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Email: a-amano(at)fc.ritsumei.ac.jp
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Shaocong Ou, Zhongyang Xiao, Keika Oyama, Masaaki Furukawa, Yuttamol Muangkram, Yukiko Himeno & Akira Amano
The Effects of Voltage Dependence and Ion-binding Reaction Rates on a Thermodynamically Constrained Mathematical Model of the Na/Ca Exchanger
Scientific Reports, 15, 21122, 10.1038/s41598-025-07881-y, 2025.
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Shaocong Ou, Kouta Hori, Yuttamol Muangkram, Yukiko Himeno, Shuji Tachibanaki, Akira Amano
Analysis of the Relationship Between Rod Cell Membrane Currents and the Photoreceptor Component of Electroretinograms Using a Cable Model
Scientific Reports, 15, 11211, DOI 10.1038/s41598-025-95998-5, 2025.
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Kunichika Tsumoto, Takao Shimamoto, Yuma Aoji, Yukiko Himeno, Yu-hichi Kuda, Mamoru Tanida, Akira Amano, Yasutaka Kurata
Chained occurrences of early afterdepolarizations may create a directional triggered activity to initiate reentrant ventricular tachyarrhythmias
Computer Methods and Programs in Biomedicine, Vol 261, p.108587, DOI 10.1016/j.cmpb.2025.108587, 2025.
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Yixin Zhang, Futoshi Toyoda, Yukiko Himeno, Akinori Noma, Akira Amano
Cell-specific models of hiPSC-CMs developed by the gradient-based parameter optimization method fitting two different action potential waveforms
Scientific Reports, 14, 13086, DOI 10.1038/s41598-024-63413-0, 2024.
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Å·Ì
ºÙ˦¥ì¥Ù¥ë¤Î¸¦µæ¤È¡´ï¤Îµ¡Ç½¤ò¤Ä¤Ê¤°¿ôÍý¥â¥Ç¥ë
½Û´ÄÀ©¸æ, 45´¬, 1¹æ, pp. 7-9, 2024.
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Shiro KATO, Yukiko HIMENO, Akira AMANO
Mathematical Analysis of Left Ventricular Elastance with respect to Afterload Change During Ejection Phase
PLoS Comput. Biol., 20(4): e1011974, 2024.
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Yukiko Himeno, Yixin Zhang, Suzuka Enomoto, Hiroto Nomura, Natsuki Yamamoto, Shotaro Kiyokawa, Mirei Ujihara, Yuttamol Muangkram, Akinori Noma, Akira Amano
Ionic Mechanisms of Propagated Repolarization in a One-Dimensional Strand of Human Ventricular Myocyte Model
International Journal of Molecular Sciences, 2023, 24(20), 15378. DOI 10.3390/ijms242015378, 2023.
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Yuttamol Muangkram, Yukiko Himeno, Akira Amano
Clarifying the composition of the ATP consumption factors required for maintaining ion homeostasis in mouse rod photoreceptors
Scientific Reports, 13, 14161, DOI 10.1038/s41598-023-40663-y, 2023.
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Kunichika Tsumoto, Takao Shimamoto, Yuma Aoji, Yukiko Himeno, Yuhichi Kuda, Mamoru Tanida, Akira Amano, Yasutaka Kurata
Theoretical prediction of early afterdepolarization-evoked triggered activity formation initiating ventricular reentrant arrhythmias
Computer Methods and Programs in Biomedicine, Vol. 240, 2023, 107722.
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Yukari Takeda, Kazuma Sato, Yukari Hosoki, Shuji Tachibanaki, Chieko Koike, Akira Amano
Mathematical analysis of phototransduction reaction parameters in rods and cones
Scientific Reports, 12, 19529, DOI 10.1038/s41598-022-23069-0, 2022. 11.
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Hirohiko Kohjitani, Shigeya Koda, Yukiko Himeno, Takeru Makiyama, Yuta Yamamoto, Daisuke Yoshinaga, Yimin Wuriyanghai, Asami Kashiwa, Futoshi Toyoda, Yixin Zhang, Akira Amano, Akinori Noma, Takeshi Kimura
Gradient-based parameter optimization method to determine membrane ionic current composition in human induced pluripotent stem cell-derived cardiomyocytes
Scientific Reports, 12, 19110, DOI 10.1038/s41598-022-23398-0, 2022. 11.
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Tsumoto K, Ashihara T, Naito N, Shimamoto T, Amano A, Kurata Y, Kurachi Y.
Specific decreasing of Na+ channel expression on the lateral membrane of cardiomyocytes causes fatal arrhythmias in Brugada syndrome.
Scientific Reports, 2020 Nov 17;10(1):19964. doi: 10.1038/s41598-020-76681-3.
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Yuttamol Muangkram, Megumi Honda, Akira Amano, Yukiko Himeno, Akinori Noma
Exploring the role of fatigue-related metabolite activity during high-intensity
exercise using a simplified whole-body mathematical model
Informatics in Medicine Unlocked, Vol. 19, 100355, pp.1-9, 2020.
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Umehara S, Tan X, Okamoto Y, Ono K, Noma A, Amano A, Himeno Y.
Mechanisms Underlying Spontaneous Action Potential Generation Induced by Catecholamine in Pulmonary Vein Cardiomyocytes: A Simulation Study
International Journal of Molecular Science, 20(12), 2913, 2019.
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Nomura Y, Ikuta S, Yokota S, Mita J, Oikawa M, Matsushima H, Amano A, Shimonomura K, Seya Y, Koike C
Evaluation of critical flicker-fusion frequency measurement methods using a touchscreen-based visual temporal discrimination task in the behaving mouse.
Neuroscience Research, 148, 28-33, 2019.
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Yuttamol Muangkram, Akinori Noma, Akira Amano
A new myofilament contraction model with ATP consumption for ventricular cell model
The Journal of Physiological Sciences, 68(5), 541-554, 2018.
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Akitoshi Maeda, Yukiko Himeno, Masayuki Ikebuchi, Akinori Noma, Akira Amano
Regulation of the glucose supply from capillary to tissue examined by developing a capillary model
The Journal of Physiological Sciences, 68, 355-367, 2018.
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Muangkram Y, Wajjwalku W, Amano A, Sukmak M.
The novel primers for mammal species identification-based mitochondrial cytochrome b sequence: implication for reserved wild animals in Thailand and endangered mammal species in Southeast Asia.
Mitochondrial DNA, pp.1-11, 2016.
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Kosuke Taniguchi, Hiromasa Utaki, Daichi Yamamoto, Yukiko Himeno, Akira Amano
Mechanisms Underlying the Effects of Ventricular Activation Time on Hemodynamic Parameters: a Simulation Study
Advanced Biomedical Engineering, 5:94-104, 2016.
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Yuttamol Muangkram, Akira Amano, Worawidh Wajjwalku, Tanu Pinyopummintr, Nikorn Thongtip, Nongnid Kaolim, Manakorn Sukmak, Sumate Kamolnorranath, Boripat Siriaroonrat, Wanlaya Tipkantha, Umaporn Maikaew, Warisara Thomas, Kanda Polsrila, Kwanreaun Dongsaard, Saowaphang Sanannu, Anuwat Wattananorrasate
Genetic diversity of the captive Asian tapir population in Thailand, based on mitochondrial control region sequence data and the comparison of its nucleotide structure with Brazilian tapir
MITOCHONDRIAL DNA, pp.1-5, 2016.
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Yukiko Himeno, Masayuki Ikebuchi, Akitoshi Maeda, Akinori Noma, Akira Amano
Mechanisms underlying the volume regulation of the interstitial fluid by capillaries: a simulation study
Integrative Medicine Research, Vol. 5, 1, pp. 11-21, 2016.
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Hiromasa Utaki, Kosuke Taniguchi, Hiroya Konishi, Yukiko Himeno, Akira Amano
A Method for Determining Scale Parameters in a Hemodynamic model incorporating
Cardiac Cellular Contraction model
Advanced Biomedical Engineering, 5:32-42, 2016.
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Florencio Rusty Punzalan, Yoshitoshi Kunieda, Akira Amano
Program Code Generator for Cardiac Electrophysiology Simulation with Automatic PDE Boundary Condition Handling
PLoS ONE 10(9): e0136821. doi:10.1371/journal.pone.0136821, 2015.
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Å·Ìî ¹¸¡¤¥×¥ó¥¶¥é¥ó ¥Õ¥í¡¼¥ì¥ó¥·¥ª ¥é¥¹¥Æ¥£¡¤ÅèµÈ δÉס¤Ô¢»Þ µÁÉÒ
Ê£»¨¤Ê·×»»¥¹¥¡¼¥à¤òɬÍפȤ¹¤ë¿³¬ÁØÀ¸Âε¡Ç½¥â¥Ç¥ë¤Î¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥·¥¹¥Æ¥à
À¸Âΰ幩³Ø¡¤Vol.53, No. 3, pp.115-122, 2015.
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ɱÌîͧµª»Ò¡¤Å·Ì¡¤Ìî´Ö¾¼Åµ
¿´Â¡¥Ú¡¼¥¹¥á¡¼¥«¡¼ºÙ˦¤Î¥¤¥ª¥óµ¡½ø¤Ë¤Ä¤¤¤Æ
½Û´Ä´ïÀìÌç°å, 23/1, 9-17, Æî¹¾Æ², 2015/03.
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Takao Shimayoshi, Chae Young Cha, Akira Amano
Quantitative Decomposition of Dynamics of Mathematical Cell Models: Method and Application to Ventricular Myocyte Models
PLoS ONE 10(6): e0124970. doi:10.1371/journal.pone.0124970, 2015.
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Y. Himeno, K. Asakura, C. Y. Cha, H. Memida, T. Powell, A. Amano, A. Noma
A human ventricular myocyte model with refined representation of excitation-contraction coupling
Biophys. J., Vol. 109, 2, pp.415-427, 2015.
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Yuki Hasegawa, Takao Shimayoshi, Akira Amano, Tetsuya Matsuda
Application of the Kalman Filter for Faster Strong Coupling of Cardiovascular Simulations
IEEE Journal of Biomedical and Health Informatics, 20(4):1100-6, 2016.
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Komori Y, Amano A, Maehara K, Jin L, Narazaki M, Matsuda T.
A motion tracking method that applies a spread spectrum communication technique to tagging MR imaging.
Magn Reson Med Sci., 14(1):25-34, 2015.
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K. Asakura, C. Cha, H. Yamaoka, Y. Horikawa, H. Memida, T. Powell, A. Amano, A. Noma
EAD and DAD mechanisms analyzed by developing a new human ventricular cell model
Progress in Biophysics and Molecular Biology, 116(1):11-24, 2014.
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Å·Ì
°µÈ¿¼Í¥â¥Ç¥ë¤òƳÆþ¤·¤¿½Û´ÄưÂÖ¥â¥Ç¥ë
½Û´ÄÀ©¸æ¡¤Âè35´¬¡¤Âè2¹æ¡¤pp.84-88, 2014.
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ºÙÌڤ椫¤ê¡¤¾®ÃÓÀé·Ã»Ò¡¤ÃÝÅÄͲÃΤ¡¤Å·Ì
Û¸ÂΡ¦¿íÂλëºÙ˦¸÷±þÅúµ¡¹½½é´ü²áÄø¥â¥Ç¥ë¤Ë¤è¤ë»ëʪ¼Á¡¼¥È¥é¥ó¥¹¥Ç¥å¡¼¥·¥ó´Ö¥·¥°¥Ê¥ëÁýÉý¸½¾Ý¤ÎºÆ¸½
À¸Âΰ幩³Ø¡¤Vol. 52, No. 3, pp.145-155, 2014.
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ĹëÀîͺ´ð¡¤»°Åç½¼À²¡¤ÅèµÈδÉס¤Å·Ì¡¤¾¾ÅÄůÌé
´ÓÊÉÀÉԶѰìÀ¤¬¿´¥¨¥Í¥ë¥®¡¼¸úΨ¤ËÍ¿¤¨¤ë±Æ¶Á¤Ë´Ø¤¹¤ëÍýÏÀŪ²òÀÏ
À¸Âΰ幩³Ø, Vol. 52, No. 3, pp.129-135, 2014.
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Å·Ìî ¹¸
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ÆüËܥС¼¥Á¥ã¥ë¥ê¥¢¥ê¥Æ¥£³Ø²ñ»ï¡¤Âè18´¬¡¤3¹æ¡¤pp.20-23, 2013ǯ9·î¡¥
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ÅèµÈ¡¡Î´Éס¤µ×ÊÝÅÄ¡¡ÍªÂÀ¡¤Å·Ìî¡¡¹¸¡¤¾¾ÅÄ¡¡Å¯Ìé
¶É½ê»ÀÁǾÃÈñÎÌʬÉÛ²òÀϤΤ¿¤á¤Î¿´¶ÚÁÈ¿¥Èù¾®½Û´Ä¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥â¥Ç¥ë
À¸Âΰ幩³Ø¡¤Vol.51, No. 4, pp.248-253, 2013.
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¥×¥ó¥¶¥é¥ó ¥Õ¥í¥ì¥ó¥·¥ª ¥é¥¹¥Æ¥£¡¤»³²¼µÁÍÛ¡¤Àîü¿¿À®¡¤ÅèµÈδÉס¤·¬¸¶´²ÌÀ¡¤Ô¢»ÞµÁÉÒ¡¤Å·Ì
·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿PDE ²òË¡¥¹¥¡¼¥à¤Ë´ð¤Å¤¯Ê¬ÉÛÄê¿ô·ÏÀ¸Âε¡Ç½¥â¥Ç¥ë¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥³¡¼¥ÉÀ¸À®¥·¥¹¥Æ¥à
À¸Âΰ幩³Ø¡¤Vol. 50, No. 6, pp.666-674, 2013.
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Å·Ìî ¹¸
À¸Ì¿²Ê³Ø¤È°å³ØÌô³Ø¤ò¤Ä¤Ê¤°À¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤Î¸½¾õ¤ÈŸ˾
¥·¥¹¥Æ¥àÀ©¸æ¾ðÊ󳨲ñ»ï¡¤Vol. 56, No. 12, pp.604-609, 2012.
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Eun Bo Shim, Thomas Heldt, Akira Amano, and Kyehan Rhee
[Editorial] Computational Analysis of Cardiovascular Hemodynamics
Computational and Mathematical Methods in Medicine, Vol. 2012 (2012), Article ID 260396, doi:10.1155/2012/260396
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Florencio Rusty Punzalan, Yoshiharu Yamashita, Naoki Soejima, Masanari
Kawabata, Takao Shimayoshi, Hiroaki Kuwabara, Yoshitoshi Kunieda, and Akira Amano
A CellML Simulation Compiler and Code Generator Using ODE Solving Schemes
Source Code for Biology and Medicine, 7:11, 2012.
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»³²¼µÁÍÛ¡¤ÉûÅçľ¼ù¡¤Àîü¿¿À®¡¤¥×¥ó¥¶¥é¥ó¥Õ¥í¥ì¥ó¥·¥ª¥é¥¹¥Æ¥£¡¤ÅèµÈδÉס¤·¬¸¶´²ÌÀ¡¤Ô¢»ÞµÁÉÒ¡¤Å·Ì
·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿ODE ²òË¡¥¹¥¡¼¥à¤Ë´ð¤Å¤¯CellML ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥³¡¼¥ÉÀ¸À®¥·¥¹¥Æ¥à
À¸Âΰ幩³Ø, Vol.50, No.1, pp.68-77, 2012.
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²¦Íµ¥Ö¥ó, ÅèµÈδÉ×, Å·Ì, ¾¾ÅÄůÌé
¿´µ¡Ç½É¾²Á²Äǽ¤Ê¥Ò¥ÈÆý»ù½Û´ÄưÂÖ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥â¥Ç¥ë
ÅŻҾðÊóÄÌ¿®³Ø²ñÏÀʸ»ïD, Vol.J95-D,No.2,pp.331-338, Feb. 2012.
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Takeda Y, Amano A, Noma A, Nakamura Y, Fujimoto S, Inagaki N
Systems Analysis of GLP-1 Receptor Signaling in Pancreatic
{beta}-cells.
Am J Physiol Cell Physiol., 301(4):C792-803, 2011.
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Cha CY, Santos E, Amano A, Shimayoshi T, Noma A
Time-dependent changes in membrane excitability during glucose-induced
bursting activity in pancreatic {beta} cells.
J Gen Physiol. 2011 Jul;138(1):39-47
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ÅèµÈ δÉס¤Å·Ìî ¹¸¡¤¾¾ÅÄ Å¯Ìé
ºÙ˦¥â¥Ç¥ë¤ÎÈùʬÂå¿ôÊýÄø¼°¤ËÂФ¹¤ë²Ä²ò¤Ê·×»»¾ò·ï¤Î¸úΨŪÀßÄê¼êË¡
¾ðÊó½èÍý³Ø²ñÏÀʸ»ï¡¤Vol.52, No.8, 2412-2421, 2011.
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Himeno Y, Toyoda F, Satoh H, Amano A, Cha CY, Matsuura H, Noma A.
Minor contribution of cytosolic Ca2+ transients to the pacemaker rhythm
in guinea pig sinoatrial node cells.
Am J Physiol Heart Circ Physiol. 2011 Jan;300(1):H251-61. Epub 2010 Oct 15.
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Yu Shimizu, Akira Amano, Tetsuya Matsuda
Oblique 3D MRI Tags for the Estimation of True 3D Cardiac Motion Parameters
Int J Cardiovasc Imaging, 26(8):905-21, 2010 Dec.
-
Å·Ì¡¤ÉÚÅŬ»Ò¡¤¾¾²¬Ã£¡¤ÅèµÈδÉס¤Î¦·ò¶ä¡¤¾¾ÅÄůÌé
Äã»ÀÁǾõÂֺƸ½¤Î¤¿¤á¤Ë²òÅü·Ï¤òƳÆþ¤·¤¿¿´¶ÚºÙ˦¥â¥Ç¥ë¤Î¹½ÃÛ
ÅŻҾðÊóÄÌ¿®³Ø²ñÏÀʸ»ïD, Vol. J93-D, No. 3, pp.398-408, 2010.
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Chae Young Cha, Yukiko Himeno, Takao Shimayoshi, Akira Amano, Akinori Noma
A Novel Method to Quantify Contribution of Channels and Transporters to Membrane Potential Dynamics
Biophysical Journal, Vol.97, pp.3086-3094, 2009.
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Natalie S. Schneider, Akira Amano
Simulation Analysis of Cardiac Muscle Isotonic Contractions at Different Pre- and Afterloads
The Open Physiology Journal, Vol. 2, pp.18-37 (20), 2009.
-
Å·Ì
ÆÃ½¸/À¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¡¤¸½ºß¤È¤³¤ì¤«¤é ¡Ý½øÊ¸¡Ý
Medical Imaging Technology, Vol. 26, No. 2, pp.85-86, 2008.
- Å·Ì¡¤¿®½©Íµ¡¤ÅèµÈδÉס¤Î¦·ò¶ä¡¤¥·¥à¥¨¥ó¥Ü¡¤¾¾ÅÄůÌé
¿´¶ÚºÙ˦¦Â»É·ã·Ï¥â¥Ç¥ë¤òƳÆþ¤·¤¿¥Ò¥ÈÆý»ù½Û´ÄưÂÖ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥·¥¹¥Æ¥à¤Î¹½ÃÛ
ÅŻҾðÊóÄÌ¿®³Ø²ñÏÀʸ»ï, Vol. J91-D, No. 8, pp.2177-2187, 2008.
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ÅèµÈδÉ×, Å·Ì, ¾¾ÅÄůÌé
µ½Ò¸À¸ì¤òÍѤ¤¤¿ºÙ˦À¸Íý³Ø¼Â¸³¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¼êË¡
À¸Âΰ幩³Ø, Vol. 46, No. 1, pp.77-84, 2008.
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¹âÅÄ ¹¯¹°¡¤Å·Ìî ¹¸¡¤Á× ¿Îß塤Φ¡¡·ú¶ä¡¤ÅèµÈ¡¡Î´Éס¤ÀÐÀî¡¡³Ð»Ö¡¤¾®»û¡¡½¨½Ó¡¤¾¾ÅÄ Å¯Ìé
¶½Ê³ÅÁã»þ´Ö¤Îº¸¿´¼¼Êɱ¿Æ°¤ËÍ¿¤¨¤ë±Æ¶Á ---¥ê¥ó¥°·Á¾õº¸¿´¼¼¥â¥Ç¥ë¤Ë¤è¤ë¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¸¦µæ---
À¸Âΰ幩³Ø¡¤Vol. 46, No. 1, pp.85-92, 2008.
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Eun Bo Shim, Akira Amano, Takayuki Takahata, Takao Shimayoshi and Akinori Noma
The cross-bridge dynamics during ventricular contraction predicted by
coupling the cardiac cell model with the circulation model
Journal of Physiological Sciences, Vol. 57, No. 5, pp.275-285, 2007.
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Akira AMANO, Kenichi KANDA, Tsukasa SHIBAYAMA, Yuu KAMEI,
and Tetsuya MATSUDA
Model Generation Interface for Simulation of Left Ventricular Motion
Electronics and Communications in Japan, Part II, Vol 90, 12,
pp.87-98, 2007.
-
Å·Ì¡¤¾¾ÅÄůÌé
°åÎŤˤª¤±¤ë²òÀÏ¡¦Í½Â¬¥Ä¡¼¥ë¤È¤·¤Æ¤ÎºÙ˦¡¦À¸ÂÎ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó
¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¡¤Vol. 26, No. 3, pp.3-8, 2007.
-
ÅèµÈδÉ×, ËÙ¸¬ÂÀ, Φ·ú¶ä, Å·Ì, ¾¾ÅÄůÌé, Ìî´Ö¾¼Åµ
ºÙ˦¡¦À¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥¿¥×¥é¥Ã¥È¥Õ¥©¡¼¥àDynaBioS
Åŵ¤³Ø²ñÏÀʸ»ï C¡¤Vol. 127, No. 11, pp.1928-1936, 2007.
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¹âÅĹ¯¹°¡¤Î¦·ú¶ä¡¤ÅèµÈδÉס¤ÀÐÀî³Ð»Ö¡¤Å·Ì¡¤¾®»û½¨½Ó¡¤¾¾ÅÄůÌé
¼Â¿´Â¡¤Ë´ð¤Å¤¯·Á¾õµÚ¤Ó±ßÅû·Á¾õ¤òÍѤ¤¤¿º¸¿´¼¼ÇïÆ°¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤Ë¤ª¤±¤ë¼ý½ÌËö´ü±þÎÏʬÉÛ¤ÎÈæ³Ó
À¸Âΰ幩³Ø, Vol. 44, No. 4, pp. 613-620, 2007.
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Takao Shimayoshi, Kazuhiro Komurasaki, Akira Amano, Takeshi Iwashita, Tetsuya Matsuda, Masanori Kanazawa
A Method to Support Cell Physiological Modelling using Description Language and Ontology
¾ðÊó½èÍý³Ø²ñÏÀʸ»ï ¥Ð¥¤¥ª¾ðÊó³Ø, Vol. 47, No. SIG 17(TBIO 1), pp.83-92, 2006.
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µèÅÄÉðÈÏ¡¤Æ£¸¶ÂîÌð¡¤Å·Ì¡¤ÕªÍÊ÷¡¤ÄéÄêÈþ¡¤¾¾ÅÄůÌé
MR Elastography ¤Ë¤ª¤±¤ëÄê¾ï¤ª¤è¤ÓÈóÄê¾ï¿¶Æ°¤òÍѤ¤¤¿»£±ÆË¡¤Îɾ²Á
À¸Âΰ幩³Ø, 44(3), 445-453, 2006.
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Natalie S. Schneidera, Takao Shimayoshi, Akira Amano, and Tetsuya Matsuda
Mechanism of the Frank-Starling law - a simulation study with a novel
cardiac muscle contraction model that includes titin and troponin I
Journal of Molecular and Cellular Cardiology, Vol. 41, Issue 3,
pp.522-536, 2006.
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µèÅÄ ÉðÈÏ¡¤ÂçÌî ͧÏ¡¤Å·Ìî ¹¸¡¤Õª ÍÊ÷¡¤²¬ËÜ ½ß¡¤Åì ¹â»Ö¡¤Âíß·½¤¡¤Äé ÄêÈþ¡¤¾¾ÅÄ Å¯Ìé
ÃÆÀÇȤ¢¤Æ¤Ï¤áË¡¤Ë¤è¤ëMR Elastography¤«¤é¤ÎÇ´ÃÆÀÄê¿ô¤ÎƳ½Ð
¿®³ØÏÀ, Vol. J89-D, No. 10, pp.2348-2360, 2006.
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Akira Amano, Naoki Asada, Masayuki Mukunoki and Masahito Aoyama
Table Form Document Analysis based on the Document Sturcture Grammar
International Journal on Document Analysis and Recognition, Vol. 8, no. 2-3, pp.201-213, 2006.
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¿®½©¡¡Íµ¡¤À¾¡¡½Óʸ¡¤Å·Ìî¡¡¹¸¡¤°¤Éô¡¡ÂÙÇ·¡¤¾¾ÅÄ¡¡Å¯Ìé
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À¸Âΰ幩³Ø, 44(1): 163-169, 2006.
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Φ·ú¶ä¡¢À¾½Óʸ¡¢°²¸¶µ®»Ê¡¢¥·¥å¥Ê¥¤¥À¡¼¥Ê¥¿¥ê¡¼¡¢Å·Ìî¡¡¹¸¡¢¾¾ÅÄůÌé¡¢¾®»û½¨½Ó
¿´¼¼¶Ú¶½Ê³Åþã»þ´Ö¤ÎÁÈ¿¥¼ý½ÌÎϤؤαƶÁ¡§¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤Ë¤è¤ë²òÀÏ
À¸Âΰ幩³Ø, 44(1): 170-176, 2006.
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Å·Ì¡¤¿ÀÅÄ·ò°ì¡¤¼Æ»³»Ê¡¤ÉÓ°æÍª¡¤¾¾ÅÄůÌé
º¸¿´¼¼ÇïÆ°¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤Î¤¿¤á¤Î¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥â¥Ç¥ëÀ¸À®¥¤¥ó¥¿¥Õ¥§¡¼¥¹
¿®³ØÏÀ, Vol. J88-D-II, No.5, pp.943--953, 2005, 5.
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Å·Ì, ¾¾ÅÄůÌé, Ìî´Ö¾¼Åµ
ºÙ˦¡¦À¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥×¥í¥¸¥§¥¯¥È
¥Ò¥å¡¼¥Þ¥ó¥¤¥ó¥¿¥Õ¥§¡¼¥¹³Ø²ñ»ï, Vol.6, No.2, pp.39-44, 2004.
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¥·¥ß¥å¥ì¡¼¥·¥ç¥ó, Vol. 23, No. 1, pp.4-13, 2004.
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¾ðÊó½èÍý³Ø²ñÏÀʸ»ï, Vol. 40, No. 12, pp.4193--4200, 1999.
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Katsuhiko SAKAUE, Akira AMANO and Naokazu YOKOYA
Optimization Approaches in Computer Vision and Image Processing
IEICE TRANSACTION, VOL. E82-A, No. 3, pp.534-547, 1999.
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Masatoshi ARIKAWA, Shinji SHIMOJO, Akira AMANO, Kaori MAEDA, Reiji AIBARA, Kouji NISHIMURA and Kaduo HIRAKI, and Kazutoshi FUJIKAWA
Real-Time Spatial Data Management for Scalable Networked Augmented Virtual Spaces
IEICE TRANS. INF. and SYST., Vol. E82-D, No.1, pp.99-112, 1999.
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ÇÏ¾ì ²í»Ö, ÀõÅÄ ¾°µª, Å·Ìî ¹¸
Calibrated Computer Graphics ¤Ë¤è¤ë²èÁü¹çÀ®¤Î»î¤ß ---¥«¥á¥é¥¥ã¥ê¥Ö¥ì¡¼¥·¥ç¥ó¤Ë´ð¤Å¤¯Ç¤°Õ¥Õ¥©¡¼¥«¥¹²èÁü¤ÎÀ¸À®¤È¸¡¾Ú---
¾ðÊó½èÍý³Ø²ñÏÀʸ»ï, Vol. 39, No. 7, pp.2180-2188, 1998.
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¿®³ØÏÀ, vol. J80-D-II, No.6, pp.159-166, 1997.
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Å·Ìî ¹¸, ÈþÇ» Ƴɧ, ºä¸ý ²ÅÇ·, ÃÓÅÄ ¹îÉ×
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¿®³ØÏÀ, vol. J78--D--I, No. 12, pp. 1841--1848, 1995.
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Å·Ìî ¹¸, ºä¸ý ²ÅÇ·, ÈþÇ» Ƴɧ, ÃÓÅÄ ¹îÉ×
¥µ¥ó¥×¥ëÎØ³Ô¥â¥Ç¥ë¤òÍøÍѤ·¤¿ Snakes
¿®³ØÏÀ,vol. J76--D--II, no. 6, pp.1168--1176, 1993.
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Âè1ÊÔ Âè13¾Ï ¡ÖÎΰèʬ³ä¡×, ¥ª¡¼¥à¼Ò, 2010.11.
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Kiyoharu Aizawa et.al (editor), Akira Amano, et al.
Image Processing Technologies: Algorithms, Sensors, and Applications
296pages, Marcel Dekker, 2004. 4.
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¿·À¤Â幩³Ø¥·¥ê¡¼¥º ¥³¥ó¥Ô¥å¡¼¥¿¥Í¥Ã¥È¥ï¡¼¥¯
6¾Ï, pp.71-90, ¥ª¡¼¥à¼Ò, 2001. 1.
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±ÇÁü¾ðÊó¥á¥Ç¥£¥¢¥Ï¥ó¥É¥Ö¥Ã¥¯
670¥Ú¡¼¥¸, 3ÊÔ3¾Ï, ¥ª¡¼¥à¼Ò, 2000. 12.
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¥³¥ó¥Ô¥å¡¼¥¿¥Ó¥¸¥ç¥ó µ»½ÑɾÏÀ¤È¾ÍèŸ˾
268¥Ú¡¼¥¸, Âè11¾Ï, pp.166-176, ¿·µ»½Ñ¥³¥ß¥å¥Ë¥±¡¼¥·¥ç¥ó¥º(Åìµþ), 1998. 6.
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Âè117²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Y5-1, 2025.11.29, Âçºå°å²Ê»õ²ÊÂç³Ø, Âçºå.
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Ou Shaocong, ßÀî´°ìÍÛ, Muangkram Yuttamol, ɱÌîͧµª»Ò, Å·Ì
Âè117²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Y5-2, 2025.11.29, Âçºå°å²Ê»õ²ÊÂç³Ø, Âçºå.
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Âè117²ó¶áµ¦À¸Íý³ØÃÌÏòñ, O2-3, 2025.11.29, Âçºå°å²Ê»õ²ÊÂç³Ø, Âçºå.
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Ou Shaocong, ËÙ¹¯ÂÀ, Muangkram yuttamol, ɱÌîͧµª»Ò, µÌÌÚ½¤»Ö, Å·Ì
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à 2025, A-1, 2025.9.12., »³Íü¸©Î©¿Þ½ñ´Û
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À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à 2025, A-20, 2025.9.12., »³Íü¸©Î©¿Þ½ñ´Û
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Voltage Dependence and Kinetic Effects on Transient Currents in a Thermodynamically Constrained Mathematical Model of Na/Ca Exchanger
Shaocong Ou, Zhangyang Xiao, Keika Oyama, Masaaki Furukawa, Yuttamol Muangkram, Yukiko Himeno, Akira Amano
5th ISFMS, 2025.8.26., Kyoto
-
Exploring the role of simplified rod photoreceptor energy metabolism using a comprehensive mathematical model
Muangkram Yuttamol, Yukiko Himeno, Akira Amano
Âè64²óÀ¸Âΰ幩³Ø²ñÂç²ñ, P2-1, 2025.6.6., Ê¡°æ»Ô¥Õ¥§¥Ë¥Ã¥¯¥¹¥×¥é¥¶
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Ou Shaocong, ËÙ ¹¯ÂÀ, Muangkram Yuttamol, ɱÌî ͧµª»Ò, µÌÌÚ ½¤»Ö, Å·Ìî ¹¸
Âè64²óÀ¸Âΰ幩³Ø²ñÂç²ñ, P2-4, 2025.6.6., Ê¡°æ»Ô¥Õ¥§¥Ë¥Ã¥¯¥¹¥×¥é¥¶
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Modeling scotopic electroretinogram dynamics: Insights into rod and rod bipolar cell signal transduction and calcium regulation
Yuttamol Muangkram, Yukiko Himeno, Akira Amano
APPW2025, Âè102²óÆüËÜÀ¸Íý³Ø²ñ, 1P-092, 2025.3.17., ËëÄ¥¥á¥Ã¥», ÀéÍÕ.
-
Effect of Charge Movement in the Ion Binding Processes of the Na/Ca Exchanger Current Voltage Dependency
Shaocong Ou, Xiao Zhongyang, Â绳 ·Ì²Ö, ¸ÅÀî ²íϯ, Muangkram Yuttamol, ɱÌî ͧµª»Ò, Å·Ìî ¹¸
APPW2025, Âè102²óÆüËÜÀ¸Íý³Ø²ñ, 1P-199, 2025.3.17., ËëÄ¥¥á¥Ã¥», ÀéÍÕ.
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Enhanced ATP consumption during tetanic contraction and homeostatic mechanisms of the cellular energy metabolism in ventricular myocytes: A simulation study
ɱÌî ͧµª»Ò, ÃÝÆâ °½»Ò, ËÅÄ ÂÀ, Ä¥ ·Ý³¾, Ìî´Ö ¾¼Åµ, Å·Ìî ¹¸
APPW2025, Âè102²óÆüËÜÀ¸Íý³Ø²ñ, 3P-284, 2025.3.17., ËëÄ¥¥á¥Ã¥», ÀéÍÕ.
-
Characterizing scotopic electroretinograms: Analyzing interactions between rods and rod bipolar cells and their implications for retinal signal transduction
Muangkram Yuttamol, Himeno Yukiko, Amano Akira
Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Q3-2, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
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Reconstructing Transretinal Extracellular Currents Using a 1D Cable Mathematical Model of Rods
Shaocong Ou, Kouta Hori, Yuttamol Muangkram, Yukiko Himeno, Akira Amano
Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Y3-5, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
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Ìî´Ö¾¼Åµ, ɱÌîͧµª»Ò, ËÅÄÂÀ, Zhang Yixin, ÃÝÆâ°½»Ò, Å·Ì
Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Q4-3, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
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ɱÌîͧµª»Ò, ËÅÄÂÀ, Zhang Yixin, ÃÝÆâ°½»Ò, Ìî´Ö¾¼Åµ, Å·Ì
Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Q4-2, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
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Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Q4-1, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
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Ou Shaocong, Xiao Zhongyang, Â绳·Ì²Ö, ¸ÅÀî²íϯ, Muangkram Yuttamol, ɱÌîͧµª»Ò, Å·Ì
Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Y3-4, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
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Âè116²ó¶áµ¦À¸Íý³ØÃÌÏòñ, Y3-2, 2024.11.23, Âçºå»õ²ÊÂç³Ø, Âçºå.
-
Quantitative analysis of scotopic electroretinography: Advanced modeling of rod photoreceptor to rod bipolar cell signal transduction
Yuttamol Muangkram, Yukiko, Himeno, Akira Amano
»ë³Ð²Ê³Ø¥Õ¥©¡¼¥é¥à2024, 2024.11.2, ÃÞÇÈÂç³Ø, ÃÞÇÈ.
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OU Shaocong, Xiao Zhongyang, Â绳·Ì²Ö, ¸ÅÀî²íϯ, Muangkram Yuttamol, ɱÌîͧµª»Ò, Å·Ì
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à2024, A-01, 2024.9.12., Åìµþ
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OU SHAOCONG, XIAO ZHONGYANG, Â绳·Ì²Ö, ¸ÅÀî²íϯ, Muangkram Yuttamol, ɱÌîͧµª»Ò, Å·Ì
Âè18²ó¥È¥é¥ó¥¹¥Ý¡¼¥¿¡¼¸¦µæ²ñ, P18, 2024.6.1, ÀŲ¬¸©Î©Âç³Ø, ÀŲ¬.
-
Elucidating the role of three energy production pathways in photoreceptors: anaerobic glycolysis, aerobic glycolysis and fatty acid oxidation
Yuttamol Muangkram, Yukiko Himeno, Akira Amano
Âè63²óÀ¸Âΰ幩³Ø²ñÂç²ñ, P1-15, 2024.5.24.
-
Propagation of Repolarization in Human Ventricle Revealed in a One-dimensional Strand of Cardiomyocyte Model
Yukiko Himeno, Yixin Zhang, Hiroto Nomura, Yuttamol Muangkram, Akinori Noma and Akira Amano
À¸Íý³Ø²ñÂç²ñ, 2023.3.28.
-
A comparative analysis of the electrophysiological characteristics in bipolar cells across vertebrate species using a mathematical model
Yuttamol Muangkram1, Yukiko Himeno, Akira Amano
À¸Íý³Ø²ñÂç²ñ, 2023.3.28.
-
Reconstruction of Transretinal Extracellular Current by using Mathematical Model of Rod 1D Cable
OU Shaocong, Kohta Hori, Muangkram Yuttamol, Yukiko Himeno, Akira Amano
À¸Íý³Ø²ñÂç²ñ, 2023.3.28.
-
Development of parameter optimization method to predict composition of ionic channel currents of cardiomyocyte with selective channel-blockade
Yixin Zhang, Yukiko Himeno, Futoshi Toyoda, Hirohiko Kohjitani, Akinori Noma, Akira Amano
FAOPS 2023. 2023.11.1-4., Daegu, Korea.
-
Propagation of repolarization in human ventricle revealed in a ohe-dimensional array of cardiomyocyte model
Yukiko Himeno, Suzuka Enomoto, Hiroto Nomura, Yixin Zhang, Yuttamol Muangkram, Akinori Noma, Akira Amano
FAOPS 2023. P3-12, 2023.11.1-4., Daegu, Korea.
-
Photoreceptor ion flux profiles and ion homeostasis in a comprehensive mathematical model
Yuttamol Muangkram, Yukiko Himemo, Akira Amano
FAOPS 2023. P11-2, 2023.11.1-4., Daegu, Korea.
-
Analysis of the Relationship Between Rod Membrane Currents and the Photoreceptor Components of Electroretinograms Using a Cable Model
Ou Shaocong, Hori Kohta, Himeno Yukiko, Amano Akira
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à2023, A-01, 2023.9.8, ·§ËÜ
-
Quantifying the energy demand and supply in photoreceptor using a comprehensive mathematical model
Yuttamol Muangkram, Yukiko Himneo, Chieko Koike, Akira Amano
EMBC Conference 2023, 04.01, 2023.7.27., Sydney
-
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Å·Ìî ¹¸
Âè44²óÆüËܽ۴ÄÀ©¸æ°å³Ø²ñ³Ø½Ñ½¸²ñ, SY2-2, 2023.7.1, ¥¢¡¼¥È¥Û¥Æ¥ë¹°Á°¥·¥Æ¥£.
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A significant decline in evergy expenditure due to increased light intensities maintaining ion homeostasis in rod photoreceptor
Yuttamol Muangkram, Yukiko Himeno, Akira Amano
Âè62²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤P1-12, 2023.5.19.
-
Na/Ca ¸ò´¹ÂÎ(NCX)¿ôÍý¥â¥Ç¥ë¤Ë¤ª¤±¤ë¥¤¥ª¥ó·ë¹ç²òÎ¥¥×¥í¥»¥¹¤ÎÅṴ̋͸À¤ª¤è¤ÓÈ¿±þ®ÅÙÄê¿ô¤Ë´Ø¤¹¤ëÇ®ÎϳØÅªÀ©Ìó¤Î¸¡Æ¤
Ou Shaocong, Xiao Zhangyang, Â绳·Ì²Ö, ¸ÅÀî²íϺ, Muangkram Yuttamol, ɱÌîͧµª»Ò, Å·Ì
Âè62²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤P1-30, 2023.5.19.
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߷¼¾ÂÀ, ɱÌîͧµª»Ò, Â뱩¾ô¸², Å·Ì
Âè62²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤P2-30, 2023.5.20.
-
A mathematical model calculating transport of solutes and water at an epithelial cell membrane and tight junction in renal proximal tubule
Yuto Kunimasa, Yukiko Himeno, Taiki Tahara, Taiki Nishizuka, Junichi Taniguchi, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂè100²óµÇ°Âç²ñ, 2LBA-013, 2023.3.15, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
Ionic mechanisms of repolarization of action potentials studied in a one-dimensional array composed of human-ventricular cell models
Suzuka Enomoto, Yukiko Himeno, Hara Ryosuke, Hiroto Nomura, Akinori Noma, Amano Akira
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 3P-150, 2023.3.16, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
Estimation of time course of drug action by PK/PD model using a mathematical model of guinea pig ventricular myocyte implemented with IKr inhibition by E-4031
Azumi Sagehashi, Yuna Nakanishi, Hiroto Nomura, Yukiko Himeno, Akira
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 3P-222, 2023.3.16, µþÅÔ¹ñºÝ²ñµÄ¾ì
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Application of the parameter optimization method to theselective
IKr-block induced by E-4031 in the human inducedpluripotent stem cell-derived cardiomyocytes (hiPSC-CMs)
Yukiko Himeno, Yixin Zhang, Futoshi Toyoda, Hirohiko Kohjitani, Akinori Noma, Amano Akira
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 3P-153, 2023.3.16, µþÅÔ¹ñºÝ²ñµÄ¾ì
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ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 3P-167, 2023.3.16, µþÅÔ¹ñºÝ²ñµÄ¾ì
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ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 2P-157, 2023.3.15, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
Analysis of Mechanism which determines Ca2+ Ion Concentration Equilibrium in Ventricular Myocyte Mathematical Model
Ryosuke Hara, Koki Koyama, Yukiko Himeno, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 2P-146, 2023.3.15, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
Effect of Voltage-dependence and Reaction Rate of Ion Binding Process of Mathematical Model of Na/Ca Exchanger (NCX) Considering Thermodynamics Constraints
OU Shaocong, Keika Oyama, Masaaki Furukawa, Yuttamol Muangkram, Yukiko Himeno, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 2P-158, 2023.3.15, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
Development of a state transition model to reproduce the inhibitory effect of E-4031 on hERG channels
Yuna Nakanishi, Azumi Sagehashi, Hiroto Nomura, Yukiko Himeno, Futoshi Toyoda, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 3P-156, 2023.3.16, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
A mathematical model for explaining an impact of genetic mutations on ionic currents of photoreceptor
Yuttamol Muangkram, Saya Ito, Yukiko Himeno, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 1P-075, 2023.3.14, µþÅÔ¹ñºÝ²ñµÄ¾ì
-
Development of a parameter optimization method to determine ionic current composition of a cardiomyocyte model
Yixin Zhang, Yukiko Himeno, Futoshi Toyoda, Hirohiko Kohjitani, Akinori Noma and Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂ裱£°£°²óÁ´¹ñÂç²ñ, 1LBA-017, 2023.3.14, µþÅÔ¹ñºÝ²ñµÄ¾ì
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Inhibition of transient outward K+ current: potential prevention of reentrant arrhythmia developments in long QT syndromes
Kunichika Tsumoto, Takao Shimamoto, Yuma Aoji, Yuichi Kuda, Mamoru Tanida, Yukiko Himeno, Akira Amano, Yasutaka Kurata
Âè96²óÆüËÜÌôÍý³Ø²ñǯ²ñ, 2022.12.2., ¿ÀÆàÀ¥Ñ¥·¥Õ¥£¥³²£ÉÍ
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IKrÁ˳²ºîÍѤòƳÆþ¤·¤¿¥â¥ë¥â¥Ã¥È¿´¼¼¶ÚºÙ˦¿ôÍý¥â¥Ç¥ë¤òÍѤ¤¤¿PK/PD¥â¥Ç¥ë¹½Ãۤˤè¤ëÌôʪºîÍѤλþ´Ö·Ð²á¤Î¿äÄê
º´²¼¶¶°É¼Â¡¢ÃæÀ¾Í¥Æà¡¢Ìî¼͵ÅÍ¡¢É±Ìîͧµª»Ò¡¢Å·Ì
Âè114²ó¶áµ¦À¸Íý³ØÃÌÏòñ, ¼ã¼ê1-2, 2022.11.26., ¼¢²ì°å²ÊÂç³Ø.
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±¿Æ°»þ¤Î¹ü³Ê¶Ú¤Ë¤ª¤±¤ë¥Ø¥¥½¥¥Ê¡¼¥¼¥Õ¥é¥Ã¥¯¥¹Áý²Ã¤ËɬÍפʰÂÀÅ»þ¤ª¤è¤Ó±¿Æ°»þºÙ˦Æâ¥°¥ë¥³¡¼¥¹Ç»Å٤οäÄê
¾®ÎÓÀ鲯¡¢É±Ìîͧµª»Ò¡¢Å·Ì
Âè114²ó¶áµ¦À¸Íý³ØÃÌÏòñ, ¼ã¼ê2-3, 2022.11.26., ¼¢²ì°å²ÊÂç³Ø.
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Âè114²ó¶áµ¦À¸Íý³ØÃÌÏòñ, ¼ã¼ê3-2, 2022.11.26., ¼¢²ì°å²ÊÂç³Ø.
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¿´¼¼¶ÚºÙ˦¥â¥Ç¥ë¤Ë¤ª¤±¤ëºÙ˦ÆâCa2+¥¤¥ª¥óÊ¿¹ÕÇ»ÅÙ·èÄê¥á¥«¥Ë¥º¥à¤Î²òÀÏ
¸¶Î¼²ð¡¢¾®»³Þæµ®¡¢É±Ìîͧµª»Ò¡¢Å·Ì
Âè114²ó¶áµ¦À¸Íý³ØÃÌÏòñ, ¼ã¼ê4-1, 2022.11.26., ¼¢²ì°å²ÊÂç³Ø.
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¿´¶ÚºÙ˦¥â¥Ç¥ë¤Î¥¤¥ª¥óÅÅήÁÈÀ®¤ò·èÄꤹ¤ë¥Ñ¥é¥á¡¼¥¿¡¼ºÇŬ²½Ë¡¤Î³«È¯
Ä¥ ·Ý³¾¡¢É±Ìî ͧµª»Ò¡¢ËÅÄ ÂÀ¡¢Ìî´Ö ¾¼Åµ¡¢Å·Ìî ¹¸
Âè114²ó¶áµ¦À¸Íý³ØÃÌÏòñ, ¼ã¼ê5-3, 2022.11.26., ¼¢²ì°å²ÊÂç³Ø.
-
Pathophysiological changes in electrophysiological properties due to mutations in ionic current-encoding genes of photoreceptor: A mathematical model
¥à¥¬¥ó¥°¥é¥à ¥æ¥Ã¥¿¥â¥ë¡¢°ËÆ£ ¤µ¤ä¡¢É±Ìî ͧµª»Ò¡¢Å·Ìî ¹¸
Âè114²ó¶áµ¦À¸Íý³ØÃÌÏòñ, °ìÈÌ2-11, 2022.11.26., ¼¢²ì°å²ÊÂç³Ø.
-
¿´¼¼¶ÚºÙ˦°ì¼¡¸µÇÛÎó¥â¥Ç¥ë¤òÍѤ¤¤¿ºÆÊ¬¶ËÅÁÇŤβÄǽÀ¤Ë´Ø¤¹¤ë¸¡Æ¤
ɱÌîͧµª»Ò¡¤±ÝËÜÎè²Â¡¤¸¶Î¼²ð¡¤Ìî´Ö¾¼Åµ¡¤Å·Ì
À¸Íý¸¦¸¦µæ²ñ¡ÊÈæ³ÓÅý¹çÀ¸Íý³ØÅª´ÑÅÀ¤«¤é¤Î½Û´ÄÀ¸Íý¤Î²òÀϡˡ¤2022.10.14¡¤Ä¹Ì¿®½£Âç³Ø
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Analysis Method of Equilibrium Ion Concentration Detetermination Mechanism for Mathematical Cardiac Cell Model
Ryosuke Hara, Koki Koyama, Tomoki Kawashima, Shin Inada, Kazuo Nakazawa, Takashi Ashihara, Yukiko Himeno, Akira Amano
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à2022, 1P-20, 2022.9.9, ´ØÀ¾³Ø±¡Âç³Ø, Âçºå
-
Electrophysiological Characteristics of Light Responses in Mammalian Photoreceptor: A Mathematical Model
Yuttamol Muangkram, Saya Ito, Yukiko Himeno, Akira Amano
SICE LE symposium 2022, 3A2-2, 2022.8.26., ¼Ç±º¹©¶ÈÂç³Ø, Åìµþ
-
¿´¼¼¶ÚºÙ˦¿ôÍý¥â¥Ç¥ë¤Ë¤ª¤±¤ëºÙ˦Æâ¥¤¥ª¥óÇ»ÅÙÊ¿¹ÕÅÀ·èÄê¥á¥«¥Ë¥º¥à
¸¶Î¼²ð, ¾®»³Þæµ®, ɱÌîͧµª»Ò, Å·Ì
Âè61²óÆüËÜÀ¸Âΰ幩³Ø²ñÂç²ñ, P2-18, 2022.6.29., ¼ëºí¥á¥Ã¥», ¿·³ã
-
Electrophysiological Characteristics of Photoreceptor Response to Light: A Mathematical Model
Yuttamol Muangkram, Junpei Takita, Yukiko Himeno, Akira Amano
Âè61²óÆüËÜÀ¸Âΰ幩³Ø²ñÂç²ñ, P1-29, 2022.6.28., ¼ëºí¥á¥Ã¥», ¿·³ã
-
Mechanism which determines Ion Concentration Equilibrium of Ventricular Myocyte Mathematical Model under various Cycle Length, Stimulation Current, INa block, and Action Potential Duration
Ryosuke Hara, Koki Koyama, Yukiko Himeno, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂè99²óÁ´¹ñÂç²ñ, 2P06-08, 2022.3.17., ÅìËÌÂç³Ø
-
A mathematical model of photoreceptor inner and outer segments estimating the ion transport activities with the Goldman-Hodgkin-Katz equation
Yuttamol Muangkram, Junpei Takita, Yukiko Himeno, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂè99²óÁ´¹ñÂç²ñ, 2P05-02, 2022.3.17., ÅìËÌÂç³Ø
-
¿´¶ÚºÙ˦³èưÅŰ̿ôÍý¥â¥Ç¥ë¤ò¼Â¸³ËìÅŰ̵Ͽ¤Ë¹ç¤ï¤»¤ë¼«Æ°¥Ñ¥é¥á¡¼¥¿ºÇŬ²½
Ìî´Ö¾¼Åµ¡¢É±Ìîͧµª»Ò¡¢äñëÂÙɧ¡¢ËÅÄÂÀ¡¢¹¬ÅÄÌÐÌ顢ŷÌ
Âè113²ó¶áµ¦À¸Íý³ØÃÌÏòñ, B-1, 2021.11.27., µþÅÔÉÜΩ°åÂç.
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E-4031¤Ë¤è¤ëhERG¥Á¥ã¥Í¥ëÁ˳²¸ú²Ì¤Î¿ôÍý¥â¥Ç¥ë²½
ÃæÀ¾Í¥Æà¡¢º´²¼¶¶°É¼Â¡¢º´Æ£Î¤Æà¡¢¾®ÎÓÀ鲯¡¢É±Ìîͧµª»Ò¡¢Å·Ì
Âè113²ó¶áµ¦À¸Íý³ØÃÌÏòñ, B-2, 2021.11.27., µþÅÔÉÜΩ°åÂç.
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¿´¼¼¶ÚºÙ˦¿ôÍý¥â¥Ç¥ë¤Ë¤ª¤±¤ë»É·ã¼þ´ü,»É·ã¶¯ÅÙ,Na¥Á¥ã¥Í¥ëÁ˳²Î¨,³èưÅŰ̻ý³»þ´Ö¤ËÂФ¹¤ëºÙ˦ÆâNa+Ç»ÅÙ·èÄê¥á¥«¥Ë¥º¥à
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Âè113²ó¶áµ¦À¸Íý³ØÃÌÏòñ, B-3, 2021.11.27., µþÅÔÉÜΩ°åÂç.
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ÇÙ¡Ý³èÆ°¶ÚÅý¹ç¥â¥Ç¥ë¤òÍѤ¤¤¿ÇÙµ¡Ç½¤È±¿Æ°»þ·ìÃæÊª¼ÁÇ»Å٤δط¸²òÀÏ
Å·Ìî ¹¸¡¤¥Ù¥ë¥Í¥Ã¥¬¡¼ ¥Ë¥³¥é¥¹¡¤Ê¡ÅÄ ÍΤ»Ò
·×¬¼«Æ°À©¸æ³Ø²ñ¥é¥¤¥Õ¥¨¥ó¥¸¥Ë¥¢¥ê¥ó¥°ÉôÌ祷¥ó¥Ý¥¸¥¦¥à2021¡¤2A2-1, 2021.9.4.
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º¸¿´¼¼¤ÎÅùÍÆ´ü¤Ë¤ª¤±¤ë¶ÚÀáĹÊѲ½¤¬½Û´ÄưÂÖ¤ËÍ¿¤¨¤ë±Æ¶Á
´ßÅÄ ¹·Â硤Õé¶á ÌÀ轡¤Å·Ìî ¹¸
Âè60²ó À¸Âΰ幩³Ø²ñÂç²ñ, O1-8-2-6, 2021.6.15.
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À¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥×¥í¥°¥é¥à¼«Æ°À¸À®¥·¥¹¥Æ¥à¤Ë¤ª¤±¤ë·×»»²Äǽ¤ÊÁ²²½¼°Åº»ú³ä¤êÅö¤Æ¥¢¥ë¥´¥ê¥º¥à
À¾Â¼ ÎËÂÀϺ, ²£°æ ²í»Ò, Ô¢»Þ µÁǯ, ¾å¸¶ ůÂÀϺ, Å·Ìî ¹¸
Âè60²ó À¸Âΰ幩³Ø²ñÂç²ñ¡¤O3-5-3-1, 2021.6.17.
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¥ä¥³¥Ó¹ÔÎó¤òÍѤ¤¤¿ºÙ˦¥â¥Ç¥ëµ¡Ç½Í×ÁÇ´ÖÁê¸ß´Ø·¸¤Î²Ä»ë²½
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Âè60²ó À¸Âΰ幩³Ø²ñÂç²ñ¡¤O3-5-3-2-, 2021.6.17.
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¥Ò¥È¿´¼¼¶ÚºÙ˦¥â¥Ç¥ë¤Ë¤ª¤±¤ëEAD¤ÎȯÀ¸¡¤»ý³¡¤ÅÁÇťᥫ¥Ë¥º¥à
±ÝËÜ Îè²Â, À¶Àî ¾ÍÂÀϺ, ɱÌî ͧµª»Ò, Ìî´Ö ¾¼Åµ, Å·Ìî ¹¸
Âè60²ó À¸Âΰ幩³Ø²ñÂç²ñ¡¤O3-5-3-3, 2021.6.17.
-
Development of a mathematical model that reproduces use-dependency of IKr channel inhibition
Tomohisa Kawakami, Yuna Nakanishi, Yukiko Himeno, Akira Amano
Âè98²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤2021.3.29.
-
·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿ºÙ˦¥â¥Ç¥ë¤Î¥ä¥³¥Ó¹ÔÎó¤òÍѤ¤¤¿¥Ñ¥é¥á¥¿´Ö¤ÎÁê¸ß´Ø·¸¤Î²òÀÏ
ȬÌÚÍ´ÂÀϺ¡¤Ô¢»ÞµÁǯ¡¤Å·Ì
Âè98²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤PP-456¡¤2021.3.29.
-
Cluster networks consisting of early afterdepolarization-evoked myocytes could cause reentrant arrhythmias in human ventricular tissue
ÅçËܵ®À¸¡¤ÄŸµ¹ñ¿Æ¡¤ÁÒÅĹ¯¹§¡¤Å·Ì
Âè98²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤2021.3.29.
-
Effect of Sarcomere Length Change During Isovolumic Relaxxation Phase on Hemodynacs
Kota Kishida, Akira Amano
Âè98²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤PP-309¡¤2021.3.29.
-
·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿ºÙ˦¥â¥Ç¥ë¤Î¥ä¥³¥Ó¹ÔÎó¤òÍѤ¤¤¿¥â¥Ç¥ë¥À¥¤¥Ê¥ß¥¯¥¹¤Î²Ä»ë²½
ȬÌÚ Í´ÂÀϯ, Ô¢»Þ µÁÉÒ, Å·Ìî ¹¸
À¸Âΰ幩³Ø²ñ Âç²ñ, PO-2-056, 2020.5.26, ²¬»³(»ï¾å³«ºÅ)
-
ÅùÍÆÀÃд˴ü¤Ë¤ª¤±¤ë¶ÚÀáĹÊѲ½¤¬½Û´ÄưÂÖ¤ËÍ¿¤¨¤ë±Æ¶Á
´ßÅÄ ¹·Âç, ²ÃÆ£ »íϯ, Õé¶á ÌÀè½, Å·Ìî ¹¸
À¸Âΰ幩³Ø²ñ Âç²ñ, PO-2-057, 2020.5.26, ²¬»³(»ï¾å³«ºÅ)
-
Mechanisms of Pathophysiology Underlying Arrhythmia Analyzed by Computer Simulations
Yukiko Himeno, Yosuke Okamoto, Hirohiko Kojitani, Kyoichi Ono, Akinori Noma, Akira Amano
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, PS06-04, 2020.3.17, »ï¾å³«ºÅ.
-
Molecular characterization of the arrhythmogenic trigger unique to pulmonary vein cardiomyocytes
Yosuke Okamoto, Yoshinobu Nagasawa, Aung Naing Ye, Yukiko Himeno,
Akinori Noma, Akira Amano, Daichi Takagi, Kuniaki Ishii, Kyoichi Ono
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, PS22-02, 2020.3.17, »ï¾å³«ºÅ.
-
Development of fatal arrhythmias mediating subcellular Na+ channel expression changes: in silico study
Kunichika Tsumoto, Takashi Ashihara, Narumi Naito, Takao Shimamoto,
Akira Amano, Yoshihisa Kurachi, Yuichi Kuda, Mamoru Tanida, Yasutaka Kurata
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, PS22-04, 2020.3.17, »ï¾å³«ºÅ.
-
Multi-layer Cardiac Pacemaker Mechanisms demonstrated in Human
Induced Pluripotent Stem Cells by Developing Mathematical Cell Models
Hirohiko Kohjitani, Shigeya Koda, Yukiko Himeno, Takeru Makiyama, Yuta Yamamoto, Yimin Wuriyanghai, Daisuke Yoshinaga, Asami Kashiwa, Akira Amano, Akinori Noma, Takeshi Kimura
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, O20-4, 2020.3.17, »ï¾å³«ºÅ.
-
Analysis on Combinations of Ion Channel Permeabilities of Guineapig
Ventricular Myocyte Model that Generate Similar Action Potential
Waveforms
Maho Yamamoto, Kazuki Okumura, Tomohisa Kawakami, Rina Sato, Yukiko Himeno,
Akira Amano
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, 1P-018, 2020.3.17, »ï¾å³«ºÅ.
-
Changes in Left Ventricular Elastance During Ejection Phase
--- Model Study ---
Shiro Kato, Kota Kishida, Akari Sanechika, Akira Amano
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, 1P-019, 2020.3.17, »ï¾å³«ºÅ.
-
Mathematical model to understand the exercise-induced skeletal
muscle fatigue during intense exercise
Yuttamol Muangkram, Akira Amano
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, 1P-063, 2020.3.17, »ï¾å³«ºÅ.
-
Quantitative analysis of epithelial transport in proximal tubule with mathematical model
Taiki Nishizuka, Junichi Taniguchi, Akinori Noma, Akira Amano, Yukiko Himeno, Taiki Tahara
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, 1P-079, 2020.3.17, »ï¾å³«ºÅ.
-
The cardiac cycle reconstructed using the human ventricular cell
(HuVEC) model
Sayaka Niwa, Akira Amano, Akinori Noma
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, 2P-032, 2020.3.17, »ï¾å³«ºÅ.
-
Coordinately early afterdepolarizations evoked in ventricular tissue trigger reentrant arrhythmias:in silico study
Takao Shimamoto, Kunichika Tsumoto, Yasutaka Kurata, Akira Amano
Âè97²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ, 3P-023, 2020.3.17, »ï¾å³«ºÅ.
-
¶á°ÌÇ¢ºÙ´É¤Ë¤ª¤±¤ëºÆµÛ¼ý¿ôÍý¥â¥Ç¥ë¤Î¹½ÃÛ
À¾ÄÍÂçµ®, ë¸ý½ß°ì, Ìî´Ö¾¼Åµ, Å·Ì, ɱÌîͧµª»Ò
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.11, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
Ç¢ºÙ´É¾åÈéºÙ˦¥â¥Ç¥ë³«È¯¤Ë¤è¤ëʪ¼ÁÍ¢Á÷¥á¥«¥Ë¥º¥à¤Î²òÀÏ
Åĸ¶ÂÀµ®, Ìî´Ö¾¼Åµ, Å·Ì, ɱÌîͧµª»Ò, ë¸ý½ß°ì
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.12, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
ñ°ì¿´¶ÚºÙ˦¥â¥Ç¥ë¤ò»È¤Ã¤¿¿´¼þ´ü¥â¥Ç¥ë¤Î³«È¯
𱩺̲Æ, Ìî´Ö¾¼Åµ, Å·Ì
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.20, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
¿´¶Ú¼ý½ÌÎϤÎÀ¸Íý³ØÅªÄ´Àᵡž¤Î¿ôÍý¥â¥Ç¥ë¹½ÃÛ
ÃæÀîÆØÇî, Ìî´Ö¾¼Åµ, Å·Ì, ɱÌîͧµª»Ò
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.21, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
¥Ò¥È¿´¼¼¶ÚºÙ˦¥â¥Ç¥ë¤ÇºÆ¸½¤·¤¿Ï¢Â³EADȯÀ¸¤È¤½¤Î¥¨¥Í¥ë¥®¡¼Âå¼Õ
À¶Àî¾ÍÂçϯ, »á¸¶ÈþÎè, Ìî´Ö¾¼Åµ, Å·Ì
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.24, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
º¸¿´¼¼¤Ë¤ª¤±¤ë¶î½Ð´üÅù»þ¹ï°µÍÆÀѸûÇÛ¤ÎÊѲ½
²ÃÆ£»íϯ, ´ßÅĹ·Âç, Å·Ì
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.25, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
À¸Íý³Ø¶µ°é¤Ø¤Î¡Èe-Heart¡É¶µºà¤Î³èÍÑ ¡ÁΩ̿´ÛÂç³Ø¤Ë¤ª¤±¤ë¼ÂÁ©¡Á
ɱÌîͧµª»Ò, Ìî´Ö¾¼Åµ, Å·Ì
Âè112²ó¶áµ¦À¸Íý³ØÃÌÏòñ, p.26, 2019.11.16., Ω̿´ÛÂç³ØBKC, ¼¢²ì.
-
Åù»þ¹ïº¸¿´¼¼°µÍÆÀÑ´Ø·¸¤ÎÀþ·ÁÀ¤Ë´Ø¤¹¤ë²òÀÏ
²ÃÆ£»íϺ¡¤´ßÅĹ·Â硤ŷÌ
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤2P-34¡¤2019.9.7., ÆÁÅçÂç³Ø¡¤ÆÁÅç¡¥
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·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿ºÙ˦¥â¥Ç¥ë¤ËÂФ¹¤ë¥ä¥³¥Ó¹ÔÎóÀ¸À®¤ÈÊ¿¹ÕÅÀ²òÀϤؤαþÍÑ
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À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤2P-39¡¤2019.9.7., ÆÁÅçÂç³Ø¡¤ÆÁÅç¡¥
-
A mathematical model and skeletal muscle fatigue
Yuttamol Muangkram, Akira Amano
Life Engineering 2019, pp.161-165, 2019.8.25., Bangkok Thai.
-
¥¯¥í¥¹¥Ö¥ê¥Ã¥¸²óž®ÅÙ¤¬ESPVR ¤ËÍ¿¤¨¤ë±Æ¶Á
´ßÅÄ¡¤²ÃÆ£¡¤Å·Ìî
SCI2019, 2019.5.22., Âçºå.
-
Effect of Myocyte Mechanical Properties on Transmural Distribution of Stress and Energy Consumption
Shiro Kato, Kumiko Tamura, Akira Amano
FAOPS 2019, 1P-050, 2019.3.29., ¿À¸Í¹ñºÝ²ñµÄ¾ì(¿À¸Í»Ô).
-
Drug Effect Estimation System that Uses Cardiac Action Potential Waveforms
Maho Yamamoto1 Kazuki Okumura2),ukiko Himeno2 Akira Amano
FAOPS 2019, 1P-052, 2019.3.29., ¿À¸Í¹ñºÝ²ñµÄ¾ì(¿À¸Í»Ô).
-
Evaluating the Role of Individual Types of Ca2+ Channels in the Sinoatrial Node Pacemaker Cell Model
Yixin Zhang1 Yukiko Himeno1 Futoshi Toyoda2 Akira Amano, Akinori Noma
FAOPS 2019, 1P-052, 2019.3.29., ¿À¸Í¹ñºÝ²ñµÄ¾ì(¿À¸Í»Ô).
-
Quantitative analysis of epithelial transport in proximal tubule with mathematical model
Taiki Nishizuka, Junichi Taniguchi, Akinori Noma1)Yukiko Himeno, Akira Amano
FAOPS 2019, 1P-407, 2019.3.29., ¿À¸Í¹ñºÝ²ñµÄ¾ì(¿À¸Í»Ô).
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Propagation of repolarization induced in a cell array of human ventricular cell models
Shotaro Kiyokawa, Natsuki Yamamoto, Akinori Noma, Akira Amano
FAOPS 2019, 2P-045, 2019.3.30, ¿À¸Í¹ñºÝ²ñµÄ¾ì(¿À¸Í»Ô).
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A Mathematical Model of Cardiac Cycle Driven by the Human Ventricular Cell Model
Sayaka Niwa, Yukiko Himeno, Akinori Noma, Akira Amano
FAOPS 2019, 2P-105, 2019.3.30, ¿À¸Í¹ñºÝ²ñµÄ¾ì(¿À¸Í»Ô).
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Noradrenaline-induced automaticity in pulmonary vein cardiomyocyte
Yukiko Himeno, Shohei Umehara, Kyoichi Ono, Akinori Noma, Akira Amano
Cardiac Physiome, 2017.11.6, Toronto (Canada)
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Biosimulation for integrative understanding of physiological functions of the body - a case study using a capillary model
Yukiko Himeno, Akitoshi Maeda, Masayuki Ikebuchi, Akira Amano, Akinori Noma
À¸Íý³Ø²ñÂç²ñ, AP-9, 2017.3.28. (¥¢¥¯¥È¥·¥Æ¥£É;¾¡¤ÀŲ¬)
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A new myofilament contraction model to calculate ATP consumption of the ventricular myocyte
Yuttamol Muangkram, Akinori Noma, Akira Amano
À¸Íý³Ø²ñÂç²ñ, 3P-099, 2017.3.30. (¥¢¥¯¥È¥·¥Æ¥£É;¾¡¤ÀŲ¬)
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Mathematical modeling and analysis of electrophysiological characteristics of the ventricular, atrial, and nodal-like hiPSC-CMs
Hirohiko Kohjitani, Shigeya Kouda, Yukiko Himeno, Natsuki Yamamoto, Takeru Makiyama, Takeshi Harita, Takeshi Kimura, Akinori Noma, Akira Amano
À¸Íý³Ø²ñÂç²ñ, 3P-019, 2017.3.30. (¥¢¥¯¥È¥·¥Æ¥£É;¾¡¤ÀŲ¬)
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The relationship between cardiac tissue structural changes and conduction velocity of the excitation propagation
Narumi Naito, Kunichika Tsumoto, Yoshihisa Kurachi, Akira Amano
À¸Íý³Ø²ñÂç²ñ, 2P-042, 2017.3.29. (¥¢¥¯¥È¥·¥Æ¥£É;¾¡¤ÀŲ¬)
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Human circulation model using a human ventricular myocyte model
Hiromasa Utaki, Yukiko Himeno, Akinori Noma, Akira Amano
À¸Íý³Ø²ñÂç²ñ, 2P-038, 2017.3.29. (¥¢¥¯¥È¥·¥Æ¥£É;¾¡¤ÀŲ¬)
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Simulation analysis of phototransduction systems in rods and cones
Kazuma Sato, Saya Ito, Yukari Hosoki, Yukari Takeda, Chieko Koike, Akira Amano
Biophysical Society 61st annual meeting, 2620-Pos, 2017.2.15. (New Orleans, USA)
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A Photoreceptor Model Considering Regulation of Ionic Homeostasis
Saya Ito, Kazuma Sato, Yukiko Himeno, Yukari Takeda, Akira Amano
Biophysical Society 61st annual meeting, 2619-Pos, 2017.2.15. (New Orleans, USA)
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Simulation of cardiac excitation propagation and the circulatory dynamics
Akira AMANO, Hiromasa UTAKI, Kosuke TANIGUCHI and Yukiko HIMENO
NOLTA 2016, pp.310 - 313, 2016.11.27. Yugawara (Kanagawa).
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Relation between Activation Time and Hemodynamics - Simulation Study with Hemodynamic Model Comprising Cardiac Tissue Model
Kosuke Taniguchi, Hiromasa Utaki, Daichi Yamamoto, Yukiko Himeno, Akira Amano
Cardiac Physiome Workshop, 2016.8.24. (Asan Medical Center, Seoul, Korea)
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Semi-automatic mapping of variables between biological function model and numerical calculation scheme
Taiki Tatara, Takeru Arita, Yoshitoshi Kunieda, Akira Amano
Cardiac Physiome Workshop, 2016.8.25. (Asan Medical Center, Seoul, Korea)
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Mathematical Analysis of NA-induced Automaticity of the Rat Pulmonary Vein Cardiomyocyte
Shohei Umehara, Yukiko Himeno, Kyoichi Ono, Akinori Noma, Akira Amano
Cardiac Physiome Workshop, 2016.8.24. (Asan Medical Center, Seoul, Korea)
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Ionic mechanismsunderlying ventricular fibrillation examined in an one-dimensional array of human ventricular myocyte model
Mirei Ujihara, Natsuki Yamamoto, Akinori Noma, Akira Amano
Cardiac Physiome Workshop, 2016.8.24. (Asan Medical Center, Seoul, Korea)
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The ionic mechanisms underlying the propagation of action potential and the extracellular potential changes analyzed in a one-dimensional cell array of human ventricular cell models
Yamamoto Natsuki, Matsumoto Tamami, Ujihara Mirei, Noma Akinori, Amano Akira
Cardiac Physiome Workshop, 2016.8.24. (Asan Medical Center, Seoul, Korea)
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A Huxley-based contraction model to reconstruct the accompanying ATP consumption in cardiac myocytes.
Yuttamol Muangkram, Kosuke Taniguchi, Akinori Noma, Akira Amano
Cardiac Physiome Workshop, 2016.8.24. (Asan Medical Center, Seoul, Korea)
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A Human Ventricular Excitation-Contraction Coupling Model
Yukiko, Himeno, Trevor Powell, Akira Amano, Akinori Noma
Cardiac Physiome Workshop, 2016.8.24. (Asan Medical Center, Seoul, Korea)
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Yuichiro Nomura, Jumpei Mita, Shingo Takizawa, Takuma Arimura, Shinichiro Suzuki, Shohei Ikuta, Akira Amano, Yasuhiro Tsubo, Kazuhiro Shimonomura, Yasuhiro Seya, Chieko Koike
Touchscreen-based visual temporal discrimination task in the behaving mouse by the constant method
ARVO 2016, 2016.5.2. (Seattle, USA).
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Âè55²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤3OS3-1-2, p.203, 2016.4.28, (ÉÙ»³¹ñºÝ²ñµÄ¾ì¡¤ÉÙ»³).
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Âè55²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤P3-D17, p.246, 2016.4.28, (ÉÙ»³¹ñºÝ²ñµÄ¾ì¡¤ÉÙ»³).
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Ìî¼ ͪ°ìϺ, »°ÅÄ ½ãÊ¿, ͼ ÂöËá, À¸ÅÄ ¾»Ê¿, Âíß· ¿¹ä, ÎëÌÚ¿µ°ìϺ¡¢ÄÚÂÙ¹¨¡¢Å·Ìî ¹¸, ²¼¥Î¼ Ϲ°¡¢À¥Ã« °Â¹°¡¢¾®ÃÓ Àé·Ã»Ò
¥ª¥Ú¥é¥ó¥È¥·¥¹¥Æ¥à¤òÍѤ¤¤¿¹±¾ïË¡¤Ë¤è¤ë¥Þ¥¦¥¹¸Â³¦¥Õ¥ê¥Ã¥«¡¼ÃÍ¤ÎÆ±Äê/The resolution of mouse flicker fusion threshold by constant method in the behaving mouse.
ÆüËÜÌô³Ø²ñÂè136ǯ²ñ¡¤27U-pm17S, 2015.3.27.(¥Ñ¥·¥Õ¥£¥³²£ÉÍ¡¤²£ÉÍ).
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Yamamoto Natsuki, Ujihara Mirei, Noma Akinori, Amano Akira
The ionic mechanism of electrocardiogram examined using a one-dimensional array of human ventricular cell model
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤AC-5, 2016.3.22., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Ujihara Mirei, Yamamoto Natsuki, Noma Akinori, Amano Akira
Ionic mechanisms underlying ventricular fibrillation examined in a one-dimensional array of human ventricular myocyte model
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤AC-6, 2016.3.22., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
-
Maekawa Saki, Watanabe Risa, Himeno Yukiko, Noma Akinori, Amano Akira
Measurement of cardiac action potential in anesthetized guinea pig for estimating drug action on ion channel conductance
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤AC-8, 2016.3.22., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Umehara Shohei, Himeno Yukiko, Ono Kyoichi, Noma Akinori, Amano Akira
NA-induced Automaticity of the Rat Pulmonary Vein Cardiomyocyte demonstrated in a Matehmatical Model
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤AC-11, 2016.3.22., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Maeda Akitoshi, Himeno Yukiko, Noma Akinori, Amano Akira
Developmento of a microcirculation model to calculate glucose supply to meet the cellular requirement
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤AC-15, 2016.3.22., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Muangkram Yuttamol, Taniguchi Kosuke, Noma Akinori, Amano Akira
ATP consumption by the cardiac muscle contraction implemented in a Huxley-based contraction model
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤AC-19, 2016.3.22., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Tsumoto Kunichika, Ashihara Takashi, Naito Narumi, Amano Akira, Nakazawa Kazuo, Kurachi Yoshihisa
A Mathematical Modeling of Phase-2 Reentry Attributable to Changes in Subcellular Expression of Nav1.5 Channel
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤2P-035, 2016.3.23., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Himeno Yukiko, Trevor Powell, Amano Akira, Noma Akinori
Development of a couplon model based on data from experimental and simulated Ca2+ sparks
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤3P-065, 2016.3.24., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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Noma Akinori, Himeno Yukiko, Trevor Powell, Amano Akira
A Teaching Material for Cardiac Physiology - systematic compilation of biophysical simulation models of cardiac cellular function (e-Heart project)
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤3P-066, 2016.3.24., »¥ËÚ¥³¥ó¥Ù¥ó¥·¥ç¥ó¥»¥ó¥¿¡¼¡¤Ë̳¤Æ».
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¾ðÊó½èÍý³Ø²ñ¥×¥í¥°¥é¥ß¥ó¥°¸¦µæ²ñ, 2016.1.13. (ARK¥Ó¥ë¡¤Ê¡²¬)
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Åŵ¤´Ø·¸³Ø²ñ´ØÀ¾»ÙÉôÂç²ñ¡¤G11-13¡¤2015.11.14. (ÀÝÆîÂç³Ø¡¤Âçºå)
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À¸Íý³Ø¸¦µæ½ê ¸¦µæ²ñ¡Ö¿´Â¡¡¦·ì´É·Ï¤ÎÊñ³çŪ¤Êµ¡Ç½Åý¹ç¸¦µæ¡×, p.8, 2015.10.30. (²¬ºê¡¤À¸Íý¸¦)
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¶áµ¦À¸ÍýÃÌÏòñ¡¤A-2, 2015.10.24. (¶áµ¦Âç³Ø)
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Á°ÅÄÍÛ½Ó, ɱÌîͧµª»Ò, Ìî´Ö¾¼Åµ, Å·Ì
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¶áµ¦À¸ÍýÃÌÏòñ¡¤A-5, 2015.10.24. (¶áµ¦Âç³Ø)
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¶áµ¦À¸ÍýÃÌÏòñ¡¤A-3, 2015.10.24. (¶áµ¦Âç³Ø)
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¶áµ¦À¸ÍýÃÌÏòñ¡¤A-4, 2015.10.24. (¶áµ¦Âç³Ø)
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The evaluation of visual temporal resolution in the behaving mouse
J. Mita, S. Yokota, S. Ikuta, S. Takizawa, Y. Nomura, T. Arimura, A. Amano, K. Shimonomura, Y. Seya, Y. Tsubo, C. Koike
SFN annual meeting 2015, 791.03/M46, 2015.10.15. (Chicago)
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À¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤Ë¤ª¤±¤ëPC¥¯¥é¥¹¥¿´Ä¶¤Ç¤Î·×»»·ë²Ì¼ý½¸¼êË¡
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À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤p.155, 2015.9.26. (²¬»³¡¤²¬»³¹ñºÝ¸òή¥»¥ó¥¿¡¼)
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Analysis of Relation between Cardiac Cellular Characteristics and Hemodynamics Parameters using Hemodynamics Model incorporating Cardiac Contraction Model
Hiromasa Utaki, Kosuke Taniguchi, Hiroya Konishi, Akira Amano
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤p.156, 2015.9.26. (²¬»³¡¤²¬»³¹ñºÝ¸òή¥»¥ó¥¿¡¼)
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Analysis of Glycolytic ATP Production Rate and the Rate Limiting Step under ischemic ATP/NAD concentration
Manami Fuchigami, Akira Amano
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤p.157, 2015.9.26. (²¬»³¡¤²¬»³¹ñºÝ¸òή¥»¥ó¥¿¡¼)
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The Influence of Activation Time on the Hemodynamic Parameters: a Simulation Study
Kosuke Taniguchi, Hiromasa Utaki, Daichi Yamamoto, Akira Amano
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤p.158, 2015.9.26. (²¬»³¡¤²¬»³¹ñºÝ¸òή¥»¥ó¥¿¡¼)
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¥â¥Ç¥ëÊÑ¿ô¤È¿ôÃÍ·×»»¥¹¥¡¼¥à¤È¤ÎȾ¼«Æ°ÂбþÉÕ¤±µ¡Ç½¤ò»ý¤ÄÀ¸Âε¡Ç½¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥Ä¡¼¥ë¡§ CellCompiler
ÍÅÄ·ò, ¿¡¹ÎÉÂÙ´ð, ¾®¸«»³ÈË, ÎëÌÚÍÎÊ¿, Ô¢»ÞµÁÉÒ, Å·Ì
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤p.159, 2015.9.26. (²¬»³¡¤²¬»³¹ñºÝ¸òή¥»¥ó¥¿¡¼)
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Reproducing Retinal Rod Bipolar Cell Ligth Response by Mathematical Model Including Neurotransmitter Receptors
Shingo Nishiyama, Yukari Hosoki, Chieko Koike, Akira Amano
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤P3-263, p.S287, 2015.3.23.
-
Manami Fuchigami, Akira Amano
Required ATP/NAD concentration for the constant ATP production by glycolysis
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤P2-369, p.S235, 2015.3.22.
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Mathematical model of Ca2+ induced Ca2+ release in ventricular myocyte
Yukiko Himeno, Keiichi Asakura, Cha Chae Young, Hiraku Memida, Trevor Powell, Akira Amano, Akinori Noma
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤P2-192, p.S205, 2015.3.22.
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Hiromasa Utaki, Hiroya Konishi, Kosuke Taniguchi,k Akira Amano
Relation between the Hemodynamic Macroscopic and the Microscopic Parameters; Model Study
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤P1-324, p.S165, 2015.3.21.
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Yohei Suzuki, Takeru Arita, Shigeru Komiyama, Punzalan Florencio Rusty, Takao Shimayoshi, Yoshitoshi Kunieda, Akira Amano
CellCompiler: Multiscale biological function model simulator which can use complex calculation schemes
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤P1-212, p.S147, 2015.3.21.
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Hiraku Memida, Yukiko Himeno, Keiichi Asakura, Akira Amano, Akinori Noma
A ventricular cell model refined on Ca2+-induced Ca2+-release
ÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤P1-190, p.S143, 2015.3.21.
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ÅŻҾðÊóÄÌ¿®³Ø²ñµ»½ÑÊó¹ð, MBE¸¦µæ²ñ, 2015.3.17.
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ÅŻҾðÊóÄÌ¿®³Ø²ñµ»½ÑÊó¹ð, MBE¸¦µæ²ñ, 2015.3.17.
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ÌÖËìÛ¸ÂΡ¦¿íÂλëºÙ˦¸÷ÅŰÌÊÑ´¹µ¡¹½¥â¥Ç¥ë¤ÎÄó°Æ
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 1A-26, 2014.9.26, ÅìµþÇÀ¹©Â硤Åìµþ.
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Manami Fuchigami, Akira Amano
Required ATP/NADH concentration for the constant ATP production by glycolysis
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 1A-27, 2014.9.26, ÅìµþÇÀ¹©Â硤Åìµþ.
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Shingo Nishiyama, Yukari Hosoki, Chieko Koike, Akira Amano
Reproducing Retinal Rod Bipolar Cell Light Response by Mathematical Model Including Neurotransmitter Receptors
IEEE EMB Conference, pp.6116-6119, 2014. 8. 29. (Chicago, USA)
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Takao Shimayoshi, Mitsuharu MISHIMA, Akira Amano, Tetsuya Matsuda
Nonlinear Multiscale Circulation Model Reproducable Linear End-Systolic Pressure-Volume Relationship
IEEE EMB Conference, pp.6778-6781, 2014. 8. 30. (Chicago, USA)
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»ë³Ð²Ê³Ø¥Õ¥©¡¼¥é¥à, Á°¶¶¹©²ÊÂç³Ø¡¤2014.8.18.
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»ë³Ð²Ê³Ø¥Õ¥©¡¼¥é¥à, Á°¶¶¹©²ÊÂç³Ø¡¤2014.8.18.
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»ë³Ð²Ê³Ø¥Õ¥©¡¼¥é¥à, Á°¶¶¹©²ÊÂç³Ø¡¤2014.8.19.
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Program Code Generation System for Multi-scale Biological Function Models that require Complex Coupling Calculation Schemes
Âè53²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤OS2-02-2¡¤2014.6.25, ÀçÂæ¡¤ÀçÂæ¹ñºÝ¥»¥ó¥¿¡¼¡¥
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Âè91²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤1P-062, 2014.3.16, ¼¯»ùÅçÂç³Ø.
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Âè91²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤2P-031, 2014.3.17, ¼¯»ùÅçÂç³Ø.
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Âè91²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤3P-002, 2014.3.18, ¼¯»ùÅçÂç³Ø.
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Âè91²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤2SL09F, 2014.3.17, ¼¯»ùÅçÂç³Ø.
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À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤2013.9.21., ¶å½£Âç³Ø
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À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤2013.9.21., ¶å½£Âç³Ø
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»ë³Ð²Ê³Ø¥Õ¥©¡¼¥é¥à¡¤2013.8.5, Ω̿´ÛÂç³Ø¡¥
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Yukari Hosoki, Chieko Koike, Yukari Takeda, Akira Amano
Reproduction of Transducin Timecourse of Rod and Cone Cells under
various Light Intensities
IUPS 2013, 2013.
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Takao Shimayoshi, Yukiko Himeno, Akira Amano, Tetsuya Matsuda, Akinori Noma
Computational Model of Cardiovascular Dynamics for Assessment of Cardiac Energetic Efficiency
IUPS 2013, 2013.
-
Florencio Rusty Punzalan, Yoshiharu Yamashita, Masanari Kawabata, Takao
Shimayoshi, Hiroaki Kuwabara, Yoshitoshi Kunieda, Akira Amano
Code Generator for Distributed Parameter Biological Model Simulation
with PDE Numerical Schemes
Proc. IEEE EMB Conference 2013, pp.1494-1497, 2013.7.4.
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Yuki Hasegawa, Mitsuharu MISHIMA, Takao Shimayoshi, Akira Amano,
Tetsuya Matsuda
A Study on the Relationship between Electrical Transmural
Heterogeneity and Ventricular Energetics
Proc. IEEE EMB Conference 2013, pp.6854-6857, 2013.7.7.
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Âè90²óÆüËÜÀ¸Íý³Ø²ñÂç²ñ¡¤2013.3.29, Åìµþ¡¥
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·Ä±þÂç³Ø e-Cell ¥ï¡¼¥¯¥·¥ç¥Ã¥×¡¤¾·ÂԹֱ顤2012.11. 26. (·Ä±þSFC).
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·Á¼°Åªµ½Ò¤µ¤ì¤¿ÁÈ¿¥¡¦Â¡´ï¥â¥Ç¥ë¤Î¤¿¤á¤ÎÈÆÍÑ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥·¥¹¥Æ¥à
¿´ÅžðÊó½èÍý¥ï¡¼¥¯¥·¥ç¥Ã¥×¡¤¾·ÂԹֱ顤2012.10. 28. (Ç®³¤).
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¥×¥ó¥¶¥é¥ó¥Õ¥í¥ì¥ó¥·¥ª¥é¥¹¥Æ¥£¡¤»³²¼µÁÍÛ¡¤Àîü¿¿À®¡¤ÅèµÈδÉס¤·¬¸¶´²ÌÀ¡¤Ô¢»ÞµÁÉÒ¡¤Å·Ì
·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿PDE²òË¡¥¹¥¡¼¥à¤Ë´ð¤Å¤¯Â¡´ï¥â¥Ç¥ë¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥³¡¼¥ÉÀ¸À®¥·¥¹¥Æ¥à
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 2012.9.7, ÂçºåÂç³Ø.
-
Akira Amano, Masanari Kawabata, Yoshiharu Yamashita, Florencio Rusty
Punzalan, Takao Shimayoshi, Hiroaki Kuwabara, Yoshitoshi Kunieda
A Program Code Generator for Multiphysics Biological Simulation
using Markup Languages
Proc. IEEE EMB Conference 2012, pp. 6624-6627, 2012.9.1, San Diego, USA.
-
Yuki Hasegawa, Takao Shimayoshi, Akira Amano, Tetsuya Matsuda
A Coupling Method for a Cardiovascular Simulation Model which includes
the Kalman Filter
Proc. IEEE EMB Conference 2012, pp. 1222-1225, 2012.8.30, San Diego, USA.
-
Å·Ìî ¹¸
¿³¬ÁØ¥â¥Ç¥ë¤È¤·¤Æ¤Î¿´Â¡ÇïÆ°¥·¥ß¥å¥ì¡¼¥·¥ç¥ó
Âè51²ó À¸Âΰ幩³Ø²ñÂç²ñ¡¤¥ª¡¼¥¬¥Ê¥¤¥º¥É¥»¥Ã¥·¥ç¥ó¡Ö¿´Â¡¤Î¿³¬ÁØÀ¸Âε¡Ç½
³Ø¤òÌܻؤ·¤¿À®²Ì¤È¿ÊŸ¡×¡¤OS2-05-2¡¤2012/5/11, Ê¡²¬¹ñºÝ²ñµÄ¾ì.
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ĹëÀîͺ´ð¡¤ÅèµÈδÉס¤Å·Ì¡¤¾¾ÅÄůÌé
Ï¢À®½Û´ÄưÂÖ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥â¥Ç¥ë¤Ë¤ª¤±¤ë¿ôÃÍË¡
Âè51²ó À¸Âΰ幩³Ø²ñÂç²ñ¡¤¥·¥ó¥Ý¥¸¥¦¥à¡ÖÀ¸Âθ½¾Ý¤Î¥Þ¥ë¥Á¥Õ¥£¥¸¥Ã¥¯¥¹¥Þ¥ë
¥Á¥¹¥±¡¼¥ë¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¡×¡¤SY3-01-3¡¤2012/5/12, Ê¡²¬¹ñºÝ²ñµÄ¾ì.
-
Akira Amano
Description Language of Calculation Scheme for Automatic Simulation Code Generation
CellML Workshop, 2012.3.13.
-
Masanari Kawabata, Yoshiharu Yamashita, Florencio Rusty Punzalan, Yoshitoshi Kunieda, Akira Amano
A Program Code Generator for Multiphysics Biological Simulation using Markup Languages
International Workshop on Innovative Architecture for Future Generation
High-Performance Processors and Systems 2012, 2012.1.10.
-
Yoshiharu Yamashita, Yuichiro Hayashi, Naoki Soejima, Masanari Kawabata,
Punzalan Florencio Rusty, Takao Shimayoshi, Hiroaki Kuwabara, Yoshitoshi Kunieda, Akira Amano
A Parallel CellML Simulation Program Generator with a Nonlinear Simultaneous Equation Solver
International Workshop on Innovative Architecture for Future Generation
High-Performance Processors and Systems 2012, 2012.
-
Florencio Rusty Punzalan, Masanari Kawabata, Akira Amano
A System for Generating Program Code for Multiscale and Multiphysics
Biological Simulation using Markup Languages
The 4th Osaka University Global COE International Symposium on Physiome
and Systems Biology for Integrated Life Sciences and Predective
Medicine, poster, 2011.
-
Yoshiharu Yamashita, Naoki Soejima, Masanari Kawabata,
Punzalan Florencio Rusty, Takao Shimayoshi, Hiroaki Kuwabara,
Yoshitoshi Kunieda, Akira Amano
A CellML Simulation Program Generator using ODE Solving Scheme Description
The 4th Osaka University Global COE International Symposium on Physiome
and Systems Biology for Integrated Life Sciences and Predective
Medicine, poster, 2011.
-
»³²¼µÁÍÛ¡¤ÉûÅçľ¼ù¡¤Àîü¿¿À®¡¤¥×¥ó¥¶¥é¥ó¥Õ¥í¥ì¥ó¥·¥ª¥é¥¹¥Æ¥£¡¤ÅèµÈδÉס¤·¬¸¶´²ÌÀ¡¤Ô¢»ÞµÁÉÒ¡¤Å·Ì
·Á¼°Åª¤Ëµ½Ò¤µ¤ì¤¿ODE ²òË¡¥¹¥¡¼¥à¤Ë´ð¤Å¤¯CellML ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥³¡¼¥ÉÀ¸À®¥·¥¹¥Æ¥à
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 2-1-9, 2011.
-
ÅèµÈδÉ×, ÀÖÏ©·Äϯ, µ×ÊÝÅÄͪÂÀ, Å·Ì, ¾¾ÅÄůÌé
¶É½ê»ÀÁǾÃÈñÎÌʬÉÛ²òÀϤΤ¿¤á¤Î¿´¶ÚÁÈ¿¥Èù¾®½Û´Ä¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¥â¥Ç¥ë
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 2-2-4, 2011.
-
Akira AMANO, Naoki SOEJIMA, Takao SHIMAYOSHI, Hiroaki KUWABARA,
Yoshitoshi KUNIEDA
A General CellML Simulation Code Generator using ODE Solving
Scheme Description
Proc. IEEE EMB Conference 2011, pp. 940-944, 2011.
-
Yuki Hasegawa, Takao Shimayoshi, Akira Amano, Tetsuya Matsuda
A Study on Prediction Methods for a Cardiovascular Strong-Coupling
Simulation
Proc. IEEE EMB Conference 2011, pp. 137-140, 2011.
-
Yoshiaki Komori, Akira Amano, Keiko Maehara, Jin Li, Narazaki
Michiko, and Matsuda Tetsuya
A motion tracking method applying spread spectrum communication to
tagging MRI
Proc. 19th ISMRM, 2011.
-
Æ£°æ³Ø, ÅèµÈδÉ×, Φ·ú¶ä, Ä«ÁÒ·½°ì, Å·Ì, ¾¾ÅÄůÌé
ÌôʪºîÍÑ¿äÄê¤òÌÜŪ¤È¤·¤¿¿´¶ÚºÙ˦¥â¥Ç¥ë¤Î¥Ñ¥é¥á¥¿¶õ´Ö²òÀÏ
ÅŻҾðÊóÄÌ¿®³Ø²ñµ»½ÑÊó¹ð, MBE¸¦µæ²ñ, 2010. 11.
-
ÀÖÏ©·Äϯ, µ×ÊÝÅÄͪÂÀ, ÅèµÈδÉ×, Å·Ì, ¾¾ÅÄůÌé
¿´¶ÚÁÈ¿¥Èù¾®½Û´Ä¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤òÍѤ¤¤¿»ÀÁǾÃÈñʬÉÛ¤Îɾ²Á
ÅŻҾðÊóÄÌ¿®³Ø²ñµ»½ÑÊó¹ð, MBE¸¦µæ²ñ, 2010. 11.
-
¶âÝ«, ¾®¿¹Ë§½©, ÆêºêÈþÃÒ»Ò, Å·Ì, ¾¾ÅÄůÌé
¥¹¥Ú¥¯¥È¥é¥à³È»¶ÄÌ¿®¤ò±þÍѤ·¤¿tagging MRI¤Ë¤è¤ë±¿Æ°ÄÉÀ×ÀºÅ٤μ¸³Åª¸¡Æ¤
ÅŻҾðÊóÄÌ¿®³Ø²ñµ»½ÑÊó¹ð, MI¸¦µæ²ñ, 2010. 9.
-
Å·Ìî ¹¸
¡Ø¿´¶ÚÁÈ¿¥¡¦º¸¿´¼¼¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¤Î¥½¥Õ¥È¥¦¥§¥¢ÅªÂ¦ÌÌ¡Ù
ÂçºåÂç³Ø¥°¥í¡¼¥Ð¥ëCOE¥»¥ß¥Ê¡¼¡Ö¥Õ¥£¥¸¥ª¡¼¥à¡¦Åý¹çÀ¸Ì¿²Ê³Ø¤Î¿ä¿Ê¤ò»Ù¤¨¤ë
¾ðÊ󡦥½¥Õ¥È¥¦¥§¥¢´ðÈ׳«È¯¤Î¸½¾õ¤ÈŸ˾¡×, 2009. 11. 21.
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Å·Ìî ¹¸
¡Ö°å³Ø¤Ë¤ª¤±¤ë¥¤¥á¡¼¥¸¥ó¥°¤È¥Ó¥¸¥å¥¢¥ê¥¼¡¼¥·¥ç¥ó
¡ÝKyoto Collection¤ÈKyoto Model £²¤Ä¤Î»î¤ß¡Ý¡×
¡Ø¿´¶ÚºÙ˦¥â¥Ç¥ë¤Ë¤è¤ë¿´¶Ú¹¼ºÉ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¡Ù
³Ø½Ñ±ÇÁüÇî2009, 2009.11.
-
Mitsuharu Mishima, Takao Shimayoshi, Akira Amano, Tetsuya Matsuda
Analysis of the Underlying Mechanism of Frank-Starling Law of a Constructive Hemodynamics Model
ASIA SIMULATION CONFERENCE (JSST) 2009, ID138, 2009.
-
»°Åç½¼À², ÅèµÈδÉ×, Å·Ì, ¾¾ÅÄůÌé
¹½À®Åª¥â¥Ç¥ë¤òÍøÍѤ·¤¿¥Õ¥é¥ó¥¯¡¦¥¹¥¿¡¼¥ê¥ó¥°Â§¤Î¥á¥«¥Ë¥º¥à²òÀÏ
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à 2009¡¤p.160¡¤2009.
-
°æ¾å¡¤Æêºê¡¤Å·Ì¾¾ÅÄ
DTI¤Ë¤ª¤±¤ë¥Î¥¤¥ºÆÃÀ¤ò¹Íθ¤·¤¿Àþ°ÝÊý¸þ¿äÄêˡɾ²Á
ÆüËܼ§µ¤¶¦Ìijزñ Á´¹ñÂç²ñ, P-2-202, 2009.
-
Amano Akira, Kubota Yuuta, Shimayoshi Takao, Matsuda Tetsuya
Evaluation of Cardiac Oxygen Consumption under Hypoxia with Tissue Model
Integrating Microcirculation Model and Cell Model
Proc. IEEE EMB Conference, pp. 3885-3888, 2009.
-
Shimayoshi Takao, Amano Akira, Matsuda Tetsuya
A Method for Analysis of Simultaneous Equations in Cell Models
Proc. IEEE EMB Conference, p. 2343-2346, 2009.
-
Takao Shimayoshi, Akira Amano, Satoshi Matsuoka, Tetsuya Matsuda
CYBOW MODELLER: USER-INTUITIVE TOOLS FOR CELL MODELLING
Proc. IUPS, P2AM-25-17, 2009.
-
Akira Amano, Yuuta Kubota, Tetsuya Matsuda
Evaluation of Cell and Tissue Hypoxic Reaction - Model Study -
Proc. IUPS, P2AM-25-10, 2009.
-
Yukiko Himeno, Chae Young Cha, Takao Shimayoshi, Akinori Noma, Nobuya
Inagaki, Akira Amano
COMPARING CONTRIBUTIONS OF EACH IONIC COMPONENT TO CARDIAC PACEMAKER
POTENTIAL BETWEEN DIFFERENT MODELS USING THE LEAD POTENTIAL ANALYSIS
Proc. IUPS, P2AM-25-3, 2009.
-
Å·Ìî ¹¸
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Âè48²óÀ¸Âΰ幩³Ø²ñÂç²ñ¡¤¥ª¡¼¥¬¥Ê¥¤¥º¥É¥»¥Ã¥·¥ç¥ó¡Ö°åÎŤËÌòΩ¤Ä¥·¥ß¥å¥ì¡¼¥·¥ç¥óµ»½Ñ¡×
-
Y. Shimizu, A. Amano, and T. Matsuda
Analysis of true 3D cardiac motion using 3D tagged MRI
Proc. ISMRM, p.1813, 2009.
-
Á°¸¶·Ä»Ò¡¤ÆêºêÈþÃÒ»Ò¡¤Å·Ì¡¤¾¾ÅÄůÌé
°ÌÃÖ¾ðÊó¤ÎÉä¹ç²½¤Ë¤è¤ë¥¿¥®¥ó¥°MRI¤Ë¤ª¤±¤ë¥¿¥°ÄÉÀ×ÀºÅ٤βþÁ±
ÅŻҾðÊóÄÌ¿®³Ø²ñµ»½ÑÊó¹ð¡¤MI2008-173, pp.513-518, 2009.
-
Shimayoshi, Takao Amano, Akira Matsuda, Tetsuya
Optimization method of simultaneous equations in biological models using graph theory
Proc. ICSB, 2008.
-
ÅèµÈδÉ×, Å·Ì, ¾¾ÅÄůÌé
¥°¥é¥ÕÍýÏÀ¤Ë´ð¤Å¤¯ºÙ˦¥â¥Ç¥ë¹½À®¼°¤ÎºÇŬ²½¼êË¡
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à2008, pp.434-435, 2008.
-
Akira AMANO, Yasuhiro TAKADA, Jianyin LU, Takao SHIMAYOSHI, Tetsuya MATSUDA
An Approximation Model of Myocardial Crossbridge for Weak Coupling Calculation of Left Ventricle Model and Circulation Model
Proc. IEEE EMB Conference, pp.957-960, 2008.
-
Á׿Îß塤¹â¶¶¹¯¿Í¡¤´ä²¼Éð»Ë¡¤¶âß·Àµ·û¡¤ÅèµÈδÉס¤Å·Ì¡¤¾¾ÅÄůÌé
ÊÂÎó·×»»µ¡¾å¤Ç¤ÎKyoto ¥â¥Ç¥ë¤Ë¤è¤ë¶½Ê³ÅÁÇÅ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó
ÊÂÎó/ʬ»¶/¶¨Ä´½èÍý¤Ë´Ø¤¹¤ë¡Øº´²ì¡Ù¥µ¥Þ¡¼¡¦¥ï¡¼¥¯¥·¥ç¥Ã¥× (SWoPP)
EVA-1(2), 2008.
-
¾¾ÅÄ ·òϺ¡¤·§Èª À¶¡¤Å·Ìî ¹¸¡¤¾¾ß·¾ÈÃË
¿´¶ÚºÙ˦¤ËKyoto¥â¥Ç¥ë¤òŬ±þ¤·¤¿º¸¿´¼¼¥â¥Ç¥ë¤ÎÇïÆ°Î®²òÀÏ
ÆüËܵ¡³£³Ø²ñÂç²ñ¡¤0827, 2008.
-
T. Shimayoshi, A. Amano, T. Matsuda
A Method for Efficient Execution of Cell Physiological
Simulation using Graph Theory
Proc. APBC, 2008.
-
ÅèµÈδÉ×, Å·Ì, ¾¾ÅÄůÌé
µ½Ò¸À¸ì¤òÍѤ¤¤¿ºÙ˦À¸Íý³Ø¼Â¸³¥·¥ß¥å¥ì¡¼¥·¥ç¥ó¼êË¡
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 1-LP-3, 2007 (Best Paper Award)
-
¹âÅÄ ¹¯¹°¡¤Å·Ìî ¹¸¡¤Á× ¿Îß塤Φ ·ú¶ä¡¤ÅèµÈ δÉ×, ÀÐÀî ³Ð»Ö¡¤¾®»û ½¨½Ó¡¤¾¾ÅÄ Å¯Ìé
¶½Ê³ÅÁã»þ´Ö¤Îº¸¿´¼¼Êɱ¿Æ°¤ËÍ¿¤¨¤ë±Æ¶Á
À¸Âΰ幩³Ø¥·¥ó¥Ý¥¸¥¦¥à, 2-7-4, 2007
-
Tetsuya Matsuda, Akira Amano, Shinobu Mizuta
Bio-Medical Application of Information Systems
IEEE 2nd Int. Conf. on Informatics Research for Development of Knowledge
Society Infrastructure (ICKS 2007), pp. 53-60, 2007.
-
Yutaka Nobuaki, Akira Amano, Takao Shimayoshi, Jianyin Lu, Eun B. Shim
and Tetsuya Matsuda
Infant Circulation Model based
on the Electrophysiological Cell Model
Proc. IEEE EMB Conference, pp.1010-1013, 2007.
-
Takao Shimayoshi, Akira Amano and Tetsuya Matsuda
A Generic Representation
Format of Physiological Experimental Protocols
for Computer Simulation using Ontology
Proc. IEEE EMB Conference, pp.382-385, 2007.
-
Jianyin Lu, Keichi Asakura, Akira Amano, Tetsuya Matsuda
Fast Drug Action Solving
from Cardiac Action Potential by Model
Fitting in A Sampled Parameter Space
Proc. IEEE EMB Conference, pp.131-134, 2007.
-
À¶¿å Í¥¡¤ ¶â ½¨°ì¡¤ Å·Ìî ¹¸¡¤¾¾ÅÄ Å¯Ìé
¿´Â¡£³¼¡¸µMRI ¥¿¥®¥ó¥°²èÁü¤«¤é¤Î¥¿¥°¸òº¹ÅÀ¸¡½ÐË¡
°åÍѲèÁü¹©³Ø²ñÂç²ñ¡¤A1-2, 2007.
-
Yutaka Nobuaki, Akira Amano, Takao Shimayoshi, Jianyin Lu, Eun B. Shim, and Tetsuya Matsuda
A Model for Simulation of Infant Cardiovascular Response to Orthostatic Stress
Proc. Functional Imaging and Modeling of the Heart, LNCS 4466, 190-199, 2007.
-
Jianyin Lu, Keichi Asakura, Akira Amano, and Tetsuya Matsuda
In Silico Drug Action Estimation from Cardiac Action Potentials by Model Fitting in a Sampled Parameter Space
LNCS 4688, pp.710-718, 2007.
-
ÅèµÈδÉס¤Å·Ì¡¤¾¾ÅÄůÌé
ºÙ˦¥â¥Ç¥ë¤ÎϢΩ¾ïÈùʬÊýÄø¼°¤ËÂФ¹¤ë²Ä²òÍ×·ï¤È¿ôÃÍ·×»»¼ê½ç¤Î²òÀÏ
¾ðÊó½èÍý³Ø²ñ ¸¦µæ²ñÊó¹ð, Vol. 2006, No.135, 2006-BIO-007, pp. 127-133, 2006.
-
Å·Ì¡¤¾¾ÅÄůÌé
ÀºÌ©¿´¶ÚºÙ˦¥â¥Ç¥ë¤Ë´ð¤Å¤¯À¸ÂÎ¥·¥ß¥å¥ì¡¼¥·¥ç¥ó
¼«Æ°À©¸æÏ¢¹ç¹Ö±é²ñ, SU5-2-4, 2006, 11.
-
Yasuhiro TAKADA, Akira AMANO, Jianyin LU, Takao SHIMAYOSHI, Tetsuya MATSUDA, Hidetoshi KOTERA
Stress Distribution in a Rotationally Symmetric and a Measurement Based Left Ventricular Shape Model
Proc. IEEE EMB Conference, pp.624-627, 2006.
-
Yutaka NOBUAKI, Yu KAMEI, Jianyin LU, Takao SHIMAYOSHI, Satoshi ISHIKAWA, Akira AMANO, Hidetoshi KOTERA, Tetsuya MATSUDA
Reproducing Nonlinear Force Velocity Relation of Myocardial Tissue by a Nonlinear Parallel Elastic Component
Proc. IEEE EMB Conference, pp.612-615, 2006.
-
SHIMAYOSHI Takao, KOMURASAKI Kazuhiro, AMANO Akira, IWASHITA Takeshi, KANAZAWA Masanori and MATSUDA Tetsuya
An Computer Support for Physiological Cell Modeling using an Ontology on Cell Physiology
Proc. IEEE EMB Conference, pp.4171-4174, 2006.
-
Jianyin Lu, Toshifumi Nishi, Takashi Ashihara, Natalie Schneider, Akira Amano, Tetsuya Matsuda, Hidetoshi Kotera
The Influence of Activation Time on Contraction Force of Myocardial Tissue: a Simulation Study
Proc. IEEE EMB Conference, pp.2900-2903, 2006.
-
Å·Ì¡¤¾¾ÅÄůÌé
¿´¶ÚºÙ˦¥â¥Ç¥ë¤Ë´ð¤Å¤¯¿´Â¡¥·¥ß¥å¥ì¡¼¥·¥ç¥ó
°åÍѲèÁü¹©³Ø²ñÂç²ñ¡¤2006.
-
N.S. Schneider, T. Shimayoshi, A. Amano, T. Matsuda
A NOVEL CARDIAC MUSCLE CONTRACTION MODEL THAT INCLUDES TITIN ELUCIDATES A POTENTIAL FRANK-STARLING MECHANISM
International Muscle Energetics Conference(IMEC), 2006.
-
ÅèµÈδÉס¤¾®»çϹ¨¡¤Å·Ì¡¤´ä²¼Éð»Ë¡¤¾¾ÅÄůÌ顤¶âß·Àµ·û
ºÙ˦À¸Íý³Ø¥â¥Ç¥ë¤Î¹½ÃÛ»Ù±ç¤òÌÜŪ¤È¤·¤¿´û¸Í×ÁÇ¥â¥Ç¥ë¤Î¥ª¥ó¥È¥í¥¸¡¼Âбþ²½¼êË¡
¾ðÊó½èÍý³Ø²ñ¸¦µæ²ñÊó¹ð¡¤¥Ð¥¤¥ª¾ðÊ󳨏¦µæ²ñ¡¤vol. 2006, no. 64,
2006-BIO-5¡¤pp.17--22, 2006.
-
¿®½©Íµ, ÉÓ°æÍª, Φ·ú¶ä, ÅèµÈδÉ×, ÀÐÀî³Ð»Ö, Å·Ì, ¾®»û½¨½Ó, ¾¾ÅÄůÌé
¿´¶ÚÁÈ¿¥¤Ë¤ª¤±¤ëÈóÀþ·ÁÄ¥ÎÏ®Åٴط¸ºÆ¸½¤Î¤¿¤á¤ÎÈóÀþ·ÁÊÂÎóÃÆÀÍ×ÁÇ¥â¥Ç¥ë
Ê£¹ç°å¹©³Ø¥·¥ó¥Ý¥¸¥¦¥à¡¤pp.172--175, 2006ǯ5·î¡¥
-
Y. Shimizu, X. Jin, A. Amano, T. Matsuda
Three Dimensional Tracking of Tag Intersections in Tagged MRI
ISMRM, p.1015, 2006.
-
Takao Shimayoshi, Akira Amano and Tetsuya Matsuda
PSPML: Physiological Simulation Protocol Markup Language
Proc. APBC 2006, 2006.
-
Schneider, N.S., Shimayoshi, T., Amano, A., Matsuda, T., and Noma, A.
Including titin in a simple muscle contraction model suitable for a myocardial cell model.
Proc. European Medical and Biological Engineering Conference 2005, 2005.
-
Yutaka NOBUAKI, Toshifumi NISHI, Akira AMANO, Yasuyuki ABE, Tetsuya MATSUDA:
Simulation Algorithm for the Coupling of the Left Ventricular Mechanical Model with Arbitrary Circulation Model
Proc. IEEE EMB Conference 2005, pp.7632-7635, 2005.
-
Akira Amano, Toshifumi Nishi, Jianyin Lu, Natalie Schneider, Tetsuya Matsuda, Hidetoshi Kotera, Akinori Noma:
Strong Coupling System for the LV Motion Simulation in a Distributed Simulation Environment
Proc. IEEE EMB Conference 2005, pp.5511-5514, 2005.
-
T. Oida, Y. Kang, T. Azuma, J. Okamoto, A. Amano, L. Axel, O. Takizawa, S. Tsutsumi, T. Matsuda
The measurement of anisotropic elasticity in skeletal muscle using MR Elastography
Proc. ISMRM, p.2020, 2005.
-
Akira Amano, Naoki Asada, Masayuki Mukunoki
Modification Table Form Generation System based on the Form Recognition
Proc. ICPR2004, pp.659-662, 2004.
-
Akira Amano, Tsuyoshi Migita, Naoki Asada
Stable Recovery of Shape and Motion from Partially Tracked Feature
Points with Fast Nonlinear Optimization
Vision Interface 2002, pp.244-251, 2002. (Best Paper Award)
-
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