バイオ情報

185  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. Odaka M, Kim H, Girauit M, Hattori A, Terazono H, Matsuura K, Yasuda K: Evaluation of Imaging Biomarkers for Identification of Single Cancer Cells in Blood Jpn J Appl Phys. 2015.05; 54 (6S1): 06FN04. ( DOI )

  2. Kim H, Terazono H, Takei H, Yasuda K: Depletion effect on concave microstructure at size-specific target particle collection Japanese Journal of Applied Physics . 2015.05; 54 06FL02. ( DOI )

  3. Nomura F, Matsuura K, Hattori A, Odaka M, Sugio Y, Kurotobi H, Terazono H, Yasuda K: Development of impedance/external field potential dual measurement system for evaluation of electrophysiological properties of cells on micro electrodes Japanese Journal of Applied Physics. 2015.05; 54 06FN06. ( DOI )

  1. Kim H, Terazono H, Takei H, Yasuda K: Cup-Shaped Superparamagnetic Hemispheres for Size-Selective Cell Filtration Sci. Rep. 2014.09; 4 6362. ( DOI )

  2. Kim H, Terazono H, Nakamura Y, Sakai K, Hattori A, Odaka M, Mathias George Girault, Arao T, Nishio K, Miyagi Y, Yasuda K: Development of On-Chip Multi-Imaging Flow Cytometry for Identification of Imaging Biomarkers of Clustered Circulating Tumor Cells PLoS One. 2014.08; 9 e104372. ( DOI )

  3. Hattori A, Kim H, Terazono H, Odaka M, Girault M, Yasuda K : Identification of Cells using Morphological Information of Bright Field/Fluorescent Milti-imaging Flow Cytometer Images Jpn J Appl Phys. 2014.05; 53 06JL03. ( DOI )

  4. Kim H, Terazono H, Takei H, Yasuda K: Fabrication of multilayered superparamagnetic particles based on sequential thermal deposition method Jpn J Appl Phys. 2014.05; 53 06JJ01. ( DOI )

  5. Kim H, Terazono H, Takei H, Yasuda K: DNA Hybridization Efficiency on Concave Surface Nano-Structure in Hemispherical Janus Nanocups Langmuir. 2014.04; 30 (5): 1272-1280. ( DOI )

  6. Terazono H, Matsuura K, Kim H, Takei H, Hattori A, Nomura F, Yasuda K: Homogenous measurement during a circulation-water-based ultrahigh-speed polymerase chain reaction and melting curve analysis device Jpn J Appl Phys. 2014.04; 53 06JM08 . ( DOI )

  7. Kaneko T, Nomura F, Hamada T, Abe Y, Takamori H, Sakakura T, Takasuna K, Sanbuissho A, Hyllner J, Sartipy P, Yasuda K.: On-chip in vitro cell-network pre-clinical cardiac toxicity using spatiotemporal human cardiomyocyte measurement on a chip Sci. Rep. 2014.01; 4 4670. ( DOI )

  1. Yasuda K: On-Chip Cellomics: Single-Cell-Based Constructive Cell-Network Assay for Quasi-In Vivo Screening of Cardiotoxicity Proceedings of 35th Annual International Conference of IEEE EMBS. 2013.07; 2825-2828. ( DOI )

  2. Terazono H, Hattori A, Kim H, Takei H, Nomura F, Kaneko T, Yasuda K: Temperature-Shift Speed Dependence of Nonspecific Amplification of Polymerase Chain Reaction Examined by 1480nm Photothermal Transition Speed Controllable High-Speed Polymerase Chain Reaction System Jpn J Appl Phys. 2013.06; 52 06GK02. ( DOI )

  3. Kaneko T, Takizawa E, Nomura F, Hamada T, Hattori A, Yasuda K: On-Chip Single-Cell-Shape Control Technology for Understanding Contractile Motion of Cardiomyocytes Measured Using Optical Image Analysis System Jpn J Appl Phys. 2013.06; 52 06GK06 . ( DOI )

  4. Hamada H, Kaneko T, Nomura H, Yasuda K: Physiological Sample Uniformity and Time–Course Stability in Lined-Up Structure of Human Cardiomyocyte Network for In vitro Predictive Drug-Induced Cardiotoxicity Jpn J Appl Phys. 2013.06; 52 06GK05. ( DOI )

  5. Nomura F, Kaneko T, Hamada T, Hattori A, Yasuda K: Advanced Ring-Shaped Microelectrode Assay Combined with Small Rectangular Electrode for Quasi-In vivo Measurement of Cell-to-Cell Conductance in Cardiomyocyte Network Jpn J Appl Phys. 2013.06; 52 06GK07. ( DOI )

  6. Brunell C.A, Jokinen V, Sakha P, Terazono H, Nomura F, Kaneko T, Lauri S.E, Franssila S, Rivera C, Yasuda K, Huttunen H.J: Microtechnologies to fuel neurobiological research with nanometer precision Journal of Nanobiotechnology. 2013.04; 11 11. ( DOI )

  7. Hamada H, Nomura F, Kaneko T, Yasuda K, Okamoto M: Exploring the implicit interlayer regulatory mechanism between cells and tissue: Stochastic mathematical analyses of the spontaneous ordering in beating synchronization BioSystems. 2013.02; 111 208-215. ( DOI )

  1. Yasuda K, Hattori A, Hyonchol K, Terazono H, Hayashi M, Takei H, Kaneko T, Nomura F: Non-destructive on-chip imaging flow cell-sorting system for on-chip cellomics Microfluidics and Nanofluidics. 2012.12; 14 (6): 907-931. ( DOI )

  2. Terazono H, Kim H, Hayashi M, Hattori A, Nomura F, Kaneko T, Yasuda K: A Non-Destructive Culturing and Cell Sorting Method for Cardiomyocytes and Neurons Using a Double Alginate Layer PLoS ONE. 2012.08; 7 (8): e42485. ( DOI )

  3. Yasuda K: On-Chip Cellomics: Constructive Understanding of Multicellular Network Using On-Chip Cellomics Technology Jpn J Appl Phys. 2012.08; 51 08KA03. ( DOI )

  4. Nomura F, Kaneko T, Hamada T, Hattori A, Yasuda K: Quantitative Evaluation of Closed-Loop-Shaped Cardiomyocyte Network by Using Ring-Shaped Electrode Jpn J Appl Phys. 2012.06; 51 06FK06. ( DOI )

  5. Kaneko T, Nomura F, Hattori A, Yasuda K: Improvement of Electrical Stimulation Protocol for Simultaneous Measurement of Extracellular Potential with On-Chip Multi-Electrode Array System Jpn J Appl Phys. 2012.06; 51 06FK02. ( DOI )

  6. Hamada T, Nomura F, Kaneko T, Yasuda K: Importance of Thickness in Human Cardiomyocyte Network for Effective Electrophysiological Stimulation Using On-Chip Extracellular Microelectrodes Jpn J Appl Phys. 2012.06; 51 06FK03. ( DOI )

  7. Hattori A, Yasuda K: Extended Depth of Field Optics for Precise Image Analysis in Microfluidic Flow Cytometry Jpn J Appl Phys. 2012.06; 51 06FK05. ( DOI )

  8. Terazono H, Hayashi M, Kim H, Hattori A, Yasuda K: Cell-Sorting System with On-Chip Imaging for Label-Free Shape-Based Selection of Cells Jpn J Appl Phys. 2012.06; 51 06FK08. ( DOI )

  9. Kim H, Takei H, Negishi T, Kudo M, Terazono H, Yasuda K: Contribution of Metal Layer Thickness for Quantitative Backscattered Electron Imaging of Field Emission Scanning Electron Microscopy e-J Surf Sci Nanotech (e-JSSNT). 2012.06; 10 301-304. ( DOI )

  10. Kim H, Terazono H, Hayashi M, Takei H, Yasuda K: Highly Sensitive Detection of Target Biomolecules on Cell Surface Using Gold Nanoparticle Conjugated with Aptamer Probe Jpn J Appl Phys. 2012.06; 51 06FH01. ( DOI )

  11. Yasuda K: On-Chip Cellomics Assay Enabling Algebraic and Geometric Understanding of Epigenetic Information in Cellular Networks of Living Systems. 1. Temporal Aspects of Epigenetic Information in Bacteria Sensors. 2012.05; 12 (6): 7169-7206. ( DOI )

  12. Akihiro Hattori, Kenji Yasuda: Evaluation of a Centrifuged Double Y-Shape Microfluidic Platform for Simple Continuous Cell Environment Exchange. International Journal of Molecular Sciences. 2012.01; 13 1. ( DOI )

  1. Nomura F, Kaneko T, Hattori A, Yasuda K: Label-free shape-based selection of cardiomyocytes with on-chip imaging cell sorting system Journal of Bioprocessing & Biotechniques. 2011.12; S3 (3): 1-6. ( DOI )

  2. Nomura F, Kaneko T, Hattori A, Yasuda K: On-chip constructive cell-network study (II): on-chip quasi-in vivo cardiac toxicity assay for ventricular tachycardia/fibrillation measurement using ring-shaped closed circuit microelectrode with lined-up cardiomyocyte cell network. J Nanobiotechnology. 2011.09; 9 39. ( PubMed , DOI )

  3. Kaneko Tomoyuki, Nomura Fumimasa, Yasuda Kenji: Orientation and Community Size Dependences of Pulsatile Electrical Field Stimulation on Lined-Up and Rod-Shaped Single Cardiomyocytes. Jpn J Appl Phys. 2011.08; 50 (8): 80220. ( DOI )

  4. Hayashi Masahito, Hattori Akihiro, Kim Hyonchol, Terazono Hideyuki, Kaneko Tomoyuki, Yasuda Kenji: Fully Automated On-Chip Imaging Flow Cytometry System with Disposable Contamination-Free Plastic Re-Cultivation Chip. International Journal of Molecular Sciences. 2011.06; 12 (6): 3618-3634. ( DOI )

  5. Kim Hyonchol, Hayashi Masahito, Terazono Hideyuki, Takei Hiroyuki, Yasuda Kenji: Production of Double-Layered Metal Nanocups for Artificial Nanospace of Biomolecular Reaction. Jpn J Appl Phys. 2011.06; 50 06GJ03. ( DOI )

  6. Terazono Hideyuki, Hayashi Masahito, Kim Hyonchol, Hattori Akihiro, Kaneko Tomoyuki, Yasuda Kenji: Image-Based Identification of Single Neurons for Noninvasive Imaging Purification. Jpn J Appl Phys. 2011.06; 50 06GL07. ( DOI )

  7. Hattori Akihiro, Kaneko Tomoyuki, Yasuda Kenji: Improvement of Particle Alignment Control and Precise Image Acquisition for On-Chip High-Speed Imaging Cell Sorter. Jpn J Appl Phys. 2011.06; 50 06GL06. ( DOI )

  8. Hayashi Masahito, Kaneko Tomoyuki, Yasuda Kenji: Continuous Concentration and Separation of Microparticles Using Dielectrophoretic Force in a V-Shaped Electrode Array. Jpn J Appl Phys. 2011.06; 50 06GL03. ( DOI )

  9. Kaneko T, Nomura F, Yasuda K: On-chip Constructive Cell-Network Study (I): Contribution of cardiac fibroblasts to cardiomyocyte beating synchronization and community effect. Journal of nanobiotechnology. 2011.05; 9 (1): 21. ( PubMed , DOI )

  10. Kaneko Tomoyuki, Nomura Fumimasa, Yasuda Kenji: Quasi-In vivo Heart Electrocardiogram Measurement of ST Period Using Convolution of Cell Network Extracellular Field Potential Propagation in Lined-Up Cardiomyocyte Cell-Network Circuit. Jpn J Appl Phys. 2011.04; 50 70213. ( DOI )

  11. Kim H, Negishi T, Kudo M, Takei H, Yasuda K: Backscattered Electron Contrast Imaging of Scanning Electron Microscopy for Identifying Double Layered Nano-Scale Elements. Journal of Surface Analysis. 2011.03; 17 (3): 341-345.

  1. Yasuda K, Kaneko T, Nomura F: On-Chip Pre-Clinical Cardiac Toxicity: Testing Compounds Beyond hERG And QT Using hES/hiPS Cardiomyocyte Re-Entry Cell Network Model On a Chip. Proceeding of The 14th International Conference on Miniaturized Systems for Chemistry and Life Sciences. 2010.10; 716-718.

  2. Hayashi M, Yasuda K: Simple Microfluidic Continuous Concentration of Microparticles with Different Dielectric Constants Using Dielectrophoretic Force in a V-Shaped Electrode Array. Jpn J Appl Phys. 2010.09; 49 (9): 97002 1-5. ( DOI )

  3. Matsumura K, Yagi T, Hattori A, Soloviev M, Yasuda K: Using single cell cultivation system for on-chip monitoring of the interdivision timer in Chlamydomonas reinhardtii cell cycle. J Nanobiotechnology. 2010.09; 8 23. ( PubMed , DOI )

  4. Kim H, Takei H, Yasuda K: Production of Nanoparticles Using Several Materials for Labeling of Biological Molecules. Jpn J Appl Phys. 2010.08; 49 (8): 87001 1-7. ( DOI )

  5. Yasuda K, Kaneko T, Nomura F: On-Chip Cellomics for Cardiotoxyty: Cell Network Model For Re-Construction of Higher Complexity of Organs. The Open Conference Proceedings Journal. 2010.08; 1 168-177. ( DOI )

  6. Hattori A, Yasuda K: Comprehensive Study of Microgel Electrode for On-Chip Electrophoretic Cell Sorting. Jpn J Appl Phys. 2010.06; 49 (6): 06GM04 1-4. ( DOI )

  7. Terazono H, Takei H, Hattori A, Yasuda K: Development of a High-Speed Real-Time Polymerase Chain Reaction System Using a Circulating Water-Based Rapid Heat-Exchange. Jpn J Appl Phys. 2010.06; 49 (6): 06GM05 1-5. ( DOI )

  8. Kim H, Kira A, Yasuda K: Non-amplified Quantitative Detection of Nucleic Acid Sequences Using a Gold Nanoparticle Probe Set and Field-Emission Scanning Electron Microscopy. Jpn J Appl Phys. 2010.06; 49 (6): 06GK07 1-6. ( DOI )

  9. Terazono H, Takei H, Hayashi M, Hattori A, Yasuda K: Development of an integrated system for rapid detection of biological agents. Proceeding of SPIE Defense, Security, and Sensing 2010. 2010.05; 766503 766503. ( DOI )

  10. Terazono H, Anzai Y, Soloviev M, Yasuda K: Labelling of live cells using fluorescent aptamers: binding reversal with DNA nucleases. J Nanobiotechnology. 2010.04; 8 (1): 8. ( PubMed , DOI )

  11. Kim H, Negishi T, Kudo M, Takei H, Yasuda K: Quantitative backscattered electron imaging of field emission scanning electron microscopy for discrimination of nano-scale elements with nm-order spatial resolution. J Electron Microsc (Tokyo). 2010.04; 59 (5): 379-385. ( PubMed , DOI )

  12. Kim H, Takei H, Yasuda K: Production of Size-Controlled Nanoscopic Cap-Shaped Metal Shells. Jpn J Appl Phys. 2010.04; 49 (4): 48004 1-2. ( DOI )

  13. Terazono H, Takei H, Hattori A, Yasuda K: Development of a high-speed real-time PCR system for rapid and precise nucleotide recognition. Proceeding of SPIE Defense, Security, and Sensing 2010. 2010.04; 7673 76730U. ( DOI )

  1. Kim H, Takei H, Yasuda K: Quantitative evaluation of nano-particle-based labeling at a measurement of DNA microarray. Sensors and Actuators B: Chemical. 2009.10; 144 (1): 6-10. ( DOI )

  2. Kim H. Yasuda K. Takei H.: Production of nanoscopic metal labels for electron microscopy: Specific detection of target DNA. Sensors and Actuators B: Chemical. 2009.08; 142 (1): 1-6. ( DOI )

  3. Shimamoto Y, Suzuki M, Mikhailenko SV, Yasuda K, Ishiwata S: Inter-sarcomere coordination in muscle revealed through individual sarcomere response to quick stretch. Proc Natl Acad Sci USA. 2009.07; 106 (29): 11954-11959. ( PubMed , DOI )

  4. Kira A. Kim H. Yasuda K.: Homogeneous Immobilization of Probe DNAs on DNA Chip Using Polyurea Thin Film. e-Journal of Surface Science and Nanotechnology. 2009.06; 7 728-730. ( DOI )

  5. Tanaka T, Tohyama S, Murata M, Nomura F, Kaneko T, Chen H, Hattori F, Egashira T, Seki T, Ohno Y, Koshimizu U, Yuasa S, Ogawa S, Yamanaka S, Yasuda K, Fukuda K: In vitro pharmacologic testing using human induced pluripotent stem cell-derived cardiomyocytes. Biochem Biophys Res Commun. 2009.05; 385 (4): 497-502. ( PubMed , DOI )

  6. Kira A, Kim H, Yasuda K: Contribution of nanoscale curvature to number density of immobilized DNA on gold nanoparticles. Langmuir. 2009.01; 25 (3): 1285-1288. ( PubMed , DOI )

  1. Terazono H. Hattori A. Takei H. Takeda K. Yasuda K.: Development of 1480 nm Photothermal High-Speed Real-Time Polymerase Chain Reaction System for Rapid Nucleotide Recognition. Jpn J Appl Phy. 2008.06; 47 (6): 5212-5216. ( DOI )

  2. Shibata K. Terazono H. Hattori A. Yasuda K.: Collagen Micro-Flow Channels as an for In vitro Blood-Brain Barrier Model. Jpn J Appl Phys. 2008.06; 47 (6): 5208-5211. ( DOI )

  1. Oikawa K. Kim H. Watanabe N. Shigeno M. Shirakawabe Y. Yasuda K.: Measuring the sizes of nanospheres on a rough surface by using atomic force microscopy and a curvature-reconstruction method. Ultramicroscopy. 2007.10; 107 (10-11): 1061-1067. ( DOI )

  2. Suzuki I. Hattori A. Yasuda K.: On-Chip Multichannel Action Potential Recording System for Electrical Measurement of Single Neurites of Neuronal Network. Jpn J Appl Phys. 2007.10; 46 (42): L1028-L1031. ( DOI )

  3. Suzuki I. Yasuda K.: Constructive Formation and Connection of Aligned Micropatterned Neural Networks by Stepwise Photothermal Etching during Cultivation. Jpn J Appl Phys. 2007.09; 46 (9B): 6398-6403. ( DOI )

  4. Umehara S, Inoue I, Wakamoto Y, Yasuda K: Origin of individuality of two daughter cells during the division process examined by the simultaneous measurement of growth and swimming property using an on-chip single-cell cultivation system. Biophys J. 2007.08; 93 (3): 1061-1067. ( PubMed , DOI )

  5. Anzai Y. Terazono H. Yasuda K.: Simple non-invasive cell separation method using magnetic aptamer-conjugated microbeads and nuclease digestion. J Biol Phys Chem. 2007.08; 7 83-86.

  6. Kaneko T, Kojima K, Yasuda K: An on-chip cardiomyocyte cell network assay for stable drug screening regarding community effect of cell network size. Analyst. 2007.06; 132 (9): 892-898. ( PubMed , DOI )

  7. Suzuki I, Yasuda K: Detection of tetanus-induced effects in linearly lined-up micropatterned neuronal networks: application of a multi-electrode array chip combined with agarose microstructures. Biochem Biophys Res Commun. 2007.03; 356 (2): 470-475. ( PubMed , DOI )

  8. Kaneko T, Kojima K, Yasuda K: Dependence of the community effect of cultured cardiomyocytes on the cell network pattern. Biochem Biophys Res Commun. 2007.03; 356 (2): 494-498. ( PubMed , DOI )

  9. Umehara S, Hattori A, Inoue I, Yasuda K: Asynchrony in the growth and motility responses to environmental changes by individual bacterial cells. Biochem Biophys Res Commun. 2007.03; 356 (2): 464-469. ( PubMed , DOI )

  10. Kim H. Oikawa K. Watanabe N. Shigeno M. Shirakawabe Y. Yasuda K.: Identification of Size Differences of Gold Nanoparticles on Cell Surface by Curvature Reconstruction Method Using Atomic Force Microscopy. Jpn J Appl Phys. 2007.02; 46 (8): L184-L186. ( DOI )

  1. Wakamoto Y. Yasuda K.: Epigenetic inheritance of elongated phenotypes between generations revealed by individual-cell-based direct observation. Meas. Sci.Technol. 2006.10; 17 3171-3177. ( DOI )

  2. Kojima K, Kaneko T, Yasuda K: Role of the community effect of cardiomyocyte in the entrainment and reestablishment of stable beating rhythms. Biochem Biophys Res Commun. 2006.10; 351 (1): 209-215. ( PubMed , DOI )

  3. Umehara S, Pourmand N, Webb CD, Davis RW, Yasuda K, Karhanek M: Current rectification with poly-l-lysine-coated quartz nanopipettes. Nano Lett. 2006.10; 6 (11): 2486-2492. ( PubMed , DOI )

  4. Ayano S, Wakamoto Y, Yamashita S, Yasuda K: Quantitative measurement of damage caused by 1064-nm wavelength optical trapping of Escherichia coli cells using on-chip single cell cultivation system. Biochem Biophys Res Commun. 2006.10; 350 (3): 678-684. ( PubMed , DOI )

  5. Kawai-Noma S, Ayano S, Pack CG, Kinjo M, Yoshida M, Yasuda K, Taguchi H: Dynamics of yeast prion aggregates in single living cells. Genes Cells. 2006.09; 11 (9): 1085-1096. ( PubMed , DOI )

  6. Wakamoto Y, Yasuda K: Quantitative evaluation of cell-to-cell communication effects in cell group class using on-chip individual-cell-based cultivation system. Biochem Biophys Res Commun. 2006.09; 349 (3): 1130-1138. ( PubMed , DOI )

  7. Matsumura K, Orita K, Wakamoto Y, Yasuda K: Phagocytic response to fully controlled plural stimulation of antigens on macrophage using on-chip microcultivation system. J Nanobiotechnology. 2006.08; 4 7. ( PubMed , DOI )

  8. Gharizadeh B, Akhras M, Nourizad N, Ghaderi M, Yasuda K, Nyrén P, Pourmand N: Methodological improvements of pyrosequencing technology. J Biotechnol. 2006.07; 124 (3): 504-511. ( PubMed , DOI )

  9. Moriguchi H. Yasuda K.: Photothermal microneedle etching: Improved three-dimensional microfabrication method for agarose gel for topographical control of cultured cell communities. Jpn J Appl Phys. 2006.06; 45 (30): L796-L799. ( DOI )

  10. Toyota T, Tsuha H, Yamada K, Takakura K, Yasuda K, Sugawara T. : Fluorescence microscopic investigation on morphological changes of giant multilamellar vesicles induced by amphiphilic additives Langmuir . 2006.02; 22 (5): 1976-1981. ( DOI )

  1. Kojima K, Kaneko T, Yasuda K: Stability of beating frequency in cardiac myocytes by their community effect measured by agarose microchamber chip. Journal of Nanobiotechnology . 2005.05; 3 (4): ( DOI )

  2. Wakamoto Y, Ramsden J, Yasuda K: Single-cell growth and division dynamics showing epigeneticcorrelations. Analyst. 2005.03; 130 (3): 311 -317. ( PubMed , DOI )

  3. Suzuki I, Sugio Y, Jimbo Y, Yasuda K: Stepwise pattern modification of neuronal network in photo-thermally-etched agarose architecture on multi-electrode array chip for individual-cell-based electrophysiological measurement. Lab Chip. 2005; 5 241 -247.

  4. Kaneko T, Kojima K, Yasuda K: Using agarose microchamber system, measurements of community effects of the cardiomyocytes and the heterogeneous cell types Proceedings of The 6th International Conference on Intelligent Materials and Systems. 2005; 183-186.

  1. Yasuda K: Biotechnology approach to determination of genetic and epigenetic control in cells. Journal of Nanobiotechnology . 2004.11; 2 11.

  2. Kojima K, Kaneko T, Yasuda K: A novel method of cultivating cardiac myocytes in agarose microchamber chips for studying cell synchronization. Journal of Nanobiotechnology . 2004.09; 2 9.

  3. Suzuki I, Sugio Y, Moriguchi H, Jimbo Y, Yasuda K: Modification of a neuronal network direction using stepwise photo-thermal etching of an agarose architecture. Journal of Nanobiotechnology . 2004.07; 2 7.

  4. Takahashi K, Hattori A, Suzuki I, Ichiki T, Yasuda K: Non-destructive on-chip cell sorting system with real-time microscopic image processing. Journal of Nanobiotechnology . 2004.06; 2 5.

  5. Yasuda K: On-chip single-cell-based microcultivation method for analysis of genetic information and epigenetic correlation of cells. Journal of molecular recognition . 2004.05; 17 (3): 186-193.

  6. Inoue I, Shiomi D, Kawagishi I, Yasuda K. : Simultaneous measurement of sensor-protein dynamics and motility of a single cell by on-chip microcultivation system. Journal of Nanobiotechnology . 2004.04; 2 4.

  7. Umehara S, Yasuda K: 大腸菌における運動エネルギー消費と成長エネルギー消費の履歴現象 伝熱. 2004; 43 (180): 28-32.

  8. Ayano S, Noma S, Taguchi H, Yoshida M, Yasuda K: On-chip single-cell observation assay for propagation dynamics of yeast Sup35 prionlike proteins. Jpn J Appl Phys. 2004; 43 (11A): L1429-L1432.

  9. Sugio Y, Kojima K, Moriguchi H, Takahashi K, Kaneko T, Yasuda K: An agar-based on-chip neural-cell cultivation system for stepwise control of network pattern generation during cultivation. Sens & Actuat B . 2004; 99 (1): 156-162.

  10. Hattori A, Moriguchi H, Ishiwata S, Yasuda K: A 1480-nm/1064-nm dual wavelength photo-thermal etching system for non-contact three-dimensional microstructure generation into agar microculture chip. Sens & Actuat B. 2004; 100  (3): 455-462.

  11. Umehara S, Hattori A, Wakamoto Y, Yasuda K: Simultaneous measurement of growth and movement of cells exploiting on-chip single-cell cultivation assay, Jpn J Appl Phys. 2004; 43 (3): 1214-1217.

  12. Suzuki I, Sugio Y, Moriguchi H, Hattori A, Yasuda K, Jimbo Y: Pattern modification of a neuronal network for individual-cell-based electrophysiological measurement using photothermal etching of an agarose architecture with a multielectrode array. IEE Proc.-Nanobiotechnol. 2004; 151 (3): 116-121.

  13. Suzuki I, Sugio Y, Jimbo Y, Yasuda K: Individual-cell-based electrophysiological measurement of a topographically controlled neuronal network pattern using agarose architecture with a multi-electrode array. Jpn J Appl Phys. 2004; 43 (3B): L403-L406.

  1. Takahashi K, Matsumura K, Yasuda K: On-chip microcultivation chamber for swimming cells using visualized poly(dimetylsiloxane) valve. Jpn J Appl Phys. 2003; 42 (9AB): L1104 -L1107.

  2. Kojima K, Takahashi K, Kaneko T, Yasuda K: Flexible control of electrode pattern on cultivation chamber during cultivation of cells using non-destructive optical etching. Jpn J Appl Phys. 2003; 42 (8A): L980 -L982.

  3. Kojima K, Moriguchi H, Hattori A, Kaneko T, Yasuda K: Two-dimensional Network Formation of Cardiac Myocytes in Agar Microculture Chip with 1480-nm Infrared Laser Photo-thermal Etching. Lab Chip. 2003; 3 292-296.

  4. Umehara S, Wakamoto Y, Inoue I, Yasuda K: On-chip single-cell microcultivation assay for monitoring environmental effects on isolated cells, Biochem Biophys Res Commun. 2003; 305 534-540.

  5. Matsumura K, Yagi T, Yasuda K: Role of Timer and Sizer in Regulation of Chlamydomonas Cell Cycle, Biochem Biophys Res Commun. 2003; 306 1042-1049.

  6. Moriguchi H, Takahashi K, Sugio Y, Wakamoto Y, Inoue I, Jimbo Y, Yasuda K: On chip neural cell cultivation using agarose-microchamber array constructed by photo-thermal etching method. Electrical Engineering in Japan. 2003; 146 (2): 37-42.

  7. Wakamoto Y, Umehara S, Matsumura K, Inoue I, Yasuda K: Development of Non-Destructive, Non-contact Single-Cell Based Differential Cell Assay using On-chip Microcultivation and Optical Tweezers, Sens & Actuat B. 2003; 96 (3): 693-700.

  8. Matsumura K, Yagi T, Yasuda K: Differential analysis of cell cycle stability in Chlamydomonas using on-chip single-cell cultivation system, Jpn J Appl Phys. 2003; 42 (7A): L784-L787.

  9. Hattori A, Umehara S, Wakamoto Y, Yasuda K: Measurement of incident angle dependence of swimming bacterium reflection using on-chip single-cell cultivation assay, Jpn J Appl Phys. 2003; 42 (7B): L873-L875.

  1. Moriguchi H, Wakamoto Y, Sugio Y, Takahashi K, Inoue I Yasuda K: An agar-microchamber cell-cultivation system: flexible change of microchamber shapes during cultivation by photo-thermal etching. Lab Chip. 2002; 2 125-130.

  2. 森口裕之、高橋一憲、杉尾嘉宏、若本祐一、井之上一平、神保泰彦、安田賢二 : 集束光加熱エッチング法によって加工したアガロースマイクロチャンバアレイを用いた神経細胞の培養 電気学会論文誌. 2002; 122 (C): 1453-1458.

  3. Takakura K, Toyota T, Yamada K, Ishimaru M, Yasuda K, T. Sugawara: Morphological Change of Giant Vesicles Triggered by Dehydrocondensation Reaction Chem Lett. 2002; 31 (3): 404-405.

  4. Moriguchi H, Takahashi K, Kaneko T, Yasuda K: On-chip agarose-microchamber (AMC) array cell-cultivation system for topographical control of neural network Proceedings of Micro Total Analysis System Symposium 2002. 2002; 1 13-15.

  5. 高橋一憲、杉尾嘉宏、森口裕之、神保泰彦、安田賢二 : 光硬化性樹脂SU-8と半透膜を用いた神経細胞長期培養用多電極刺激計測マイクロチャンバの試作 電気学会論文誌. 2002; 122 (C): 1447-1452.

  1. 岡野和宣, 陳鋼, 小原賢信, 梶山智晴, 安田賢二, 石渡信一 : DNAプローブアレイを用いたDNA断片回収. 電気学会論文誌E. 2001; 121 (E4): 181-186.

  2. Inoue I, Wakamoto Y, Yasuda K: Non-genetic Variability of Division Cycle and Growth of Isolated Individual Cells in On-chip Culture System." Proc Japan Acad. 2001; 77B 145-150.

  3. Wakamoto Y, Inoue I, Moriguchi H, Yasuda K: Analysis of single-cell differences using on-chip microculture system and optical trapping. Fresenius J Anal Chem . 2001; 371 276-281.

  4. Inoue I, Wakamoto Y, Moriguchi H, Okano K, Yasuda K: On-chip Culture System for Observation of Isolated Individual Cells. Lab chip. 2001; 1 50-55.

  1. Yasuda K: Non-destractive, non-contact handling method for biomaterials in micro-chamber by ultrasound Sens & Actuat B. 2000; 64 128-135.

  2. Yasuda K, Okano K, Ishiwata S: Focal extraction of surface-bound DNA from a microchip using photo-thermal denaturation BioTechniques . 2000; 28 1006-1011.

  3. Okano K, Yasuda K, Ishiwata S: Position-specific release of DNA from a chip by using photothermal denaturation Sens & Actuat B. 2000; 64 88-94.

  1. Yasuda K: Measurement of microscopic spatial distribution of acoustic radiation force using microspheres and electrostatic force Jpn J Appl Phys. 1999; 38 3316-3319.

  1. Harada Y, Yasuda K, Nomura S, Kajimura N, Sasaki YC: Vectorially oriented fixation of membrane-embedded bacteriorhodopsin onto an inert base Langmiur. 1998; 14 1829-1835.

  1. Sasaki YC, Yasuda K, Suzuki Y, Ishibashi T, Satoh I, Fujiki Y, Ishiwata S: Two-dimensional arrangement of a functional protein by cysteine-gold interaction: enzyme activity and characterization of a protein monolayer on a gold substrate Biophys J. 1997; 72 1842-1848.

  2. Yasuda K: Blood concentration by superposition of higher harmonics of ultrasound Jpn J Appl Phys. 1997; 36 3130-3135.

  3. Ishiwata S, Miki M, Shin I, Funatsu T, Yasuda K, dos Remedios CG: Interhead distances in myosin attached to F-actin estimated by fluorescence energy transfer spectroscopy Biophys J. 1997; 73 895-904.

  4. Yasuda K, Haupt SS, Umemura S, Yagi T, Nishida M, Shibata Y: Using acoustic radiation force as a concentration method for erythrocytes J Acoust Soc Am. 1997; 102 642-645.

  5. Yasuda K, Kamakura T: Acoustic radiation force on micrometer-size particles Appl Phys Lett . 1997; 71 1771-1773.

  1. Fujita H, Yasuda K, Niitsu S, Funatsu T, Ishiwata S: Structual and functional reconstitution of thin filaments in the contractile apparatus of cardiac muscle Biophys J. 1996; 71 2307-2318.

  2. Moriyama Y, Yasuda K, Ishiwata S, Asai H: Ca2+ -induced tension delvelopment in the stalks of glycerinated vorticella convallaria Cell Motil Cytoskeleton . 1996; 34 271 -278.

  3. Ishiwata S, Yasuda K, Shindo Y, Fujita H: Microscopic analysis of the elastic properties of connectin/titin and nebulin in myofibrils Adv. Biophys. . 1996; 33 135-142 -142.

  4. Yasuda K, Takeda K , Umemura S: Studies on particle separation by acoustic radiation force and electrostaticforce Jpn J Appl Phys. 1996; 35 3295 -3299.

  5. Yasuda K, Takeda K, Umemura S: Deoxyribonucleic acid concentration using acoustic radiation force J Acoust Soc Am. 1996; 99 1248-1250.

  6. Yasuda K, Shindo Y, Ishiwata S: Synchronous behavior of spontaneous oscillations of sarcomeres in skeletal myofibrils under isotonic conditions Biophys J. 1996; 70 1823-1829.

  7. Yasuda K, Umemura S, Takeda K: Particle separation using acoustic radiation force and electrostaticforce J Acoust Soc Am. 1996; 99 1965-1970.

  1. Yasuda K, Anazawa T, Ishiwata S : Microscopic analysis of the elastic properties of nebulin in skeletal myofibrils Biophys J. 1995; 68 598-608.

  2. Yasuda K, Umemura S, Takeda K: Concentration and fractionation of small particles in liquid by ultrasound Jpn J Appl Phys. 1995; 34 2715 -2720.

  1. Yasuda K, Fujita H, Fujiki Y Ishiwata S: Length regulation of thin filaments without nebulin Proc Japan Acad. 1994; 70 151-156.

  1. Ishiwata S, Anazawa T, Yasuda K, Fujita T, Fukuda N, Shimizu H : Spontaneous tension oscillation (SPOC) of muscle fibers myofibrils. Minimum requirements for SPOC Adv Exp Med Biol. 1993; 332 545-556.

  2. Ishiwata S, Yasuda K: Mechano-chemical coupling in spontaneous oscillatory contraction of muscle Phase Transitions . 1993; 45 105-136.

  1. Anazawa T, Yasuda K, Ishiwata S: Spontaneous oscillation of tension and sarcomere length in skeletal myofibrils Biophys J. 1992; 61 1099-1108.

  1. Ishiwata S, Okamura N, Shimizu H, Anazawa T, Yasuda K: Spontaneous oscillatory contraction (SPOC) of sarcomeres in skeletal muscle Adv Biophys. 1991; 27 227-235.

  1. 安田賢二: 1細胞ソーティング:末梢循環がん細胞(CTC)の検出分離 細胞工学. 2015.02; 34 (3): 237-243.

  1. 安田賢二、野村典正、寺薗英之、服部明弘、金 賢徹: オンチップセロミクスと微細加工技術 バイオマテリアル. 2014.10; 32 (4): 308-323-323.

  2. 安田賢二: CTC検出法と臨床応用 がん分子標的治療. 2014.09; 12 (3): 44-51.

  3. 安田賢二: ヒト細胞を用いた創薬研究支援工学技術の現状と展望 日本再生医療学会雑誌 再生医療. 2014.05; 13 (3): 32-39.

  1. 安田賢二: 物理はどこまで生命を理解できるか-物理学からみた「生命科学」のおもしろさ パリティ. 2013.07; 28 (7): 4-5.

  2. 安田賢二: いまこそ読みたい物理の名著 生命とは何か パリティ. 2013.05; 28 (5): 58-59.

  3. 安田賢二: 生体分子がナノ世界でつくり出す「秩序」と「規則性」 パリティ. 2013.03; 28 (3): 1.

  4. 安田賢二: ナノバイオマシンの物理学 パリティ. 2013.03; 28 (3): 4-10.

  5. 安田賢二: 超音波放射圧による生体微粒子ハンドリング 超音波テクノ . 2013.02; 25 (1): 15-24.

  1. 安田賢二: NEWS ノーベル医学・生理学賞 人工多能性幹細胞(iPS細胞)の作成 パリティ. 2012.12; 27 (12): 26-28.

  2. 安田賢二、金子智行、野村典正: 幹細胞の創薬応用を目指したオンチップ・テクノロジー ファルマシア. 2012.09; 48 (9): 823-825.

  3. 金賢徹, 寺薗英之, 竹井弘之, 安田賢二: 多元素微粒子プローブアレイ標識による1細胞in situ発現解析を目指すアダプティブSEMの開発 顕微鏡. 2012.03; 47 (1): 59-64.

  1. 安田賢二: iPS細胞で何ができるか~創られたヒト細胞から創薬スクリーニングシステムを ジェトロセンサー. 2011.11; 40-41.

  2. Masahito Hayashi, Hyonchol Kim, Hideyuki Terazono, Akihiko Hattori, Kenji Yasuda, Takashi Ohtsu, Yohei Miyagi, Tokuzo Arao, Kazuto Nishio: CTC計測装置技術の現状と次世代 CTC装置 技術の展望 Cytometry Research. 2011.10; 21 (2): 1-6.

  3. 安田 賢二、金子智行、野村典正: iPS細胞から創られたヒト細胞を用いたin vitro創薬スクリーニングシステム JSAAE News Letter. 2011.10; 40 20-21.

  4. 安田賢二: 末梢循環がん細胞(CTC)計測技術のフロンティア 最新医学. 2011.09; 66 (9): 91-98.

  5. 安田賢二、金子智行、野村典正: ヒトiPSなどの幹細胞から分化した心筋細胞を用いた不整脈予測法の開発 心電図. 2011.08; 31 (3): 318-324.

  6. 金子智行、野村典正、安田賢二: 東京医科歯科大学生体材料工学研究所情報分野の紹介 応用数理. 2011.03; 21 (1): 58-60.

  7. 安田賢二: Pharmacogenomics for Cancer Therapy CTC計測技術の最前線 がん分子標的治療. 2011.01; 9 (1): 46-55.

  1. 安田賢二: 細胞を並べる技術~再生医療研究からの示唆とその応用~ 日本再生医療学会雑誌 再生医療. 2010.08; 9 (3): 71-82.

  2. 安田賢二: オンチップ・セロミクス・テクノロジーのヒト幹細胞由来心筋細胞を用いた創薬スクリーニングシステムへの展開 薬学雑誌. 2010.04; 130 (4): 545-557.

  3. 安田賢二: 生命システムの構成的再構築の試み:オンチップ・セロミクス計測技術の開発 日本物理学会誌. 2010.03; 65 (3): 181-186.

  1. 安田賢二: オンチップ・セロミクス技術を用いた細胞からのセンシング・バイオロジー 月刊バイオインダストリー. 2009.11; 30-37.

  1. 安田賢二: 細胞間の物質移動―環境から細胞への物質刺激― 日本機械学会誌. 2008.07; 111 582-585.

  2. 安田賢二: 超音波放射圧による生体微粒子ハンドリング パリティ. 2008.07; 23 (7): 14-23.

  1. 安田賢二: 1細胞からの生命科学:オンチップ細胞機能計測 機能材料. 2007.05; 27 (5): 35-44.

  2. 安田賢二: 微量細部対応型オンチップセルソーターシステムの開発 Cytometry Research . 2007.03; 17 (1): 51-57.

  1. 寺薗英之, 安田賢二: オンチップ・セロミクス計測システム 日本薬理学雑誌. 2006.09; 132 192-193.

  2. 安田賢二 : オンチップ・セルソーターシステム―細胞の分離から培養まで― バイオサイエンスとインダストリー. 2006.08; 64 (8): 23-26.

  3. 安田賢二 : 単一細胞操作・精製技術(特集ナノバイオロジー:ナノテクでバイオを変える) 細胞工学. 2006.07; 25 (8): 884-889.

  4. 安田賢二 : オンチップ細胞分離(セルソーター)システム(テクノトレンド) バイオテクノロジージャーナル. 2006.03; 6 (2): 201-204.

  5. 安田賢二 : NO(脳)と言わない研究者魂 -チップ上に脳を創る- 未来材料. 2006.02; 6 (2): 68-71.

  1. 安田賢二: 微細加工技術を用いたオンチップ細胞培養解析システム 応用物理. 2005.07; 74 (7): 890-895.

  2. 安田賢二: 微細加工技術を利用したオンチップ細胞培養計測技術の新展開 生体の科学 . 2005.03; 56 (2): 144-149.

  3. 安田賢二: アガロースマイクロ加工チップ上に構築した細胞ネットワークの構成的理解の試み-細胞集団の空間パターンに隠された後天的情報の理解を目指して 化学と工業. 2005.02; 58 (7): 144-146.

  1. 安田賢二: II-7. セロミクス研究のためのオンチップ1細胞解析システム 蛋白質 核酸 酵素2004年8月号増刊 バイオ高性能機器・新技術利用マニュアル. 2004.08; 49 (11): 1917-1923.

  2. 安田賢二: 微細加工技術を用いたオンチップ1細胞解析システム、 バイオサイエンスとインダストリー. 2004; 62 (2): 27-30.

  1. 安田賢二: オンチップセルソーター バイオマテリアル . 2003; 21 (2): 127-132.

  1. 井之上一平, 若本祐一, 安田賢二: マイクロチップを利用した1細胞長期培養装置 日本生物物理学会 生物物理. 2001; 41 111-11.

  2. 若本祐一、井之上一平、森口裕之、安田賢二: マイクロチップを利用した1細胞培養システム 日本生化学学会 生化学. 2001; 73 (12): 1439-1443.

  1. 安田賢二: 超音波輻射圧による生体微粒子操作技術 応用物理. 1998; 67 (3): 323-326.

  2. 安田賢二, 八木俊樹 : 超音波輻射圧による生体微粒子操作技術 生物物理 . 1998; 39 (3): 176-178.

  1. 安田賢二、梅村晋一郎、武田一男 : 超音波輻射圧を用いた微粒子分画と濃縮技術のDNAへの応用 超音波テクノ . 1996.07; 6-9.

  2. 安田賢二 : 超音波輻射圧を用いた血液成分連続分離の試み。-超音波による赤血球の濃縮とその損傷の検討- 信学技報 . 1996; US 96 (71): 7-14.

  1. 安田賢二、梅村晋一郎、武田一男 : 超音波輻射圧による微粒子連続濃縮 超音波テクノ . 1995.12; 53-56.

このページの先頭へ▲