Kishida, R; Kawashita, M; Ishikawa, K: Ant‐nest type porous scaffold with micro‐struts consisting of carbonate apatite for promoting bone formation and scaffold resorption Journal of biomedical materials research. Part A. 2023.09; 112 (1): 31-43. ( PubMed , DOI )

  6. Masaya Shimabukuro, Mamiko Kobayashi, Masakazu Kawashita: Metallic Substrate Influences on the Osteogenic Cell Compatibility and Antibacterial Activity of Silver-Incorporated Porous Oxide Layers Formed by Micro-Arc Oxidation ACS APPLIED ENGINEERING MATERIALS. 2023.08; 1 (8): 2288-2294. ( DOI )

  7. K. Suzuki, M. Iwatsu, T. Mokudai, H. Kanetaka, M. Shimabukuro, T. Yokoi, M. Kawashita: Visible-light-enhanced antibacterial activity of silver and copper co-doped titania formed on titanium via chemical and thermal treatments Molecules. 2023.01; 28 (2): 650. ( DOI )

  8. Yokoi T, Watanabe M, Nakamura F, Kimura-Suda H, Shimabukuro M, Kawashita M: Formation of octacalcium phosphate with incorporated dicarboxylate ions containing disulfide bonds. Dalton transactions (Cambridge, England : 2003). 2023; 52 (45): 16586-16590. ( PubMed , DOI )

  1. T. Yokoi, M. Watanabe, T. Goto, S. Meng, T. Sekino, M. Shimabukuro, M. Kawashita: Synthesis of octacalcium phosphate containing glutarate ions with a high incorporation fraction Materials. 2022.12; 16 (1): 64. ( DOI )

  2. M. Hashimoto, S. Takahashi, K. Kawahara, D. Yokoe, T. Kato, T. Ogawa, M. Kawashita, H. Kanetaka: Effect of citric acid content on magnetic property of magnetite particles for detecting virus Journal of the Ceramic Society of Japan. 2022.11; 130 (11): 882-888. ( DOI )

  3. Tan Janice Lay Tin, Shimabukuro Masaya, Kishida Ryo, Ishikawa Kunio: Fabrication and histological evaluation of ant-nest type porous carbonate apatite artificial bone using polyurethane foam as a porogen Journal of Biomedical Materials Research Part B: Applied Biomaterials . 2022.10; 111 (3): 560-567. ( PubMed , DOI )

  4. Sikun Meng, Taishi Yokoi, Jingyang Kang, Yukihiko Tamura, Masakazu Kawashita, Eriko Marukawa, Shohei Kasugai, Shinji Kuroda, Hidemi Nakata: Modification of hydroxyapatite by doping lithium through acid-base reaction Journal of the Ceramic Society of Japan. 2022.09; 130 (9): 802-806. ( DOI )

  5. Taishi Yokoi, Masaya Shimabukuro, Masakazu Kawashita: Octacalcium phosphate with incorporated carboxylate ions: a review Science and Technology of Advanced Materials. 2022.07; 23 (1): 434-445. ( PubMed , DOI )

  6. A. Kizalaite, V. Klimavicius, J. Versockiene, E. Lastauskiene, T. Murauskas, R. Skaudzius, T. Yokoi, M. Kawashita, T. Goto, T. Sekino, A. Zarkov: Peculiarities of the formation, structural and morphological properties of zinc whitlockite (Ca18Zn2(HPO4)2(PO4)12) synthesized via phase transformation process under hydrothermal conditions CrystEngComm. 2022.06; ( DOI )

  7. Myat Myat-Htun, Ahmad-Fauzi Mohd Noor, Masakazu Kawashita, Yanny Marliana Baba Ismail: Tailoring mechanical and in vitro biological properties of calcium-silicate based bioceramic through iron doping in developing future material J Mech Behav Biomed Mater. 2022.04; 128 105122. ( PubMed , DOI )

  8. Taishi Yokoi, Tomoyo Goto, Tohru Sekino, Masakazu Kawashita: Fluorescent properties of octacalcium phosphate with incorporated isophthalate ions Journal of the Ceramic Society of Japan. 2022.04; ( DOI )

  9. Koichiro Hayashi, Toshiki Yanagisawa, Masaya Shimabukuro, Ryo Kishida, Kunio Ishikawa: Granular honeycomb scaffolds composed of carbonate apatite for simultaneous intra- and inter-granular osteogenesis and angiogenesis. Materials today. Bio. 2022.03; 14 100247. ( PubMed , DOI )

  10. Masaya Shimabukuro, Koichiro Hayashi, Ryo Kishida, Akira Tsuchiya, Kunio Ishikawa: Surface functionalization with copper endows carbonate apatite honeycomb scaffold with antibacterial, proangiogenic, and pro-osteogenic activities. Biomaterials advances. 2022.03; 135 212751. ( PubMed , DOI )

  11. Hiroki Chigama, Hiroyasu Kanetaka, Maiko Furuya, Kotone Yokota, Masakazu Kawashita: Indirect cytotoxicity evaluations of antibacterial raw silk fabric doped with calcium, copper and zinc on fibroblasts and osteoblasts. J Biomater Appl. 2022.03; 36 (8): 1417-1426. ( PubMed , DOI )

  12. Freitas P, Kishida R, Hayashi K, Tsuchiya A, Shimabukuro M, Ishikawa K: Fabrication and histological evaluation of porous carbonate apatite blocks using disodium hydrogen phosphate crystals as a porogen and phosphatization accelerator. Journal of biomedical materials research. Part A. 2022.02; 110 (6): 1278-1290. ( PubMed , DOI )

  13. Elsheikh M, Kishida R, Hayashi K, Tsuchiya A, Shimabukuro M, Ishikawa K: Effects of pore interconnectivity on bone regeneration in carbonate apatite blocks. Regenerative biomaterials. 2022.02; 9 (1): rbac010. ( PubMed , DOI )

  14. Koichiro Hayashi, Akira Tsuchiya, Masaya Shimabukuro, Kunio Ishikawa: Multiscale Porous Scaffolds Constructed of Carbonate Apatite Honeycomb Granules for Bone Regeneration Materials & Design. 2022.02; 14 110468. ( DOI )

  15. Taishi Yokoi, Hideaki Matsubara, Takuto Kamitani, Sota Terasaka, Masanobu Kamitakahara: Preparing dense Yb2SiO5 sintered bodies from Yb–Si–O powder synthesized by the polymerizable complex method and appropriate calcination Journal of the Ceramic Society of Japan. 2022.01; 130 118-122.

  16. Masami Hashimoto, Seiji Takahashi, Koichi Kawahara, Tomoyuki Ogawa, Masakazu Kawashita: Effect of heating conditions on the magnetic properties of micron-sized carboxyl modified-magnetite particles synthesized by a spray pyrolysis and heating process Advanced Powder Technology. 2022.01; 33 (2): 103412. ( DOI )

  17. Masaya Shimabukuro, Koichiro Hayashi, Ryo Kishida, Akira Tsuchiya, Kunio Ishikawa: Effects of carbonate ions in phosphate solution on the fabrication of carbonate apatite through a dissolution–precipitation reaction Ceramics International. 2022.01; 48 (1): 1032-1037. ( DOI )

  18. Hayashi K, Shimabukuro M, Ishikawa K: Antibacterial Honeycomb Scaffolds for Achieving Infection Prevention and Bone Regeneration. ACS applied materials & interfaces. 2022.01; 14 (3): 3762-3772. ( PubMed , DOI )

  19. Shimabukuro M, Hayashi K, Kishida R, Tsuchiya A, Ishikawa K: No-Observed-Effect Level of Silver Phosphate in Carbonate Apatite Artificial Bone on Initial Bone Regeneration. ACS infectious diseases. 2022.01; 8 (1): 159-169. ( PubMed , DOI )

  20. Koichiro Hayashi, Masaya Shimabukuro, Ryo Kishida, Akira Tsuchiya, Kunio Ishikawa: Structurally Optimized Honeycomb Scaffolds with Outstanding Ability for Vertical Bone Augmentation Journal of Advanced Research. 2022.01; 41 101-112. ( DOI )

  21. Taishi Yokoi, Akiyoshi Mio, Jin Nakamura, Ayae Sugawara-Narutaki, Masakazu Kawashita, Chikara Ohtsuki: Transformation behaviour of salts composed of calcium ions and phosphate esters with different linear alkyl chain structures in a simulated body fluid modified with alkaline phosphatase. Sci Technol Adv Mater. 2022; 23 (1): 341-351. ( PubMed , DOI )

  1. Wang Yunting, Yoshida Yutaka, Kamiie Junichi, Shiwaku Yukari, Suzuki Osamu, Furuya Maiko, Yokota Kotone, Kanetaka Hiroyasu, Yokoi Taishi, Kawashita Masakazu: Proteomic identification of serum proteins to induce osteoconductivity of hydroxyapatite(和訳中) Dental Materials Journal. 2021.11; 40 (6): 1428-1436. ( 医中誌 )

  2. Kanae Suzuki, Taishi Yokoi, Misato Iwatsu, Maiko Furuya, Kotone Yokota, Takayuki Mokudai, Hiroyasu Kanetaka, Masakazu Kawashita: Antibacterial properties of Cu-doped TiO#D2#DR prepared by chemical and heat treatment of Ti metal Journal of Asian Ceramic Societies. 2021.10; 9 (4): 1448-1456. ( DOI )

  3. Mikami Keita, Kanetaka Hiroyasu, Furuya Maiko, Yokota Kotone, Saijo Yoshifumi, Yokoi Taishi, Kawashita Masakazu: Hydrothermal synthesis and preliminary cytotoxicity assessment of gadolinium borate nanoparticles for neutron capture therapy Journal of Nanoparticle Research. 2021.09; 23 (9): 201. ( DOI )

  4. Koichiro Hayashi, Masaya Shimabukuro, Ryo Kishida, Akira Tsuchiya, Kunio Ishikawa: Honeycomb Scaffolds Capable of Achieving Barrier Membrane-Free Guided Bone Regeneration Materials Advances. 2021.09; 2 (23): 7638-7649. ( DOI )

  5. Wang Y, Yoshida Y, Kamiie J, Shiwaku Y, Suzuki O, Furuya M, Yokota K, Kanetaka H, Yokoi T, Kawashita M: Proteomic identification of serum proteins to induce osteoconductivity of hydroxyapatite. Dental Materials Journal. 2021.08; 46 (6): 1428-1436. ( PubMed , DOI )

  6. Tsutsumi Harumi, Tsutsumi Yusuke, Shimabukuro Masaya, Manaka Tomoyo, Chen Peng, Ashida Maki, Ishikawa Kunio, Katayama Hideki, Hanawa Takao: Investigation of the Long-Term Antibacterial Properties of Titanium by Two-Step Micro-Arc Oxidation Treatment Coatings. 2021.07; 11 (7): 798. ( DOI )

  7. Yokoi Taishi, Kawashita Masakazu: Understanding the steric structures of dicarboxylate ions incorporated in octacalcium phosphate crystals Materials. 2021.06; 14 (11): 2703. ( PubMed , DOI )

  8. Kubota Moe, Yokoi Taishi, Ogawa Tomoyuki, Saito Shin, Furuya Maiko, Yokota Kotone, Kanetaka Hiroyasu, Jeyadevan Balachandran, Kawashita Masakazu: In-vitro heat-generating and apatite-forming abilities of PMMA bone cement containing TiO#D2#DR and Fe#D3#DRO#D4#DR Ceramics International. 2021.05; 47 (9): 12292-12299. ( DOI )

  9. Shimabukuro Masaya, Tsutsumi Harumi, Tsutsumi Yusuke, Manaka Tomoyo, Chen Peng, Ashida Maki, Ishikawa Kunio, Katayama Hideki, Hanawa Takao: Enhancement of antibacterial property of titanium by two-step micro arc oxidation treatment Dental Materials Journal. 2021.05; 40 (3): 592-598. ( 医中誌 )

  10. Shimabukuro Masaya, Tsutsumi Harumi, Tsutsumi Yusuke, Manaka Tomoyo, Chen Peng, Ashida Maki, Ishikawa Kunio, Katayama Hideki, Hanawa Takao: Enhancement of antibacterial property of titanium by two-step micro arc oxidation treatment DENTAL MATERIALS JOURNAL. 2021.05; 40 (3): 592-598. ( PubMed , DOI )

  11. Wang Yunting, Tsuru Kanji, Ishikawa Kunio, Yokoi Taishi, Kawashita Masakazu: Fibronectin adsorption on carbonate-containing hydroxyapatite Ceramics International. 2021.04; 47 (8): 11769-11776. ( DOI )

  12. Hiji Akari, Hanawa Takao, Yokoi Taishi, Chen Peng, Ashida Maki, Kawashita Masakazu: Time transient of calcium and phosphate ion adsorption by rutile crystal facets in Hanks' solution characterized by XPS Langmuir. 2021.03; 37 (12): 3597-3604. ( PubMed , DOI )

  13. Shibata Misaki, Kanetaka Hiroyasu, Furuya Maiko, Yokota Kotone, Ogawa Tomoyuki, Kawashita Masakazu: Cytotoxicity evaluation of iron nitride nanoparticles for biomedical applications Journal of Biomedical Materials Research Part A. 2021.03; 109 (10): 1784-1791. ( PubMed , DOI )

  14. Yokoi Taishi, Goto Tomoyo, Hara Mitsuo, Sekino Tohru, Seki Takahiro, Kamitakahara Masanobu, Ohtsuki Chikara, Kitaoka Satoshi, Takahashi Seiji, Kawashita Masakazu: Incorporation of tetracarboxylate ions into octacalcium phosphate for the development of next-generation biofriendly materials Communications Chemistry. 2021.01; 4 (1): 4. ( DOI )

  15. Kamitakahara Masanobu, Ishii Airi, Matsubara Hideaki, Kawashita Masakazu, Furuya Maiko, Kanetaka Hiroyasu: Fabrication and evaluation of ascorbic acid phosphate-loaded spherical porous hydroxyapatite/octacalcium phosphate granules JOURNAL OF THE CERAMIC SOCIETY OF JAPAN. 2021.01; 129 (1): 60-65. ( DOI )

  16. Magda Dziaduszewska, Masaya Shimabukuro, Tomasz Seramak, Andrzej Zieliński, Takao Hanawa: Formation and characterization of anodic titanium oxide films containing Ca, P and Si ions on selective-laser melted Ti13Zr13Nb alloy Engineering of Biomaterials. 2021; 24 (163):

  1. Taishi Yokoi, Tatsuki Ujiyama, Jin Nakamura, Masakazu Kawashita, Chikara Ohtsuki: Behaviour of calcium phosphate ester salts in a simulated body fluid modified with alkaline phosphatase: a new concept of ceramic biomaterials Materials Advances. 2020.11; 1 (9): 3215-3220. ( DOI )

  2. Hiji Akari, Hanawa Takao, Shimabukuro Masaya, Chen Peng, Ashida Maki, Ishikawa Kunio: Initial formation kinetics of calcium phosphate on titanium in Hanks' solution characterized using XPS Surface and Interface Analysis. 2020.10; 53 (2): 185-193. ( DOI )

  3. Shimabukuro M: Antibacterial Property and Biocompatibility of Silver, Copper, and Zinc in Titanium Dioxide Layers Incorporated by One-Step Micro-Arc Oxidation: A Review. Antibiotics (Basel, Switzerland). 2020.10; 9 (10): 716. ( PubMed , DOI )

  4. Shimabukuro Masaya, Tsutsumi Yusuke, Nozaki Kosuke, Chen Peng, Yamada Risa, Ashida Maki, Doi Hisashi, Nagai Akiko, Hanawa Takao: 電気化学的処理にて銅を導入したチタン表面が通性嫌気性細菌に対して示す抗菌作用の調査(Investigation of antibacterial effect of copper introduced titanium surface by electrochemical treatment against facultative anaerobic bacteria) Dental Materials Journal. 2020.08; 39 (4): 639-647. ( 医中誌 )

  5. Shimabukuro M, Tsutsumi Y, Nozaki K, Chen P, Yamada R, Ashida M, Doi H, Nagai A, Hanawa T: Investigation of antibacterial effect of copper introduced titanium surface by electrochemical treatment against facultative anaerobic bacteria. Dental materials journal. 2020.08; 39 (4): 639-647. ( PubMed , DOI )

  6. Shimabukuro Masaya, Tsutsumi Yusuke, Nozaki Kosuke, Chen Peng, Yamada Risa, Ashida Maki, Doi Hisashi, Nagai Akiko, Hanawa Takao: Investigation of antibacterial effect of copper introduced titanium surface by electrochemical treatment against facultative anaerobic bacteria Dental Materials Journal. 2020.08; 39 (4): 639-647. ( DOI )

  7. Moe Kubota, Taishi Yokoi, Tomoyuki Ogawa, Shin Saito, Maiko Furuya, Kotone Yokota, Hiroyasu Kanetaka, Balachandran Jeyadevan, Masakazu Kawashita: Setting behavior, mechanical properties, and heat generation under AC magnetic fields of Fe#D3#DRO#D4#DR/TiO#D2#DR/PMMA composite bone cement Medical Devices & Sensors. 2020.08; 3 e10114. ( DOI )

  8. Myat-Htun Myat, Noor Ahmad-Fauzi Mohd, Kawashita Masakazu, Ismail Yanny Marliana Baba: Enhanced sinterability and in vitro bioactivity of barium-doped akermanite ceramic Ceramics International. 2020.08; 46 (11): 19062-19068. ( DOI )

  9. Dziaduszewska Magda, Shimabukuro Masaya, Seramak Tomasz, Zielinski Andrzej, Hanawa Takao: Effects of Micro-Arc Oxidation Process Parameters on Characteristics of Calcium-Phosphate Containing Oxide Layers on the Selective Laser Melted Ti13Zr13Nb Alloy Coatings. 2020.07; 10 (8): 745. ( DOI )

  10. Miyazaki Toshiki, Tange Takayuki, Kawashita Masakazu, Jeyadevan Balachandran: Structural control of magnetite nanoparticles for hyperthermia by modification with organic polymers: effect of molecular weight RSC Advances. 2020.07; 10 (44): 26374-26380. ( DOI )

  11. Shimabukuro M, Hiji A, Manaka T, Nozaki K, Chen P, Ashida M, Tsutsumi Y, Nagai A, Hanawa T: Time-Transient Effects of Silver and Copper in the Porous Titanium Dioxide Layer on Antibacterial Properties. Journal of functional biomaterials. 2020.06; 11 (2): ( PubMed , DOI )

  12. Chigama Hiroki, Yokoi Taishi, Furuya Maiko, Yokota Kotone, Kanetaka Hiroyasu, Kawashita Masakazu: Apatite formation and bacterial growth on raw silk fabric heated in argon gas Journal of Materials Science: Materials in Medicine. 2020.05; 31 (6): 49. ( PubMed , DOI )

  13. Yokoi Taishi, Goto Tomoyo, Kato Takeharu, Takahashi Seiji, Nakamura Jin, Sekino Tohru, Ohtsuki Chikara, Kawashita Masakazu: Hydroxyapatite formation from octacalcium phosphate and its related compounds: A discussion of the transformation mechanism Bulletin of the Chemical Society of Japan. 2020.05; 93 (5): 701-707. ( DOI )

  14. Iwatsu M, Kanetaka H, Mokudai T, Ogawa T, Kawashita M, Sasaki K: Visible light-induced photocatalytic and antibacterial activity of N-doped TiO#D2#DR Journal of Biomedical Materials Research. Part B, Applied Biomaterials. 2020.02; 108 (2): 451-459. ( PubMed , DOI )

  15. Kawashita Masakazu, Ueno Shoji, Handa Shoma, Furuya Maiko, Yokota Kotone, Kanetaka Hiroyasu: In vitro evaluation of doxorubicin-eluting porous titania microspheres for transcatheter arterial chemoembolization Journal of Asian Ceramic Societies. 2020.01; 8 (1): 10-20. ( DOI )

  16. Shimabukuro Masaya, Manaka Tomoyo, Tsutsumi Yusuke, Nozaki Kosuke, Chen Peng, Ashida Maki, Nagai Akiko, Hanawa Takao: Corrosion Behavior and Bacterial Viability on Different Surface States of Copper Materials Transactions. 2020; 61 (6): 1143-1148. ( DOI )

  1. Emi Kawai, Hideki Kakisawa, Atsushi Kubo, Norio Yamaguchi, Taishi Yokoi, Takashi Akatsu, Satoshi Kitaoka, Yoshitaka Umeno: Crack initiation criteria in EBC under thermal stress Coatings. 2019.12;

  2. Sota Terasaka, Hideaki Matsubara, Takashi Shirato, Masanobu Kamitakahara, Taishi Yokoi, Norio Yamaguchi, Byung-Nam Kim: Experimental and computational study on sintering of ceramic coating layers with complex porous structures Journal of the American Ceramic Society. 2019.12;

  3. Shimabukuro Masaya, Ito Haruka, Tsutsumi Yusuke, Nozaki Kosuke, Chen Peng, Yamada Risa, Ashida Maki, Nagai Akiko, Hanawa Takao: The Effects of Various Metallic Surfaces on Cellular and Bacterial Adhesion METALS. 2019.11; 9 (11): ( DOI )

  4. Shimabukuro Masaya, Tsutsumi Yusuke, Nozaki Kosuke, Chen Peng, Yamada Risa, Ashida Maki, Doi Hisashi, Nagai Akiko, Hanawa Takao: Chemical and Biological Roles of Zinc in a Porous Titanium Dioxide Layer Formed by Micro-Arc Oxidation COATINGS. 2019.11; 9 (11): ( DOI )

  5. Shimabukuro Masaya, Tsutsumi Yusuke, Yamada Risa, Ashida Maki, Chen Peng, Doi Hisashi, Nozaki Kosuke, Nagai Akiko, Hanawa Takao: Investigation of Realizing Both Antibacterial Property and Osteogenic Cell Compatibility on Titanium Surface by Simple Electrochemical Treatment ACS BIOMATERIALS SCIENCE & ENGINEERING. 2019.11; 5 (11): 5623-5630. ( DOI )

  6. Kawai Emi, Kakisawa Hideki, Kubo Atsushi, Yamaguchi Norio, Yokoi Taishi, Akatsu Takashi, Kitaoka Satoshi, Umeno Yoshitaka: Crack Initiation Criteria in EBC under Thermal Stress COATINGS. 2019.11; 9 (11): ( DOI )

  7. Yokoi Taishi: The development of novel calcium phosphate-polymer composite biomaterials with macro- to nano-level controlled hierarchical structures JOURNAL OF THE CERAMIC SOCIETY OF JAPAN. 2019.10; 127 (10): 715-721. ( DOI )

  8. Taishi Yokoi: The development of novel calcium phosphate-polymer composite biomaterials with macro- to nano-level controlled hierarchical structures Journal of the Ceramic Society of Japan. 2019.10; 127 (10): 715-721.

  9. Shibata M, Ogawa T, Kawashita M: Synthesis of iron nitride nanoparticles from magnetite nanoparticles of different sizes for application to magnetic hyperthermia Ceramics International. 2019.08; 45 (17): 23707-23714. ( DOI )

  10. Miyazaki T, Iwanaga A, Shirosaki Y, Kawashita M: In situ synthesis of magnetic iron oxide nanoparticles in chitosan hydrogels as a reaction field: Effect of cross-linking density Colloids and Surfaces B: Biointerfaces. 2019.07; 179 334-339. ( DOI )

  11. Miyazaki T, Akaike J, Kawashita M, Lim HN: In vitro apatite mineralization and heat generation of magnetite-reduced graphene oxide nanocomposites for hyperthermia treatment Materials Science and Engineering: C. 2019.06; 99 68-72. ( DOI )

  12. Chigama H, Kanetaka H, Furuya M, Yokota K, Kawashita M: Evaluation of apatite-forming ability and antibacterial activity of raw silk fabrics doped with metal ions Materials Transactions. 2019.05; 60 (5): 808-814. ( DOI )

  13. Kamitakahara M, Takahashi S, Yokoi T, Inoue C, Ioku K: Adhesion Behavior of Microorganisms Isolated from Soil on Hydroxyapatite and Other Materials. Applied biochemistry and biotechnology. 2019.03; 187 (3): 984-993. ( PubMed , DOI )

  14. Taishi Yokoi, Tomoyo Goto, Satoshi Kitaoka: Formation of hydroxyapatite crystals from octacalcium phosphate with incorporated succinate ion under hydrothermal conditions Chemistry Letters. 2019; 48 855-858.

  15. Masanobu Kamitakahara, Shohei Takahashi, Taishi Yokoi, Chihiro Inoue and Koji Ioku: Adhesion behavior of microorganisms isolated from soil on hydroxyapatite and other materials Applied Biochemistry and Biotechnology. 2019; 187 984-993.

  1. DRN Correa, LA Rocha, AR Ribeiro, S Gemini-Piperni, BS Archanjo, CA Achete, J Werckmann, CRM Afonso, M Shimabukuro, H Doi, Y Tsutsumi, T Hanawa: Growth mechanisms of Ca- and P-rich MAO films in Ti-15Zr-xMo alloys for osseointegrative implants Surface and Coatings Technology. 2018.06; 344 373-382. ( DOI )

  2. Miyazaki T, Sasaki T, Shirosaki Y, Yokoyama K, Kawashita M: Effect of metallographic structure and machining process on the apatite-forming ability of sodium hydroxide- and heat-treated titanium. Bio-medical materials and engineering. 2018; 29 (1): 109-118. ( PubMed , DOI )

  3. Miyazaki T, Sasaki T, Shirosaki Y, Yokoyama K, Kawashita M: Effect of metallographic structure and machining process on the apatite-forming ability of sodium hydroxide- and heat-treated titanium Bio-Medical Materials and Engineering. 2018; 29 (1): 109-118. ( DOI )

  4. Kawashita M, Iwabuchi Y, Suzuki K, Furuya M, Yokota K, Kanetaka H: Surface structure and in vitro apatite-forming ability of titanium doped with various metals Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2018; 555 558-564. ( DOI )

  5. Kawashita M: Development and evaluation of the properties of functional ceramic microspheres for biomedical applications Journal of the Ceramic Society of Japan. 2018; 126 (1): 1-7. ( DOI )

  6. Takafumi Ogawa, Noriko Otani, Taishi Yokoi, Craig A. J. Fisher, Akihide Kuwabara, Hiroki Moriwake, Masato Yoshiya, Satoshi Kitaoka, Masasuke Takata: Density functional study of the phase stability and Raman spectra of Yb2O3, Yb2SiO5 and Yb2Si2O7 under pressure Physical Chemistry Chemical Physics. 2018; 20 (24): 16518-16527. ( DOI )

  7. Taishi Yokoi, Tomoyo Goto, Satoshi Kitaoka: Transformation of dicalcium phosphate dihydrate into octacalcium phosphate with incorporated dicarboxylate ions Journal of the Ceramic Society of Japan. 2018; 126 462-468.

  8. Masanobu Kamitakahara, Shohei Takahashi, Taishi Yokoi and Chiiro Inoue: Preparation of spherical porous hydroxyapatite granules as support materials for microorganisms Journal of the Ceramic Society of Japan. 2018; 126 732-735.

  9. Kenshiro Kimura, Masanobu Kamitakahara, Taishi Yokoi and Koji Ioku: Formation process of hydroxyapatite granules in agarose hydrogel by electrophoresis Crystal Growth & Design. 2018; 18 1961-1966.

  1. Taishi Yokoi, Shingo Machida, Yoshiyuki Sugahara, Masami Hashimoto, Satoshi Kitaoka: Enantioselective incorporation of dicarboxylate guests by octacalcium phosphate CHEMICAL COMMUNICATIONS. 2017.06; 53 (48): 6524-6527. ( DOI )

  2. Taishi Yokoi, Norio Yamaguchi, Makoto Tanaka, Daisaku Yokoe, Takeharu Kato, Satoshi Kitaoka, Masasuke Takata: Preparation of a dense ytterbium disilicate layer via dual electron beam physical vapor deposition at high temperature MATERIALS LETTERS. 2017.04; 193 176-178. ( DOI )

  3. Kanetaka H, Liu G, Li Z, Miyazaki T, Furuya M, Kudo TA, Kawashita M: TiO#D2#DR microspheres containing magnetic nanoparticles for intra-arterial hyperthermia Journal of Biomedical Materials Research - Part B Applied Biomaterials. 2017; 105 (8): 2308-2314. ( DOI )

  4. Mamat M, Darus F, Md Isa R, Jaafar M, Kawashita M: Hierarchical bioceramic scaffold for tissue engineering: A review International Journal of Polymeric Materials and Polymeric Biomaterials. 2017; 66 (17): 877-890. ( DOI )

  5. Masanobu Kamitakahara, Takashi Shirato, Taishi Yokoi, Hideaki Matsubara, Yasuaki Shibata, Tohru Ikeda: Effect of silicate incorporation in alpha-tricalcium phosphate on behaviors of osteoblast-like cells Key Engineering Materials. 2017; 720 90-94. ( DOI )

  6. Taishi Yokoi, Norio Yamaguchi, Daisaku Yokoe, Takeharu Kato, Satoshi Kitaoka and Masasuke Takata: Densification of an ytterbium disilicate layer via dual electron beam physical vapor deposition at high temperature Materials Letters. 2017; 193 176-178.

  1. Sota Terasaka, Masanobu Kamitakahara, Taishi Yokoi, Hideaki Matsubara: Effects of carbonate inclusion on fluoride ion removal by hydroxyapatite: A discussion from the viewpoint of hydroxyapatite dissolution JOURNAL OF THE CERAMIC SOCIETY OF JAPAN. 2016.12; 124 (12): 1211-1216. ( DOI )

  2. Masaya Shimabukuro, Yusuke Tsutsumi, Maki Ashida, Peng Chen, Hisashi Doi, Takao Hanawa: Electrochemical Surface Treatment for Controlling the Release of Silver Ion As Antibacterial Agent on Titanium ECS Meeting Abstracts. 2016.09; (53): 4030.

  3. Kota Morishita, Eri Tatsukawa, Yasuaki Shibata, Fumio Suehiro, Masanobu Kamitakahara, Taishi Yokoi, Koji Ioku, Masahiro Umeda, Masahiro Nishimura, Tohru Ikeda: Diversity of multinucleated giant cells by microstructures of hydroxyapatite and plasma components in extraskeletal implantation model ACTA BIOMATERIALIA. 2016.07; 39 180-191. ( DOI )

  4. Kamitakahara M, Tatsukawa E, Shibata Y, Umemoto S, Yokoi T, Ioku K, Ikeda T: Effect of silicate incorporation on in vivo responses of α-tricalcium phosphate ceramics. Journal of materials science. Materials in medicine. 2016.05; 27 (5): 97. ( PubMed , DOI )

  5. Yusuke Tsutsumi, Mitsuo Niinomi, Masaaki Nakai, Masaya Shimabukuro, Maki Ashida, Peng Chen, Hisashi Doi, Takao Hanawa: Electrochemical Surface Treatment of a β-titanium Alloy to Realize an Antibacterial Property and Bioactivity Metals. 2016.03; 6 (4): 76. ( DOI )

  6. Fujita H, Kudo TA, Kanetaka H, Miyazaki T, Hashimoto M, Kawashita M: Adsorption of Laminin on Hydroxyapatite and Alumina and the MC3T3-E1 Cell Response ACS Biomaterials Science and Engineering. 2016; 2 (7): 1162-1168. ( DOI )

  7. Kamitakahara M, Ohtoshi N, Kawashita M, Ioku K: Spherical porous hydroxyapatite granules containing composites of magnetic and hydroxyapatite nanoparticles for the hyperthermia treatment of bone tumor Journal of Materials Science: Materials in Medicine. 2016; 27 (5): 93. ( DOI )

  8. Kuwahara Y, Miyazaki T, Shirosaki Y, Liu G, Kawashita M: Structures of organic additives modified magnetite nanoparticles Ceramics International. 2016; 42 (5): 6000-6004. ( DOI )

  9. Hasegawa M, Kudo TA, Kanetaka H, Miyazaki T, Hashimoto M, Kawashita M: Fibronectin adsorption on osteoconductive hydroxyapatite and non-osteoconductive α-alumina Biomedical Materials (Bristol). 2016; 11 (4): 045006. ( DOI )

  10. Kawashita M, Endo N, Watanabe T, Miyazaki T, Furuya M, Yokota K, Abiko Y, Kanetaka H, Takahashi N: Formation of bioactive N-doped TiO#D2#DR on Ti with visible light-induced antibacterial activity using NaOH, hot water, and subsequent ammonia atmospheric heat treatment Colloids and Surfaces B: Biointerfaces. 2016; 145 285-290. ( DOI )

  11. Kawashita M, Hasegawa M, Kudo TA, Kanetaka H, Miyazaki T, Hashimoto M: Effect of fibronectin adsorption on osteoblastic cellular responses to hydroxyapatite and alumina Materials Science and Engineering C. 2016; 69 1268-1272. ( DOI )

  12. Satoshi Kajiyama, Takeshi Sakamoto, Moe Inoue, Tatsuya Nishimura, Taishi Yokoi, Chikara Ohtsuki, Takashi Kato: Rapid and topotactic transformation from octacalcium phosphate to hydroxyapatite (HAP): a new approach to self-organization of free-standing thin-film HAP-based nanohybrids CRYSTENGCOMM. 2016; 18 (43): 8388-8395. ( DOI )

  13. Gazi Jased Ahmed, Eri Tatsukawa, Kota Morishita, Yasuaki Shibata, Fumio Suehiro, Masanobu Kamitakahara, Taishi Yokoi, Takehiko Koji, Masahiro Umeda, Tohru Ikeda: Regulation and Biological Significance of Formation of Osteoclasts and Foreign Body Giant Cells in an Extraskeletal Implantation Model ACTA HISTOCHEMICA ET CYTOCHEMICA. 2016; 49 (3): 97-107. ( DOI )

  14. Taishi Yokoi, Mitsuo Hara, Takahiro Seki, Sota Terasaka, Masanobu Kamitakahara and Hideaki Matsubara: Synthesis of layered double hydroxide coatings with oriented structure and controllable thickness on aluminium substrates CrystEngComm. 2016; 18 1207-1214.

  15. Miyazaki T, Kawashita M, Ohtsuki C.: Ceramic-polymer composites for biomedical applications Handbook of Bioceramics and Biocomposites. 2016; 287-300. ( DOI )

  1. Sota Terasaka, Masanobu Kamitakahara, Taishi Yokoi, Hideaki Matsubara: Ability of Hydroxyapatite Synthesized from Waste Oyster Shells to Remove Fluoride Ions MATERIALS TRANSACTIONS. 2015.09; 56 (9): 1509-1512. ( DOI )

  2. Li Z, Hong Y, Cao J, Huang Z, Huang K, Gong H, Huang L, Shi S, Kawashita M, Li Y: Effects of Mild Alkali Pretreatment and Hydrogen-Donating Solvent on Hydrothermal Liquefaction of Eucalyptus Woodchips Energy and Fuels. 2015; 29 (11): 7335-7342. ( DOI )

  3. Kawashita M, Tanaka Y, Ueno S, Liu G, Li Z, Miyazaki T: In vitro apatite formation and drug loading/release of porous TiO#D2#DR microspheres prepared by sol-gel processing with different SiO#D2#DR nanoparticle contents Materials Science and Engineering C. 2015; 50 317-323. ( DOI )

  4. Yasuyuki Kato, Taishi Yokoi, Euisup Shin, Ill Yong Kim, Masakazu Kawashita, Koichi Kikuta, Chikara Ohtsuki: Calcium phosphate-forming ability of magnetite and related materials in a solution mimicking in vivo conditions Journal of Asian Ceramic Societies. 2015; 3 44-49.

  5. Taishi Yokoi, Masanobu Kamitakahara, Chikara Ohtsuki: Continuous expansion of the interplanar spacing of octacalcium phosphate by incorporation of dicarboxylate ions with a side chain Dalton Transactions. 2015; 44 7943-7950.

  6. Taishi Yokoi, Kei Tsukada, Sota Terasaka, Masanobu Kamitakahara, Hideaki Matsubara: Morphological control of layered double hydroxide through a biomimetic approach using carboxylic and sulfonic acids Journal of Asian Ceramic Societies. 2015; 3 230-233.

  7. Masanobu Kamitakahara, Takuya Nagamori, Taishi Yokoi, Koji Ioku: Carbonate-containing hydroxyapatite synthesized by the hydrothermal treatment of different calcium carbonates in a phosphate-containing solution Journal of Asian Ceramic Societies. 2015; 3 287-291.

  8. Masanobu Kamitakahara, Shohei Takahashi, Taishi Yokoi: Adhesion behaviors of Escherichia coli on hydroxyapatite Materials Science & Engineering C. 2015; 61 169-173.

  9. Sota Terasaka, Masanobu Kamitakahara, Taishi Yokoi and Hideaki Matsubara: Ability of hydroxyapatite synthesized from waste oyster shells to remove fluoride ions Materials Transactions. 2015; 56 1509-1512.

  10. Yasuyuki Kato, Taishi Yokoi, Euisup Shin, Ill Yong Kim, Masakazu Kawashita, Koichi Kikuta, and Chikara Ohtsuki: Calcium phosphate-forming ability of magnetite and related materials in a solution mimicking in vivo conditions Journal of Asian Ceramic Societies. 2015; 3 44-49.

  1. Sota Terasaka, Masanobu Kamitakahara, Taishi Yokoi, Koji Ioku: Effect of preparation temperature on the ability of bone char to remove fluoride ion and organic contaminants JOURNAL OF THE CERAMIC SOCIETY OF JAPAN. 2014.12; 122 (1432): 995-999. ( DOI )

  2. Taishi Yokoi, Masanobu Kamitakahara: Formation of Stacked Disc-shaped Layered Double Hydroxides by Homogeneous Precipitation Method CHEMISTRY LETTERS. 2014.02; 43 (2): 234-236. ( DOI )

  3. Kuwahara Y, Miyazaki T, Shirosaki Y, Kawashita M: Effects of organic polymer addition in magnetite synthesis on its crystalline structure RSC Advances. 2014; 4 23359-23363. ( DOI )

  4. Miyazaki T, Tanaka T, Shirosaki Y, Kawashita M: Yttrium phosphate microspheres with enriched phosphorus content prepared for radiotherapy of deep-seated cancer Ceramics International. 2014; 40 15259-15263. ( DOI )

  5. Miyazaki T, Inoue T, Shirosaki Y, Kawashita M, Matsubara T, Matsumine A: Bisphosphonate release profiles from magnetite microspheres Journal of Biomaterials Applications. 2014; 29 (4): 543-547. ( DOI )

  6. Kawashita M, Yokohama Y, Cui XY, Miyazaki T, Kanetaka H: In vitro apatite formation and visible-light photocatalytic activity of Ti metal subjected to chemical and thermal treatments Ceramics International. 2014; 40 (8): 12629-12636. ( DOI )

  7. Tohru Ikeda, Michiyuki Kasai, Eri Tatsukawa, Masanobu Kamitakahara, Yasuaki Shibata, Taishi Yokoi, Takayuki K. Nemoto and Koji Ioku: A bone substitute with high affinity for vitamin D binding protein - relationship to niche of osteoclasts Journal of Cellular and Molecular Medicine. 2014; 18 170-180.

  1. Yokoi T, Kawashita M, Ohtsuki C: Effects of polymer concentration on the morphology of calcium phosphate crystals formed in polyacrylamide hydrogels Journal of Crystal Growth. 2013; 383 166-171. ( DOI )

  2. Yokoi T, Kamitakahara M, Kawashita M, Ohtsuki C: Formation of organically modified octacalcium phosphate in solutions containing various amounts of benzenedicarboxylic acids Journal of the Ceramic Society of Japan. 2013; 121 (2): 219-225. ( DOI )

  3. Yokoi T, Kawashita M, Ohtsuki C: Biomimetic mineralization of calcium phosphates in polymeric hydrogels containing carboxyl groups Journal of Asian Ceramic Societies. 2013; 1 155-162. ( DOI )

  4. Miyazaki T, Anan S, Ishida E, Kawashita M: Carboxymethyldextran/magnetite hybrid microspheres designed for hyperthermia Journal of Materials Science: Materials in Medicine. 2013; 24 1125-1129. ( DOI )

  5. Miyazaki T, Suda T, Shirosaki Y, Kawashita M: Fabrication of yttrium phosphate microcapsules by an emulsion route for in situ cancer radiotherapy Journal of Medical and Biological Engineering. 2013; 34 (1): 14-17. ( DOI )

  6. Hayashi J, Kawashita M, Miyazaki T, Kudo TA, Kanetaka H, Hashimoto M: MC3T3-E1 cell response to hydroxyapatite and alpha-type alumina adsorbed with bovine serum albumin Key Engineering Materials. 2013; 529-530 (1): 365-369. ( DOI )

  7. Kawashita M, Nakamura K, Miyazaki T, Kanetaka H: Structure of yttrium and phosphorus-containing microspheres prepared by spray dry method International Journal of Materials and Chemistry. 2013; 3 16-20. ( DOI )

  8. Kuwahara Y, Miyazaki T, Kawashita M: Effect of organic polymer addition on the microstructure of magnetite-polymer hybrid Key Engineering Materials. 2013; 529-530 (1): 453-456. ( DOI )

  9. Yokoi T, Kim IY, Kawashita M, Ohtsuki C: Formation of oriented hydroxyapatite crystals in a hydrogel Key Engineering Materials. 2013; 529-530 (1): 24-28. ( DOI )

  10. Kawashita M, Matsui N, Miyazaki T, Kanetaka H: Effect of autoclave and hot water treatment on surface structure and apatite-forming ability of NaOH- and heat-treated titanium metals in simulated body fluid Key Engineering Materials. 2013; 529-530 (1): 570-573. ( DOI )

  11. Shibata H, Yokoi T, Goto T, Kim IY, Kawashita M, Kikuta K, Ohtsuki C: Calcification behavior of needle-like hydroxyapatite crystals with various aspect ratios in a solution mimicking in vivo condition Journal of the Ceramic Society of Japan. 2013; 121 (9): 807-812. ( DOI )

  12. Kawashita M, Hayashi J, Kudo T, Kanetaka H, Li Z, Miyazaki T, Hashimoto M: MC3T3-E1 and RAW264.7 cell response to hydroxyapatite and alpha-type alumina adsorbed with bovine serum albumin Journal of Biomedical Materials Research Part A. 2013; 102A 1880-1886. ( DOI )

  13. Kawashita M, Hayashi J, Li Z, Miyazaki T, Hashimoto M, Hihara H, Kanetaka H: Adsorption characteristics of bovine serum albumin onto alumina with a specific crystalline structure Journal of Materials Science: Materials in Medicine. 2013; 25 453-459. ( DOI )

  14. Li Z, Miyazaki T, Kawashita M: Preparation and in vitro apatite-forming ability of porous and non-porous titania microspheres Journal of the Ceramic Society of Japan. 2013; 121 (9): 782-787. ( DOI )

  15. Kawashita M, Matsui N, Miyazaki T, Kanetaka H: Effect of ammonia or nitric acid treatment on surface structure, in vitro apatite formation, and visible-light photocatalytic activity of bioactive titanium metal Colloids and Surfaces B: Biointerfaces. 2013; 111 503-508. ( DOI )

  16. Kawashita M, Matsui N, Miyazaki T, Kanetaka H: Effect of autoclave and hot water treatments on surface structure and in vitro apatite-forming ability of NaOH- and heat-treated bioactive titanium metal Materials Transactions. 2013; 54 811-816. ( DOI )

  17. Shima H, Kawai T, Matsushima Y, Unuma H, Kawamura K, Li Z, Kawashita M: Magnetite fine particles highly loaded PMMA microspheres for hyperthermia of deep-seated cancer Journal of the Ceramic Society of Japan. 2013; 121 (9): 802-806. ( DOI )

  18. Taishi Yokoi, Ill Yong Kim, Masakazu Kawashita, Chikara Ohtsuki: Formation of Oriented Hydroxyapatite Crystals in a Hydrogel Key Engineering Materials. 2013; 529-530 24-28.

  19. Taishi Yokoi, Masakazu Kawashita and Chikara Ohtsuki: Effects of polymer concentration on the morphology of calcium phosphate crystals formed in polyacrylamide hydrogels Journal of Crystal Growth. 2013; 383 166-171.

  1. Li Z, Kawashita M, Kudo T, Kanetaka H: Sol-gel synthesis, characterization and in vitro compatibility evaluation of iron nanoparticle encapsulating-silica microspheres for hyperthermia of cancer Journal of Materials Science: Materials in Medicine. 2012; 23 2461-2469. ( DOI )

  2. Li Z, Kawamura K, Kawashita M, Kudo T, Kanetaka H, Hiraoka M: In vitro heating capability, mechanical strength and biocompatibility assessment of PMMA-based bone cement containing magnetite nanoparticles for hyperthermia of cancer Journal of Biomedical Materials Research Part A. 2012; 100A 2537-2545. ( DOI )

  3. Kawashita M, Kamitani A, Miyazaki T, Matsui N, Li Z, Kanetaka H, Hashimoto M: Zeta potential of alumina powders with different crystalline structures in simulated body environments Materials Science and Engineering C. 2012; 32 2617-2622. ( DOI )

  4. Kawashita M, Taninai K, Li Z, Ishikawa K, Yoshida Y: Preparation of low-crystalline apatite nanoparticles and their coating onto quartz substrates Journal of Materials Science: Materials in Medicine. 2012; 23 1355-1362. ( DOI )

  5. Hayashi J, Kawashita M, Miyazaki T, Kamitakahara M, Ioku K, Kanetaka H: Comparison of adsorption behavior of bovine serum albumin and osteopontin on hydroxyapatite and alumina Phosphorus Research Bulletin. 2012; 26 23-28. ( DOI )

  6. Miyazaki T, Miyaoka A, Ishida E, Li Z, Kawashita M, Hiraoka M: Preparation of ferromagnetic microcapsules for hyperthermia using water/oil emulsion as a reaction field Materials Science and Engineering C. 2012; 32 692-696. ( DOI )

  7. Yokoi T, Kato H, Kim IY, Kikuta K, Kawashita M, Ohtsuki C: Synthesis of octacalcium phosphate with incorporated succinate and suberate ions Ceramics International. 2012; 38 3815-3820. ( DOI )

  8. Hamizah AS, Mariatti M, Othman R, Kawashita M, Noor Hayati AR: Mechanical and thermal properties of polymethylmethacrylate bone cement composites incorporated with hydroxyapatite and glass-ceramic fillers Journal of Applied Polymer Science. 2012; 125 E661-E669. ( DOI )

  9. Yokoi T, Kato H, Kim IY, Kikuta K, Kamitakahara M, Kawashita M, Ohtsuki C: Formation of octacalcium phosphates with co-incorporated succinate and suberate ions Dalton Transactions. 2012; 41 2732-2737. ( DOI )

  10. Taishi Yokoi, Ill Yong Kim and Chikara Ohtsuki: Mineralization of Calcium Phosphate on Octacalcium Phosphate in a Solution Mimicking In Vivo Conditions Phosphorus Research Bulletin. 2012; 26 71-76. ( DOI )

  1. Kawashita M, Matsui N, Li Z, Miyazaki T, Kanetaka H: Preparation, structure, and in vitro chemical durability of yttrium phosphate microspheres for intra-arterial radiotherapy Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2011; 99B (1): 45-50. ( DOI )

  2. Kawashita M, Matsui N, Li Z, Miyazaki T.: Novel synthesis of yttrium phosphate microspheres for radioembolization of cancer IOP Conference Series: Materials Science and Engineering. 2011; 18 (SYMPOSIUM 13): ( DOI )

  3. Yokoi T, Kawashita M, Ohtsuki C: Effects of monocarboxylic acid addition on crystallization of calcium phosphate in a hydrogel matrix IOP Conference Series: Materials Science and Engineering. 2011; 18 (SYMPOSIUM 13): ( DOI )

  4. Samad HA, Jaafar M, Othman R, Kawashita M, Razak NHA: New bioactive glass-ceramic: Synthesis and application in PMMA bone cement composites Bio-Medical Materials and Engineering. 2011; 21 247-258. ( DOI )

  1. Li Z, Kawashita M, Araki N, Mitsumori M, Hiraoka M, Doi M: Magnetic SiO#D2#DR gel microspheres for arterial embolization hyperthermia Biomedical Materials. 2010; 5 (6): 065010. ( DOI )

  2. Kawashita M, Kawamura K, Li Z: PMMA-based bone cements containing magnetite particles for the hyperthermia of cancer Acta Biomaterialia. 2010; 6 3187-3192. ( DOI )

  3. Cui X, Kim HM, Kawashita M, Wang L, Yang B, Xiong T, Kokubo T, Nakamura T: Apatite formation on anodically oxidized Ti-6Al-4V alloy in simulated body fluid Metals and Materials International. 2010; 16 407-412. ( DOI )

  4. Miyazaki T, Kai T, Ishida E, Kawashita M, Hiraoka M: Fabrication of yttria microcapsules for radiotherapy from water/oil emulsion Journal of the Ceramic Society of Japan. 2010; 118 479-482. ( DOI )

  5. Kawashita M, Matsui N, Li Z, Miyazaki T: Preparation of porous yttrium oxide microparticles by gelation of ammonium alginate in aqueous solution containing yttrium ions Journal of Materials Science: Materials in Medicine. 2010; 21 1837-1843. ( DOI )

  6. Yokoi T, Kawashita M, Kikuta K, Ohtsuki C: Crystallization of calcium phosphate in polyacrylamide hydrogels containing phosphate Journal of Crystal Growth. 2010; 312 2376-2382. ( DOI )

  7. Li Z, Kawashita M, Doi M: Sol-gel synthesis and characterization of magnetic TiO#D2#DR microspheres Journal of the Ceramic Society of Japan. 2010; 118 467-473. ( DOI )

  8. Taishi Yokoi, Hidetaka Kato, Masanobu Kamitakahara, Masakazu Kawashita and Chikara Ohtsuki: Formation of octacalcium phosphate with incorporated succinic acid through gel-mediated processing Journal of the Ceramic Society of Japan. 2010; 118 (1378): 491-497. ( DOI )

  9. Yokoi T, Kawashita M, Kikuta K, Ohtsuki C: Biomimetic mineralization of calcium phosphate crystals in poly(acrylamide) hydrogel: effect of concentrations of calcium and phosphate ions on crystalline phases and morphology Materials Science and Engineering C. 2010; 30 (1): 154-159. ( DOI )

  10. Li Z, Kawashita M, Araki N, Mitsumori M, Hiraoka M, Doi M: Magnetite nanoparticles with high heating efficiency for application in hyperthermia of cancer Materials Science and Engineering C. 2010; 30 990-996. ( DOI )

  1. Hidetaka Kato, Taishi Yokoi, Masanobu Kamitakahara, Koichi Kikuta, Chikara Ohtsuki: Process of Organic Modification of Octacalcium Phosphates Archives of BioCeramics Research Vol. 9. 2009.12; 371-374.

  2. Cui X, Kim HM, Kawashita M, Wang L, Xiong T, Kokubo T, Nakamura T: Preparation of bioactive titania films on titanium metal via anodic oxidation Dental Materials. 2009; 25 (1): 80-86. ( DOI )

  3. Kawashita M, Araki R, Takaoka GH: Induction of bioactivity on silicone elastomer by simultaneous irradiation of oxygen cluster and monomer ion beams Acta Biomaterialia. 2009; 5 (2): 621-627. ( DOI )

  4. Kawashita M, Hayakawa T, Takaoka GH: Electrochemical deposition of hydroxyapatite on titanium substrates in metastable calcium phosphate solution under pulse current Ceramic Engineering and Science Proceedings. 2009; 29 (7): 113-122.

  5. Kawashita M, Hayakawa T, Takaoka GH, Miyazaki T: Structure and adhesion of hydroxyapatite films electrochemically deposited onto titanium substrates under short-pulse current in metastable calcium phosphate solution Key Engineering Materials. 2009; 396-398 377-380. ( DOI )

  6. Leonor IB, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Biomimetic Apatite Deposition on Polymeric Microspheres Treated With a Calcium Silicate Solution Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2009; 91B (1): 239-247. ( DOI )

  7. Kawashita M, Araki R, Takaoka GH: Effect of ion species on apatite-forming ability of silicone elastomer substrates irradiated by cluster ion beams Materials Science and Engineering: B. 2009; 161 (1-3 Sp. Iss. SI): 155-159. ( DOI )

  8. Yokoi T, Kawashita M, Kawachi G, Kikuta K, Ohtsuki C: Synthesis of calcium phosphate crystals in a silica hydrogel containing phosphate ions Journal of Materials Research. 2009; 24 (6): 2154-2160. ( DOI )

  9. M. Kawashita, T. Hayakawa, G. H. Takaoka: ELECTROCHEMICAL DEPOSITION OF HYDROXYAPATITE ON TITANIUM SUBSTRATES IN METASTABLE CALCIUM PHOSPHATE SOLUTION UNDER PULSE CURRENT ADVANCES IN BIOCERAMICS AND POROUS CERAMICS. 2009; 29 (7): 113-+.

  1. Leonor IB, Baran ET, Kawashita M, Reis RL, Kokubo T, Nakamura T: Growth of a bonelike apatite on chitosan microparticles after a calcium silicate treatment Acta Biomaterialia. 2008; 4 (5): 1349-1359. ( DOI )

  2. Takaoka GH, Okada T, Kawashita M: Angular dependence of sputtering effects by ethanol cluster ion irradiation on solid surfaces Vacuum. 2008; 83 (3): 459-462. ( DOI )

  3. Hayakawa T, Kawashita M, Takaoka GH, Miyazaki T: Effect of pulse current on structure and adhesion of apatite electrochemically deposited onto titanium substrates Journal of Materials Research. 2008; 23 (12): 3176-3183. ( DOI )

  4. Takaoka GH, Nose T, Kawashita M: Photocatalytic properties of Cr-doped TiO#D2#DR films prepared by oxygen cluster ion beam assisted deposition Vacuum. 2008; 83 (3): 679-682. ( DOI )

  5. Takaoka GH, Kawashita M, Okada T: Physical and chemical sputterings of solid surfaces irradiated by ethanol cluster ion beams Review of Scientific Instruments. 2008; 79 (2 Part 2): 02C503. ( DOI )

  6. Hayakawa T, Kawashita M, Takaoka GH: Coating of hydroxyapatite films on titanium substrates by elect rodeposition under pulse current Journal of the Ceramic Society of Japan. 2008; 116 (1349): 68-73. ( DOI )

  7. Takaoka GH, Okada T, Sugiyama K, Kawashita M: Dependence of size distribution for liquid cluster ions on retarding voltage Review of Scientific Instruments. 2008; 79 (2 Part 2): 02B305. ( DOI )

  8. Cui X, Kim HM, Kawashita M, Wang L, Yang B, Xiong T, Kokubo T, Nakamura T: Preparation of bioactive Ti and its alloys via electrochemical treatment in sulfuric acid solution Journal of the Ceramic Society of Japan. 2008; 116 329-333. ( DOI )

  9. Takaoka GH, Kawashita M: Interactions of water cluster ion beams with solid surfaces Synthesis and Reactivity in Inorganic Metal-Organic and Nano-Metal Chemistry. 2008; 38 (1): 111-117. ( DOI )

  10. Kokubo T, Ueda T, Kawashita M, Ikuhara Y, Takaoka GH, Nakamura T: PET fiber fabrics modified with bioactive titanium oxide for bone substitutes Journal of Materials Science: Materials in Medicine. 2008; 19 (2): 695-702. ( DOI )

  11. Kawashita M, Itoh S, Miyamoto K, Takaoka GH: Apatite formation on titanium substrates by electrochemical deposition in metastable calcium phosphate solution Journal of Materials Science: Materials in Medicine. 2008; 19 (1): 137-142. ( DOI )

  12. Kawashita M, Domi S, Saito Y, Aoki M, Ebisawa Y, Kokubo T, Saito T, Takano M, Araki N, Hiraoka M: In vitro heat generation of ferrimagnetic maghemite microspheres for hyperthermic treatment of cancer under alternating magnetic field Journal of Materials Science: Materials in Medicine. 2008; 19 (5): 1897-1903. ( DOI )

  13. Cui X, Kim HM, Kawashita M, Wang L, Yang B, Xiong T, Kokubo T, Nakamura T: Effect of hot water and heat treatment on the apatite-forming ability of titania films formed on titanium metal via anodic oxidation in acetic acid solutions Journal of Materials Science: Materials in Medicine. 2008; 19 (4): 1767-1773. ( DOI )

  14. Kawashita M, Araki R, Takaoka GH: Surface structure and apatite-forming ability of silicone rubber substrates irradiated by cluster ion beams Key Engineering Materials. 2008; 361-363 I 551-554.

  15. Kawashita M, Hayakawa T, Takaoka GH: Electrochemical deposition of apatite on titanium substrates by using pulse current Key Engineering Materials. 2008; 361-363 I 629-632.

  16. Kawashita M, Itoh S, Araki R, Miyamoto K, Takaoka GH: Surface structure and apatite-forming ability of polyethylene substrates irradiated by the simultaneous use of oxygen cluster and monomer ion beams Ceramic Engineering and Science Proceedings. 2008; 28 (9): 159-170.

  17. Leonor IB, Kim HM, Kawashita M, Kokubo T, Reis RL: Novel methodologies for designing bioactive materials for bone applications through by surface functionalization 8th World Biomaterials Congress 2008. 2008; 2

  18. Masakazu Kawashita, Rei Araki, Gikan H. Takaoka: Surface structure and apatite-forming ability of silicone rubber substrates irradiated by cluster ion beams BIOCERAMICS, VOL 20, PTS 1 AND 2. 2008; 361-363 551-554.

  1. Kawashita M, Araki R, Takaoka GH: In vitro apatite formation on polymer substrates irradiated by the simultaneous use of oxygen cluster and monomer ion beams Materials Research Society Symposium Proceedings. 2007; 1020 177-182.

  2. Masuda N, Kawashita M, Kokubo T: Antibacterial activity of silver-doped silica glass microspheres prepared by a sol-gel method Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2007; 83B (1): 114-120. ( DOI )

  3. Leonor IB, Kim HM, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Alkaline treatments to render starch-based biodegradable polymers self-mineralizable Journal of Tissue Engineering and Regenerative Medicine. 2007; 1 (6): 425-435. ( DOI )

  4. Kawashita M, Itoh S, Araki R, Miyamoto K, Takaoka GH: Surf ace structure and apatite-forming ability of polyethylene substrates irradiated by oxygen cluster ion beams Journal of Biomedical Materials Research Part A. 2007; 82A (4): 995-1003. ( DOI )

  5. Leonor IB, Kim HM, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Functionalization of different polymers with sulfonic groups as a way to coat them with a biomimetic apatite layer Journal of Materials Science: Materials in Medicine. 2007; 18 (10): 1923-1930. ( DOI )

  6. Takaoka GH, Kawashita M, Shimatani H, Araki R: Modification of polyethylene surfaces irradiated by the simultaneous use of cluster and monomer ion beams Surface and Coatings Technology. 2007; 201 (19-20): 8242-8245. ( DOI )

  7. Takaoka GH, Kawashita M, Noguchi H, Nakayama K: Irradiation effects of liquid cluster ion beams on silicon surfaces Surface and Coatings Technology. 2007; 201 (19-20): 8628-8631. ( DOI )

  8. Balas F, Kokubo T, Kawashita M, Nakamura T: Surface modification of organic polymers with bioactive titanium oxide without the aid of a silane-coupling agent Journal of Materials Science: Materials in Medicine. 2007; 18 (6): 1167-1174. ( DOI )

  9. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Preparation of bioactive flexible poly(tetramethylene oxide) (PTMO)-CaO-Ta#D2#DRO#D5#DR hybrids Journal of Materials Science: Materials in Medicine. 2007; 18 (6): 1117-1124. ( DOI )

  10. Takaoka GH, Kawashita M, Nakayama K, Okada T: Interactions of liquid cluster ion beams with metal surfaces Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 2007; 258 (1): 209-212. ( DOI )

  11. Takaoka GH, Kawashita M, Okada T: Irradiation effects of methanol cluster ion beams on solid surfaces Materials Research Society Symposium Proceedings. 2007; 1020 159-164.

  12. Leonor IB, Kim HM, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Surface potential change in bioactive polymer during the process of biomimetic apatite formation in a simulated body fluid Journal of Materials Chemistry. 2007; 17 (38): 4057-4063. ( DOI )

  1. Balas F, Kawashita M, Nakamura T, Kokubo T: Formation of bone-like apatite on organic polymers treated with a silane-coupling agent and a titania solution Biomaterials. 2006; 27 (9): 1704-1710. ( DOI )

  2. Kawashita M, Shimatani H, Itoh S, Araki R, Takaoka GH: Apatite deposition on polymer substrates irradiated by oxygen cluster ion beams Journal of the Ceramic Society of Japan. 2006; 114 (1325): 77-81. ( DOI )

  3. Kawashita M, Sadaoka K, Kokubo T, Saito T, Takano M, Araki N, Hiraoka M: Enzymatic preparation of hollow magnetite microspheres for hyperthermic treatment of cancer Journal of Materials Science: Materials in Medicine. 2006; 17 (7): 605-610. ( DOI )

  4. Kawashita M, Takayama Y, Kokubo T, Takaoka GH, Araki N, Hiraoka M: Enzymatic preparation of hollow yttrium oxide microspheres for in situ radiotherapy of deep-seated cancer Journal of the American Ceramic Society. 2006; 89 (4): 1347-1351. ( DOI )

  5. Kawashita M, Takayama Y, Kokubo T, Takaoka GH, Araki N, Hiraoka M: Preparation of hollow Y#D2#DRO#D3#DR microspheres for in situ radiotherapy of cancer by enzymatic reaction Key Engineering Materials. 2006; 309-311 (Part 1-2): 461-464. ( DOI )

  6. Takaoka GH, Nakayama K, Noguchi H, Kawashita M: Size analysis of water cluster ions and their irradiation effects on solid surfaces Surface and Interface Analysis. 2006; 38 (12-13): 1534-1538. ( DOI )

  7. Takaoka GH, Noguchi H, Nakayama K, Kawashita M: High-rate sputtering and chemical modification of silicon surfaces irradiated by alcohol cluster ion beams e-Journal of Surface Science and Nanotechnology. 2006; 4 473-477. ( DOI )

  8. Takaoka GH, Nakayama K, Takeda D, Kawashita M: Sputtering and chemical modification of solid surfaces by water cluster ion beams AIP Conference Proceedings. 2006; 866 190-193.

  9. Takaoka GH, Nakayama K, Okada T, Kawashita M: Size analysis of ethanol cluster ions and their sputtering effects on solid surfaces AIP Conference Proceedings. 2006; 866 321-324.

  10. Leonor IB, Kim HM, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Formation of bone-like apatite on polymeric surfaces modified with-SO#D3#DRH groups Materials Science Forum. 2006; 514-516 (Part 1-2): 966-969. ( DOI )

  11. Leonor IB, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Biomimetic apatite formation on different polymeric microspheres modified with calcium silicate solutions Key Engineering Materials. 2006; 309-311 (Part 1-2): 279-282. ( DOI )

  12. Takaoka GH, Noguchi H, Nakayama K, Seki T, Kawashita M: Surface cleaning and modification of Si(100) substrates by ethanol and water cluster ion beams Review of Scientific Instruments. 2006; 77 (3 Part 2): 03B508. ( DOI )

  13. Takaoka GH, Noguchi H, Kawashita M: Interactions of ethanol cluster ion beams with silicon surfaces Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 2006; 242 (1-2): 417-420. ( DOI )

  14. Takaoka GH, Noguchi H, Nakayama K, Kawashita M: Characterization of liquid cluster ion source by the time-of-flight method Review of Scientific Instruments. 2006; 77 (3 Part 2): 03B509. ( DOI )

  1. Kawashita M: Ceramic microspheres for biomedical applications International Journal of Applied Ceramic Technology. 2005; 2 (3): 173-183. ( DOI )

  2. Leonor IB, Kim HM, Balas F, Kawashita M, Reis RL, Kokubo T, Nakamura T: Surface charge of bioactive polyethylene modified with -SO#D3#DRH groups and its apatite inducing capability in simulated body fluid Key Engineering Materials. 2005; 284-286 453-456. ( DOI )

  3. Takaoka GH, Shimatani H, Noguchi H, Kawashita M: Interactions of argon cluster ion beams with silicon surfaces Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 2005; 232 206-211. ( DOI )

  4. Takaoka GH, Kawashita M, Omoto K, Terada T: Photocatalytic properties of TiO#D2#DR films prepared by O#D2#DR cluster ion beam assisted deposition method Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 2005; 232 200-205. ( DOI )

  5. Takaoka GH, Noguchi H, Nakayama K, Hironaka Y, Kawashita M: Fundamental characteristics of liquid cluster ion source for surface modification Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 2005; 237 (1-2): 402-405. ( DOI )

  6. Takaoka GH, Nishida Y, Yamamoto T, Kawashita M: Development of polyatomic ion beam system using liquid organic materials Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 2005; 237 (1-2): 240-244. ( DOI )

  7. Kawashita M, Tanaka M, Kokubo T, Inoue Y, Yao T, Hamada S, Shinjo T: Preparation of ferrimagnetic magnetite microspheres for in situ hyperthermic treatment of cancer Biomaterials. 2005; 26 (15): 2231-2238. ( DOI )

  8. Goto K, Tamura J, Shinzato S, Fujibayashi S, Hashimoto M, Kawashita M, Kokubo T, Nakamura T: Bioactive bone cements containing nano-sized titania particles for use as bone substitutes Biomaterials. 2005; 26 (33): 6496-6505. ( DOI )

  9. Kokubo T, Kawai M, Kawashita M, Yamamoto K, Nakamura T: Fabrics of polymer fibers modified with calcium silicate for bone substitute Key Engineering Materials. 2005; 284-286 775-778. ( DOI )

  1. Kokubo T, Kim HM, Kawashita M, Nakamura T: Bioactive metals: preparation and properties Journal of Materials Science: Materials in Medicine. 2004; 15 (2): 99-107. ( DOI )

  2. Xiong TY, Cui XY, Kim HM, Kawashita M, Kokubo T, Wu J, Jin HZ, Nakamura T: Effect of surface morphology and crystal structure on bioactivity of titania films formed on titanium metal via anodic oxidation in sulfuric acid solution Key Engineering Materials. 2004; 254-2 375-378. ( DOI )

  3. Kokubo T, Hanakawa M, Kawashita M, Minoda M, Beppu T, Miyamoto T, Nakamura T: Apatite deposition on calcium alginate fibres in simulated body fluid Journal of the Ceramic Society of Japan. 2004; 112 (1307): 363-367. ( DOI )

  4. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Degradation of bioactive polydimethylsiloxane-CaO-SiO2-TiO2 and poly (tetramethylene oxide)-CaO-TiO2 hybrids in a simulated body fluid Journal of the American Ceramic Society. 2004; 87 (2): 235-239. ( DOI )

  5. Miyata N, Fuke K, Chen Q, Kawashita M, Kokubo T, Nakamura T: Apatite-forming ability and mechanical properties of PTMO-modified CaO-SiO2-TiO2 hybrids derived from sol-gel processing Biomaterials. 2004; 25 (1): 1-7. ( DOI )

  6. Juhasz JA, Ishii S, Best SM, Kawashita M, Neo M, Kokubo T, Nakamura T, Bonfield W: Bone-bonding ability of glass-ceramic apatite-wollastonite - Polyethylene composites Transactions - 7th World Biomaterials Congress. 2004;

  7. Araki N, Nagata Y, Hiraoka M, Kawashita M, Kokubo T, Inoue Y, Sawada Y: Treatment of VX2 tumors in rabbit liver by radioactive Y2O3 microspheres Transactions - 7th World Biomaterials Congress. 2004;

  8. Leonor IB, Malafaya PB, Baran ET, Kawashita M, Reis RL, Kokubo T, Nakamura T: Growth of a bonelike apatite layer on chitosan microparticles after a calcium silicate treatment Transactions - 7th World Biomaterials Congress. 2004;

  9. Juhasz JA, Best SM, Kawashita M, Miyata N, Kokubo T, Nakamura T, Bonfield W: Analysis of the young's modulus and fracture behaviour of a particulate-filled biocomposite Transactions - 7th World Biomaterials Congress. 2004;

  10. Balas F, Kawashita M, Ohtsuki C, Kim HM, Kokubo T, Nakamura T: Bonelike apatite formation on synthetic polymers coated with titanium oxide Transactions - 7th World Biomaterials Congress. 2004;

  11. Kawashita M, Balas F, Kim HM, Ohtsuki C, Kokubo T, Nakamura T: Bonelike apatite formation on synthetic organic polymers coated with TiO2 Key Engineering Materials. 2004; 254-2 467-470. ( DOI )

  12. Kamitakahara M, Kawashita M, Miyata N, Kim HM, Kokubo T, Ohtsuki C, Nakamura T: Apatite-forming ability and mechanical properties of poly(tetramethylene oxide) (PTMO)-Ta#D2#DRO#D5#DR hybrids Key Engineering Materials. 2004; 254-2 521-524. ( DOI )

  13. Kim HM, Kaneko H, Kawashita M, Kokubo T, Nakamura T: Mechanism of apatite formation on anodically oxidized titanium metal in simulated body fluid Key Engineering Materials. 2004; 254-2 741-744. ( DOI )

  14. Kokubo T, Himeno T, Kim HM, Kawashita M, Nakamura T: Process of bonelike apatite formation on sintered hydroxyapatite in serum-containing SBF Key Engineering Materials. 2004; 254-2 139-142. ( DOI )

  15. Kawashita M, Cui XY, Kim HM, Kokubo T, Nakamura T: Bonelike apatite formation on anodically oxidized titanium metal in simulated body fluid Key Engineering Materials. 2004; 254-2 459-462. ( DOI )

  16. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Precipitation of anatase in silicone and bioactivity of the products Journal of the Ceramic Society of Japan. 2004; 112 (1311): 594-598. ( DOI )

  17. Kawashita M, Iwahashi Y, Kokubo T, Yao T, Hamada S, Shinjo T: Preparation of class-ceramics containing ferrimagnetic zinc-iron ferrite for the hyperthermal treatment of cancer Journal of the Ceramic Society of Japan. 2004; 112 (1307): 373-379. ( DOI )

  18. Kokubo T, Hanakawa M, Kawashita M, Minoda M, Beppu T, Miyamoto T, Nakamura T: Apatite-forming ability of alginate fibers treated with calcium hydroxide solution Journal of Materials Science: Materials in Medicine. 2004; 15 (9): 1007-1012. ( DOI )

  19. Kim HM, Himeno T, Kawashita M, Kokubo T, Nakamura T: The mechanism of biomineralization of bone-like apatite on synthetic hydroxyapatite: an in vitro assessment Journal of The Royal Society Interface. 2004; 1 (1): 17-22. ( DOI )

  20. Kokubo T, Hanakawa M, Kawashita M, Minoda M, Beppu T, Miyamoto T, Nakamura T: Apatite formation on non-woven fabric of carboxymethylated chitin in SBF Biomaterials. 2004; 25 (18): 4485-4488. ( DOI )

  1. Kawashita M, Nakao M, Minoda M, Kim HM, Beppu T, Miyamoto T, Kokubo T, Nakamura T: Apatite-forming ability of carboxyl group-containing polymer gels in a simulated body fluid Biomaterials. 2003; 24 (14): 2477-2484. ( DOI )

  2. Oyane A, Kawashita M, Nakanishi K, Kokubo T, Minoda M, Miyamoto T, Nakamura T: Bonelike apatite formation on ethylene-vinyl alcohol copolymer modified with silane coupling agent and calcium silicate solutions Biomaterials. 2003; 24 (10): 1729-1735. ( DOI )

  3. Miyata N, Fuke K, Chen Q, Kawashita M, Kokubo T, Nakamura T: Preparation of PTMO-modified CaO-TiO#D2#DR hybrids via sol-gel processing: Their apatite-forming ability and mechanical properties Journal of the Ceramic Society of Japan. 2003; 111 (8): 555-559. ( DOI )

  4. Juhasz JA, Best SM, Bonfield W, Kawashita M, Miyata N, Kokubo T, Nakamura T: Apatite-forming ability of glass-ceramic apatite-wollastonite - polyethylene composites: effect of filler content Journal of Materials Science: Materials in Medicine. 2003; 14 (6): 489-495. ( DOI )

  5. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Apatite formation on CaO-free polydimethylsiloxane (PDMS)-TiO#D2#DR hybrids Journal of Materials Science: Materials in Medicine. 2003; 14 (12): 1067-1072. ( DOI )

  6. Kawashita M, Toda S, Kim HM, Kokubo T, Masuda N: Preparation of antibacterial silver-doped silica glass microspheres Journal of Biomedical Materials Research Part A. 2003; 66A (2): 266-274. ( DOI )

  7. Kim HM, Himeno T, Kawashita M, Lee JH, Kokubo T, Nakamura T: Surface potential change in bioactive titanium metal during the process of apatite formation in simulated body fluid Journal of Biomedical Materials Research Part A. 2003; 67A (4): 1305-1309. ( DOI )

  8. Juhasz JA, Best SM, Kawashita M, Miyata N, Kokubo T, Nakamura T, Bonfield W: Bonding strength of the apatite layer formed on glassceramic apatite-wollastonite-polyethylene composites Journal of Biomedical Materials Research Part A. 2003; 67A (3): 952-959. ( DOI )

  9. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Apatite-forming ability and mechanical properties of CaO-free poly(tetramethylene oxide) (PTMO)-TiO2 hybrids treated with hot water Biomaterials. 2003; 24 (8): 1357-1363. ( DOI )

  10. Kawashita M, Shineha R, Kim HM, Kokubo T, Inoue Y, Araki N, Nagata Y, Hiraoka M, Sawada Y: Preparation of ceramic microspheres for in situ radiotherapy of deep-seated cancer Biomaterials. 2003; 24 (17): 2955-2963. ( DOI )

  11. Juhasz JA, Best SM, Kawashita M, Miyata N, Kokubo T, Nakamura T, Bonfield W: Mechanical properties of glass-ceramic A-W - polyethylene composites: Effect of filler content Key Engineering Materials. 2003; 240-2 947-950. ( DOI )

  12. Kawashita M, Toda S, Kokubo T, Masuda N: Preparation of antibacterial silver-doped silica glass microspheres by sol-gel method Key Engineering Materials. 2003; 240-2 229-232. ( DOI )

  13. Miyata N, Kamitakahara M, Kawashita M, Kokubo T, Nakamura T: Mechanical properties of bioactive PDMS-CaO-SiO#D2#DR-TiO#D2#DR and PTMO-CaO-TiO#D2#DR hybrids soaked in a simulated body fluid Key Engineering Materials. 2003; 240-2 943-946. ( DOI )

  14. Kamitakahara M, Shineha R, Kawashita M, Miyata N, Kokubo T, Nakamura T: Flexible poly(tetramethylene oxide) (PTMO)-TiO#D2#DR hybrid with apatite-forming ability Key Engineering Materials. 2003; 240-2 155-158. ( DOI )

  15. Himeno T, Kim HM, Kaneko H, Kawashita M, Kokubo T, Nakamura T: Surface structural changes of sintered hydroxyapatite in terms of surface charge Key Engineering Materials. 2003; 240-2 457-460. ( DOI )

  1. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Bioactivity and mechanical properties of polydimethylsiloxane (PDMS)-CaO-SiO#D2#DR hybrids with different calcium contents Journal of Materials Science: Materials in Medicine. 2002; 13 (11): 1015-1020. ( DOI )

  2. Kawashita, M: Ceramic microspheres for in situ radiotherapy of cancer Materials Science and Engineering C. 2002; 22 (1 Sp. Iss. SI): 3-8. ( DOI )

  3. Oyane A, Kawashita M, Kokubo T, Minoda M, Miyamoto T, Nakamura T: Bonelike apatite formation on ethylene-vinyl alcohol copolymer modified with a silane coupling agent and titania solution Journal of the Ceramic Society of Japan. 2002; 110 (4): 248-254. ( DOI )

  4. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Apatite-forming ability and mechanical properties of polydimethylsiloxane (PDMS)-TiO2 hybrid treated with hot water Key Engineering Materials. 2002; 218-220 633-636. ( DOI )

  5. Himeno T, Kawashita M, Kim HM, Kokubo T, Nakamura T: Zeta-potential variation of bioactive titanium metal during apatite formation on its surface in simulated body fluid Key Engineering Materials. 2002; 218-2 641-644. ( DOI )

  6. Kokubo T, Oyane A, Kawashita M, Minoda M, Miyamoto T, Nakamura T: Apatite-forming ability of ethylene-vinyl alcohol copolymer modified with Ti-OH groups Key Engineering Materials. 2002; 218-2 617-620. ( DOI )

  7. Kawashita M, Tanaka M, Kokubo T, Yao T, Hamada S, Shinjo T: Preparation of magnetite microspheres for hyperthermia of cancer Key Engineering Materials. 2002; 218-2 645-648. ( DOI )

  8. Miyata N, Fuke K, Chen Q, Kawashita M, Kokubo T, Nakamura T: Apatite-forming ability and mechanical behavior of PTMO-modified CaO-TiO#D2#DR hybrids prepared by sol-gel processing Key Engineering Materials. 2002; 218-2 117-121. ( DOI )

  9. Juhasz JA, Kawashita M, Miyata N, Kokubo T, Nakamura T, Best SM, Bonfield W: Apatite-forming ability and mechanical properties of glass-ceramic A-W-polyethylene composites Key Engineering Materials. 2002; 218-2 437-440. ( DOI )

  1. Kamitakahara M, Kawashita M, Kokubo T, Nakamura T: Effect of polyacrylic acid on the apatite formation of a bioactive ceramic in a simulated body fluid: fundamental examination of the possibility of obtaining bioactive glass-ionomer cements for orthopaedic use Biomaterials. 2001; 22 (23): 3191-3196. ( DOI )

  2. Abe Y, Kawashita M, Kokubo T, Nakamura T: Effects of solution on apatite formation on substrate in biomimetic process Journal of the Ceramic Society of Japan. 2001; 109 (2): 106-109. ( DOI )

  3. Kamitakahara M, Kawashita M, Miyata N, Kokubo T, Nakamura T: Bioactivity and mechanical properties of polydimethylsiloxane (PDMS)-CaO-SiO#D2#DR hybrids with different PDMS contents Journal of Sol-Gel Science and Technology. 2001; 21 (1-2): 75-81. ( DOI )

  4. Kokubo T, Kim HM, Kawashita M, Nakamura T: Process of calcification on artificial materials Zeitschrift fur Kardiologie. 2001; 90 (SUPPL. 3): 86-91.

  5. Kawashita M, Takaoka H, Kokubo T, Yao T, Hamada S, Shinjo T: Preparation of magnetite-containing glass-ceramics in controlled atmosphere for hyperthermia of cancer Journal of the Ceramic Society of Japan. 2001; 109 (1): 39-44. ( DOI )

  6. Miyata N, Fuke K, Chen Q, Kawashita M, Kokubo T, Nakamura T: Bioactivity and mechanical behavior of PTMO-modified CaO-SiO#D2#DR hybrids prepared by sol-gel process Key Engineering Materials. 2001; 192-195 681-684.

  7. Oyane A, Minoda M, Miyamoto T, Nakanishi K, Kawashita M, Kokubo T, Nakamura T: Apatite formation on ethylene-vinyl alcohol copolymer modified with silane coupling agent and calcium silicate Key Engineering Materials. 2001; 192-195 713-716.

  1. Miyata N, Fuke K, Chen Q, Kawashita M, Kokubo T, Nakamura T: Bioactivity and mechanical behavior of PTMO-modified CaO-SiO#D2#DR hybrids prepared by sol-gel process Key Engineering Materials. 2000; 192-1 681-684. ( DOI )

  2. Kamitakahara M, Kawashita M, Kokubo T, Nakamura T: Possibility for obtaining bioactive glass-ionomer cements Key Engineering Materials. 2000; 192-1 701-704. ( DOI )

  3. Kawashita M, Nakao M, Minoda M, Miyamoto T, Kim HM, Kokubo T, Nakamura T: Apatite-forming ability of polymers with carboxy groups in simulated body fluid Key Engineering Materials. 2000; 192-1 697-700. ( DOI )

  4. Kawashita M, Tsuneyama S, Miyaji F, Kokubo T, Kozuka H, Yamamoto K: Antibacterial silver-containing silica glass prepared by sol-gel method Biomaterials. 2000; 21 (4): 393-398. ( DOI )

  5. Oyane A, Minoda M, Miyamoto T, Nakanishi K, Kawashita M, Kokubo T, Nakamura T: Apatite formation on ethylene-vinyl alcohol copolymer modified with silane coupling agent and calcium silicate Key Engineering Materials. 2000; 192-1 713-716. ( DOI )

  6. Kokubo T, Kim HM, Kawashita M, Takadama H, Miyazaki T, Uchida M, Nakamura T: Nucleation and growth of apatite on amorphous phases in simulated body fluid Glass Science and Technology: Glastechnische Berichte. 2000; 73 (1 SUPPL. C): 247-254.

  1. Kawashita M, Miyaji F, Kokubo T, Suzuki Y, Kajiyama K: Preparation of phosphorus-containing silica glass microspheres for radiotherapy of cancer by ion implantation Journal of Materials Science: Materials in Medicine. 1999; 10 (8): 459-463. ( DOI )

  2. Kawashita M, Miyaji F, Kokubo T, Takaoka GH, Yamada I, Suzuki Y, Inoue M: Surface structure and chemical durability of P#U+#UR-implanted Y#D2#DRO#D3#DR-Al#D2#DRO#D3#DR-SiO#D2#DR glass for radiotherapy of cancer Journal of Non-Crystalline Solids. 1999; 255 (2-3): 140-148. ( DOI )

  3. Kawashita M, Miyaji F, Kokubo T, Takaoka GH, Yamada I, Suzuki Y, Kajiyama K: Phosphorus-implanted glass for radiotherapy: Effect of implantation energy Journal of the American Ceramic Society. 1999; 82 (3): 683-688. ( DOI )

  1. Kawashita M, Miyaji F, Kokubo T, Takaoka GH, Yamada I, Suzuki Y, Kajiyama K: Preparation of radiotherapy glass by phosphorus ion implantation at 100 keV Journal of Biomedical Materials Research Part B: Applied Biomaterials. 1997; 38 (4): 342-347. ( DOI )

  2. Kawashita M, Miyaji F, Kokubo T, Takaoka GH, Yamada I, Suzuki Y, Kajiyama K: Preparation of glass for radiotherapy of cancer by P#U+#UR ion implantation at 100 keV Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. 1997; 121 (1-4): 323-327. ( DOI )

  1. Kawashita M, Miyaji F, Kokubo T, Takaoka GH, Yamada I: Properties of silica glass implanted with phosphorus ion at 50 keV for radiotherapy Journal of the Ceramic Society of Japan. 1996; 104 (8): 710-714. ( DOI )

  2. Kajiyama K, Suzuki Y, Kokubo Ti, Kawashita M, Miyaji F: Characterization of P#U+#UR implanted SiO#D2#DR powders Proceedings of the International Conference on Ion Implantation Technology. 1996; 816-819.

  1. Kawashita M, Yao T, Miyaji F, Kokubo T, Takaoka GH, Yamada I: Preparation of phosphorus-containing silica glass for radiotherapy by co-implantation of phosphorus and nitrogen ions Journal of Materials Science: Materials in Medicine. 1995; 6 (10): 606-611. ( DOI )

  2. Kawashita M, Yao T, Miyaji F, Kokubo T, Takaoka GH, Yamada I: Preparation of glasses for radiotherapy by ion implantation Radiation Physics and Chemistry. 1995; 46 (2): 269-274. ( DOI )

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  3. 三宅 理沙, 島袋 将弥, 下岸 将博, 丸川 恵理子, 川下 将一: チタン表面に形成したマグネシウム薄膜の劣化挙動と生体機能変化 日本歯科理工学会誌. 2024.04; 43 (Special Issue82): 88. ( 医中誌 )

  4. 川下将一: AIとバイオマテリアル バイオマテリアル. 2024.01; 42 (1): 9.

  5. 横井 太史: リン酸塩系層状物質による新規生体活性材料の開発 バイオマテリアル-生体材料-. 2024.01; 42 (1): 22-23. ( 医中誌 )

  1. 島袋 将弥: 骨髄炎治療のための抗感染性ハニカム骨補填材の創製 上原記念生命科学財団研究報告集. 2023.12; 37 1-5. ( 医中誌 )

  2. バイオマテリアル研究を振り返って バイオマテリアル-生体材料-. 2023.07; 41 (3): 249.

  1. 島袋 将弥, 横井 太史, 川下 将一: 骨・関節感染症治療のための抗菌性バイオマテリアル 細胞. 2022.09; 54 (10): 583-585. ( 医中誌 )

  2. 島袋 将弥, 横井 太史, 川下 将一: 骨・関節感染症治療のための抗菌性バイオマテリアル 月刊細胞. 2022.09; 54 (10): 49(583)-51(585).

  3. 島袋 将弥, 川下 将一, 横井 太史: 骨・関節感染症治療のための抗菌性バイオマテリアル 細胞. 2022.09; 54 (10): 49-51.

  4. Kizalaite Agne, Klimavicius Vytautas, Versockiene Justina, Lastauskiene Egle, Murauskas Tomas, Skaudzius Ramunas, Yokoi Taishi, Kawashita Masakazu, Goto Tomoyo, Sekino Tohru, Zarkov Aleksej: Peculiarities of the formation, structural and morphological properties of zinc whitlockite (Ca18Zn2(HPO4)(2)(PO4)(12)) synthesized via a phase transformation process under hydrothermal conditions CRYSTENGCOMM. 2022.07; 24 (28): 5068-5079. ( DOI )

  5. Kakisawa Hideki, Nishimura Toshiyuki, Yokoi Taishi, Yamaguchi Norio, Kitaoka Satoshi: Measurement of the in-plane coefficient of thermal expansion of ceramic protective coatings from room temperature to 1400 degrees C SURFACE & COATINGS TECHNOLOGY. 2022.06; 439 ( DOI )

  6. 大槻 主税, 横井 太史, 川下 将一: 医療に貢献するガラス セラミックス. 2022.03; 57 (3): 133-136.

  7. 川下 将一: がん治療用/抗菌性セラミック高機能微粒子の創製 2022.01; 40 (1): 12-13.

  8. 大槻主税, 横井太史, 川下将一: 医療に貢献するガラス セラミックス. 2022; 57 133-136.

  1. Yusuke TSUTSUMI, Masaya SHIMABUKURO, Harumi TSUTSUMI, Takao HANAWA: Development of Novel Implant Material Surface with Controllable Antibacterial Properties Denki Kagaku. 2021.12; 89 (4): 346-352. ( DOI )

  2. 川下 将一, 横井 太史: たんぱく質の特異的吸着に着目した水酸アパタイトの骨伝導機構の解明 ニューガラス. 2021.11; 36 (3): 11-14.

  3. 川下 将一: 「光をもたらすもの:リン」の可能性 PHOSPHORUS LETTER. 2021.10; 102 2-4.

  4. 川下 将一: 歯科理工学 東西対抗戦 東軍 セラミックスを基盤とした歯科用マテリアルに関する研究 日本歯科理工学会誌. 2021.09; 40 (Special Issue78): 3. ( 医中誌 )

  5. 横井 太史, 川下 将一: 蛍光性分子を導入したリン酸八カルシウムの合成 日本歯科理工学会誌. 2021.09; 40 (Special Issue78): 26. ( 医中誌 )

  6. 川下 将一, 横井 太史: バイオセラミックスの力学的性質 実験力学. 2021.09; 21 (3): 187-192. ( DOI )

  7. 横井 太史, 川下 将一: セラミックバイオマテリアルによるがん治療と硬組織修復 工業材料. 2021.08; 69 (8): 44-49.

  8. 亀島 欣一, 西本 俊介, 三宅 通博, 山下 仁大, 川下 将一: A型ゼオライト基質のバルク状材料の開発 生体医歯工学共同研究拠点成果報告書. 2021.04; 令和2年度 143. ( 医中誌 )

  9. 島袋将弥, 真中智世, 堤祐介, 野崎浩佑, 陳鵬, 蘆田茉希, 永井亜希子, 塙隆夫: 表面化学状態の異なる銅の腐食挙動と抗菌効果 材料と環境. 2021; 70 (8): 265-270. ( DOI )

  1. 島袋 将弥, 林 幸壱朗, 石川 邦夫: 擬似体液中における抗菌性ポーラスチタン酸化物の劣化挙動 日本歯科理工学会誌. 2020.12; 39 (Special Issue76): 37. ( 医中誌 )

  1. 安田 彩人, 上高原 理暢, 柳沢 俊樹, 川下 将一, 鎌倉 慎治: オクタカルシウムフォスフェート・コラーゲン複合体における作製時の濃縮率が機械的特性へ及ぼす影響 日本バイオマテリアル学会大会予稿集. 2019.11; 41回 361. ( 医中誌 )

  2. 川下 将一: 抗菌性と生体適合性を併せ示す生糸織物の開発 コスメトロジー研究報告. 2019.09; 27 17-23. ( 医中誌 )

  3. 川下 将一, 金高 弘恭: チタン表面に形成した銅ドープTiO#D2#DR層のアパタイト形成能と可視光応答型抗菌性 日本歯科理工学会誌. 2019.09; 38 (Special Issue74): 50. ( 医中誌 )

  1. 川下将一: 経カテーテル動脈塞栓治療用微小球の合成 セラミックス. 2018.11; 53 (11): 814-818.

  2. 鈴木 香苗, 川下 将一, 岩津 実里, 目代 貴之, 金高 弘恭: 銀または銅をドープしたチタンのアパタイト形成能と可視光照射による抗菌性の向上 日本バイオマテリアル学会大会予稿集. 2018.11; 40回 132. ( 医中誌 )

  3. 半田 祥真, 川下 将一: 水酸化ナトリウム水溶液処理が多孔質チタニア微小球の構造と物性に及ぼす影響 日本バイオマテリアル学会大会予稿集. 2018.11; 40回 240. ( 医中誌 )

  4. 松本 晋太朗, 小川 智之, 川下 将一: 放射線・温熱治療用イットリウム・ホルミウム含有ガーネット型フェライトの作製 日本バイオマテリアル学会大会予稿集. 2018.11; 40回 246. ( 医中誌 )

  5. 三上 敬太, 川下 将一: 水熱合成した中性子捕捉療法用ホウ酸ガドリニウムの構造 日本バイオマテリアル学会大会予稿集. 2018.11; 40回 249. ( 医中誌 )

  6. 島袋将弥: 毒性学の父にならって まてりあ. 2018.04; 58 (4): 218.

  7. 島袋将弥: Biomaterials International 2017 バイオマテリアル-生体材料-. 2018.01; 36 (1): 80.

  8. 千釜 広己, 金高 弘恭, 古谷 真衣子, 横田 琴音, 川下 将一: 種々の金属イオンを担持させた生糸織物のアパタイト形成能と抗菌性の評価 粉体および粉末冶金. 2018; 65 (8): 495-501.

  9. 横井太史: ジカルボン酸イオンを導入したリン酸八カルシウムに関する研究 Phosphorus Letter. 2018; 92 32-35.

  1. 川下 将一: バイオマテリアルの界面制御に挑む次代のフロンティア タンパク質-セラミックス界面の解析 日本バイオマテリアル学会大会予稿集. 2017.11; 39回 171. ( 医中誌 )

  1. 川下将一, 横井太史, 大槻主税: 生体模倣環境を利用する無機-有機複合材料の創製 化学工業. 2015; 66 (4): 7-13.

  2. 川下将一, 横井太史, 大槻主税: 生体模倣環境を利用する無機-有機複合材料の創製 化学工業. 2015; 66 (4): 7-13.

  1. 横井太史, 上高原理暢, 大槻主税: バイオセラミックスを用いた複合材料の創成 Phosphorus Letter. 2014; 81 58-68.

  2. 井奥洪二, 横井太史, 上高原理暢: 医療分野におけるバイオインスパアイアード材料の応用 セラミックス, 公益社団法人日本セラミックス協会. 2014; 49 (5): 397-401.

  3. 井奥洪二, 横井太史, 上高原理暢: 医療分野におけるバイオインスパアイアード材料の応用 セラミックス, 公益社団法人日本セラミックス協会. 2014; 49 (5): 397-401.

  4. 横井太史,上高原理暢,大槻主税: バイオセラミックスを用いた複合材料の創成 Phosphorus Letter. 2014; 81 58-68.

  1. 横井太史, 上高原理暢, 大槻主税: 人工骨用リン酸カルシウム系材料の形態制御 機能材料,シーエムシー出版. 2013; 33 12-18.

  2. 川下 将一: 血管内放射線・温熱治療を実現するセラミック微小球の開発 医科学応用研究財団研究報告. 2013; 32 48-50.

  1. 大槻主税, 横井太史: 生体活性セラミックスの展望 無機マテリアル学会. 2012; 19 371-378.

  1. 横井太史, 大槻主税: リン酸カルシウム系バイオマテリアルの進展 未来材料, 株式会社エヌ・ティー・エス. 2011; 11 (2): 20-25.

  2. 大槻主税,横井太史: 生体活性セラミックスの新展開 セラミックス, 公益社団法人日本セラミックス協会. 2011; 46 (4): 314-319.

  1. 川下 将一, 李 志霞: がん治療に貢献するセラミックス バイオマテリアル : 生体材料 : Journal of Japanese Society for Biomaterials. 2009.04; 27 (2): 90-98.

  2. 川下 将一: 深部がん温熱化学塞栓療法に適した多孔質磁性セラミック微小球の作製 研究助成金受給者研究報告集. 2009; 28 7-13.

  1. 川下 将一: セラミックバイオマテリアルの性質 バイオマテリアル : 生体材料 : Journal of Japanese Society for Biomaterials. 2007.11; 25 (6): 393-402.

  1. 高岡 義寛, 川下 将一: <大学の研究・動向> イノベイティブ材料・プロセスの開発 : クラスターイオンの基礎から応用 Cue : 京都大学電気関係教室技術情報誌. 2006.10; 16 3-7.

  1. 川下 将一: 医用ベクトルセラミック微小球 (特集 ベクトル材料科学(その2)) マテリアルインテグレ-ション. 2005.11; 18 (11): 18-25.

  1. 川下 将一, 小久保 正, 平岡 眞寛: 放射性べクトルセラミックス : 癌を治療する放射性あるいは強磁性セラミック微小球 バイオマテリアル : 生体材料 : Journal of Japanese Society for Biomaterials. 2003.09; 21 (5): 368-376.

  2. 小久保 正, 金 鉉敏, 川下 将一: 関節・骨修復用セラミックスの新展開 セラミックス. 2003.01; 38 (1): 2-10.

  3. 川下 将一, 小久保 正: 深部がん局所温熱治療のための強磁性微小球 NEW GLASS. 2003; 18 (4): 27-31.

  1. 川下 将一: 骨修復用アパタイト-有機高分子複合体 Phosphorus Letter. 2002.02; (43): 15-19.

  2. Miyata N, Fuke K, Chen Q, Kawashita M, Kokubo T, Nakamura T: Apatite-forming ability and mechanical properties of PTMO-modified CaO-SiO#D2#DR hybrids prepared by sol-gel processing: Effect of CaO and PTMO contents Biomaterials. 2002; 23 (14): 3033-3040. ( DOI )

  1. 小久保 正, 川下 将一: がん治療用セラミックス (特集 セラミックス生体材料の展望) 化学工業. 2001.05; 52 (5): 366-371.

  2. 川下 将一: 柔軟性を有する生体活性無機-有機ハイブリッド (特集1 バイオ--生体セラミックス) ニュ-ガラス. 2001; 16 (4): 13-17.

  1. 川下 将一: 癌を治療する材料 (特集 生体組織を作るための新素材--材料が支える医学のルネッサンス) マテリアルインテグレ-ション. 2000.02; 13 (2): 77-82.

  1. 川下将一: 癌を治療するガラス及び結晶化ガラス ニューガラス. 1998.09; 13 (3): 8-15.

  1. 小久保正, 川下将一: イオン注入技術を利用したがんの新しい放射線治療法 Isotope news. 1997.10; 521 8-9.

  1. 川下将一, 宮路史明, 小久保正: 癌を治療するニューガラス ニューガラス. 1996.06; 11 (2): 59-65.

  2. 宮路史明, 川下将一, 小久保正, 高岡義寛, 山田公: イオン注入による放射線治療ガラスの開発 Ionics. 1996; 22 21-26.

  1. Tomoyo Goto, Jeehoon Shin, Taishi Yokoi, Sung Hun Cho, Tohru Sekino: Photocatalytic properties and controlled morphologies of TiO2-modified hydroxyapatite synthesized by the urea-assisted hydrothermal method Powder Technology. 2020.08; 373 468-475. ( DOI )

  1. Chuthathip M, Noor AFM, Banhan L, Kawashita M: The effect of heating rate and temperature on mechanical and microstructure properties of β-TCP by microwave sintering Solid State Phenomena. 2017; 264 SSP 91-94. ( DOI )

  1. Li Z, Kawashita M: Iron nanoparticles-encapsulating silica microspheres for arterial embolization hyperthermia IOP Conference Series: Materials Science and Engineering. 2011; 18 (SYMPOSIUM 13): ( DOI )

  2. Kawashita M, Miyazaki T, Ohtsuki C.: Biointegration of Prosthetic Devices Ceramic Integration and Joining Technologies: From Macro to Nanoscale. 2011; 777-802. ( DOI )

  1. 川下将一: セラミックの強度と破壊 2009;

  2. 川下将一, 李志霞: 深部がんの低侵襲治療に役立つガラス微小球 2009;

  3. 川下将一, 李志霞: がん治療に貢献するバイオセラミックス 2009;

  1. Kawashita M, Itoh S, Miyamoto K, Araki R, Takaoka GH: Apatite-forming ability of polymer substrates irradiated by oxygen cluster ion beams Key Engineering Materials. 2007; 330-332 I 111-114.

  2. 川下将一, 高岡義寛: クラスターイオンビームによる医用材料の表面改質 Materials Integration,株式会社ティー・アイ・シー. 2007; 20 49-54.

  1. Kawashita, M
    Kamitakahara, M
    Kokubo, T: Bioactive inorganic-organic hybrids with deformability Ann. Chim.-Sci. Mat.. 2004; 29 (1): 7-16.

  2. Juhasz JA, Best SM, Brooks R, Kawashita M, Miyata N, Kokubo T, Nakamura T, Bonfield W: Mechanical properties of glass-ceramic A-W-polyethylene composites: effect of filler content and particle size Biomaterials. 2004; 25 (6): 949-955. ( DOI )

  3. Kawashita M, Kokubo T, Inoue Y, Araki N, Nagata Y, Hiraoka M, Sawada Y: Novel Y2O3microspheres for minimally invasive and local radiotherapy of cancer Transactions - 7th World Biomaterials Congress. 2004;

  1. Kokubo T, Kim H.-M, Kawashita M.: Ceramics for Biomedical Applications Handbook of Advanced Ceramics: Materials, Applications, Processing and Properties. 2003; 2-2 385-416. ( DOI )

  2. Kawashita M, Kamitakahara M, Miyata N, Kokubo T, Nakamura T: Preparation of bioactive inorganic-organic hybrids by hot water treatment Ceramic Engineering and Science Proceedings. 2003; 24 (3): 221-226.

  1. Kawashita M: In situ therapy of deep-seated canver by radioactive microspheres Nippon Hoshasen Gijutsu Gakkai zasshi. 2002; 58 (5): 585-591.

  1. Kamitakahara M, Kawashita M, Kokubo T, Nakamura T.: Possibility for obtaining bioactive glass-ionomer cements Key Engineering Materials. 2001; 192-195 701-704.

  2. Kawashita M, Nakao M, Minoda M, Miyamoto T, Kim H.-M, Kokubo T, Nakamura T.: Apatite-forming ability of polymers with carboxy groups in simulated body fluid Key Engineering Materials. 2001; 192-195 697-700.

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