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Vladimir G Fast

Showing results (11-20 of 44) with videos related to

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IEEE Transactions on Bio-Medical Engineering|September 15, 2011
A new optrode design for intramural optical recordingsWei Kong, Andrew E Pollard, Vladimir G Fast
Cardiovascular Research|December 1, 2006
Shock-induced changes of Ca(i)2+ and Vm in myocyte cultures and computer model: Dependence on the timing of shock applicationVidya Raman, Andrew E Pollard, Vladimir G Fast
Analytical Chemistry|September 14, 2016
Biomimetic Cardiac Tissue Model Enables the Adaption of Human Induced Pluripotent Stem Cell Cardiomyocytes to Physiological Hemodynamic LoadsAaron J Rogers, Vladimir G Fast, Palaniappan Sethu
Journal of Cardiovascular Electrophysiology|September 22, 2005
Role of microscopic tissue structure in shock-induced activation assessed by optical mapping in myocyte culturesEric R Cheek, Oleg F Sharifov, Vladimir G Fast
Cardiovascular Research|November 13, 2004
High-resolution optical mapping of intramural virtual electrodes in porcine left ventricular wallOleg F Sharifov, Raymond E Ideker, Vladimir G Fast
Annual Review of Biomedical Engineering|May 11, 2010
Mechanisms of defibrillationDerek J Dosdall, Vladimir G Fast, Raymond E Ideker
Pflugers Archiv : European Journal of Physiology|October 13, 2006
Optical mapping of V(m) and Ca(i)(2+) in a model of arrhythmias induced by local catecholamine application in patterned cell culturesDavid Z Lan, Andrew E Pollard, Stephen B Knisley, et al.
Journal of Cardiovascular Electrophysiology|December 18, 2003
Development of an optrode for intramural multisite optical recordings of Vm in the heartJonathan L Byars, William M Smith, Raymond E Ideker, et al.
Cardiovascular Research|November 26, 2002
Modulation of triggered activity by uncoupling in the ischemic border. A model study with phase 1b-like conditionsAndrew E Pollard, Wayne E Cascio, Vladimir G Fast, et al.
Circulation Research|May 25, 2004
Effects of electrical shocks on Cai2+ and Vm in myocyte culturesVladimir G Fast, Eric R Cheek, Andrew E Pollard, et al.
Pageof 5

Showing results (11-20 of 44) with videos related to

Sort By:
Pageof 5
IEEE Transactions on Bio-Medical Engineering|September 15, 2011
A new optrode design for intramural optical recordingsWei Kong, Andrew E Pollard, Vladimir G Fast
Cardiovascular Research|December 1, 2006
Shock-induced changes of Ca(i)2+ and Vm in myocyte cultures and computer model: Dependence on the timing of shock applicationVidya Raman, Andrew E Pollard, Vladimir G Fast
Analytical Chemistry|September 14, 2016
Biomimetic Cardiac Tissue Model Enables the Adaption of Human Induced Pluripotent Stem Cell Cardiomyocytes to Physiological Hemodynamic LoadsAaron J Rogers, Vladimir G Fast, Palaniappan Sethu
Journal of Cardiovascular Electrophysiology|September 22, 2005
Role of microscopic tissue structure in shock-induced activation assessed by optical mapping in myocyte culturesEric R Cheek, Oleg F Sharifov, Vladimir G Fast
Cardiovascular Research|November 13, 2004
High-resolution optical mapping of intramural virtual electrodes in porcine left ventricular wallOleg F Sharifov, Raymond E Ideker, Vladimir G Fast
Annual Review of Biomedical Engineering|May 11, 2010
Mechanisms of defibrillationDerek J Dosdall, Vladimir G Fast, Raymond E Ideker
Pflugers Archiv : European Journal of Physiology|October 13, 2006
Optical mapping of V(m) and Ca(i)(2+) in a model of arrhythmias induced by local catecholamine application in patterned cell culturesDavid Z Lan, Andrew E Pollard, Stephen B Knisley, et al.
Journal of Cardiovascular Electrophysiology|December 18, 2003
Development of an optrode for intramural multisite optical recordings of Vm in the heartJonathan L Byars, William M Smith, Raymond E Ideker, et al.
Cardiovascular Research|November 26, 2002
Modulation of triggered activity by uncoupling in the ischemic border. A model study with phase 1b-like conditionsAndrew E Pollard, Wayne E Cascio, Vladimir G Fast, et al.
Circulation Research|May 25, 2004
Effects of electrical shocks on Cai2+ and Vm in myocyte culturesVladimir G Fast, Eric R Cheek, Andrew E Pollard, et al.
Pageof 5