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Volumn 108, Issue 8, 2015, Pages 1934-1945

Optogenetic versus electrical stimulation of human cardiomyocytes: Modeling insights

Author keywords

[No Author keywords available]

Indexed keywords

CHANNELRHODOPSIN 2, HUMAN; RHODOPSIN;

EID: 84928252750     PISSN: 00063495     EISSN: 15420086     Source Type: Journal    
DOI: 10.1016/j.bpj.2015.03.032     Document Type: Article
Times cited : (48)

References (60)
  • 2
    • 79955684899 scopus 로고    scopus 로고
    • A history of optogenetics: The development of tools for controlling brain circuits with light
    • E.S. Boyden A history of optogenetics: the development of tools for controlling brain circuits with light F1000 Biol. Rep. 3 2011 11
    • (2011) F1000 Biol. Rep. , vol.3 , pp. 11
    • Boyden, E.S.1
  • 3
    • 70350104716 scopus 로고    scopus 로고
    • The optogenetic catechism
    • G. Miesenböck The optogenetic catechism Science 326 2009 395 399
    • (2009) Science , vol.326 , pp. 395-399
    • Miesenböck, G.1
  • 5
    • 84861615371 scopus 로고    scopus 로고
    • Optogenetics and psychiatry: Applications, challenges, and opportunities
    • K. Deisseroth Optogenetics and psychiatry: applications, challenges, and opportunities Biol. Psychiatry 71 2012 1030 1032
    • (2012) Biol. Psychiatry , vol.71 , pp. 1030-1032
    • Deisseroth, K.1
  • 6
    • 84857686193 scopus 로고    scopus 로고
    • Optogenetics and thermogenetics: Technologies for controlling the activity of targeted cells within intact neural circuits
    • J.G. Bernstein, P.A. Garrity, and E.S. Boyden Optogenetics and thermogenetics: technologies for controlling the activity of targeted cells within intact neural circuits Curr. Opin. Neurobiol. 22 2012 61 71
    • (2012) Curr. Opin. Neurobiol. , vol.22 , pp. 61-71
    • Bernstein, J.G.1    Garrity, P.A.2    Boyden, E.S.3
  • 7
    • 26444621497 scopus 로고    scopus 로고
    • Millisecond-timescale, genetically targeted optical control of neural activity
    • E.S. Boyden, and F. Zhang K. Deisseroth Millisecond-timescale, genetically targeted optical control of neural activity Nat. Neurosci. 8 2005 1263 1268
    • (2005) Nat. Neurosci. , vol.8 , pp. 1263-1268
    • Boyden, E.S.1    Zhang, F.2    Deisseroth, K.3
  • 9
    • 0345133280 scopus 로고    scopus 로고
    • Channelrhodopsin-2, a directly light-gated cation-selective membrane channel
    • G. Nagel, and T. Szellas E. Bamberg Channelrhodopsin-2, a directly light-gated cation-selective membrane channel Proc. Natl. Acad. Sci. USA 100 2003 13940 13945
    • (2003) Proc. Natl. Acad. Sci. USA , vol.100 , pp. 13940-13945
    • Nagel, G.1    Szellas, T.2    Bamberg, E.3
  • 10
    • 84555219932 scopus 로고    scopus 로고
    • Stimulating cardiac muscle by light: Cardiac optogenetics by cell delivery
    • Z. Jia, and V. Valiunas E. Entcheva Stimulating cardiac muscle by light: cardiac optogenetics by cell delivery Circ. Arrhythm. Electrophysiol 4 2011 753 760
    • (2011) Circ. Arrhythm. Electrophysiol , vol.4 , pp. 753-760
    • Jia, Z.1    Valiunas, V.2    Entcheva, E.3
  • 11
    • 78049321336 scopus 로고    scopus 로고
    • Optogenetic control of heart muscle in vitro and in vivo
    • T. Bruegmann, and D. Malan P. Sasse Optogenetic control of heart muscle in vitro and in vivo Nat. Methods 7 2010 897 900
    • (2010) Nat. Methods , vol.7 , pp. 897-900
    • Bruegmann, T.1    Malan, D.2    Sasse, P.3
  • 12
    • 84891057774 scopus 로고    scopus 로고
    • Optogenetics' promise: Pacing and cardioversion by light?
    • C.M. Ambrosi, and E. Entcheva Optogenetics' promise: pacing and cardioversion by light? Future Cardiol 10 2014 1 4
    • (2014) Future Cardiol , vol.10 , pp. 1-4
    • Ambrosi, C.M.1    Entcheva, E.2
  • 13
    • 84883437134 scopus 로고    scopus 로고
    • A comprehensive multiscale framework for simulating optogenetics in the heart
    • P.M. Boyle, and J.C. Williams N.A. Trayanova A comprehensive multiscale framework for simulating optogenetics in the heart Nat. Commun. 4 2013 2370
    • (2013) Nat. Commun. , vol.4 , pp. 2370
    • Boyle, P.M.1    Williams, J.C.2    Trayanova, N.A.3
  • 15
    • 84923103082 scopus 로고    scopus 로고
    • Channelrhodopsin2 current during the action potential: "optical AP clamp" and approximation
    • E. Entcheva, and J.C. Williams Channelrhodopsin2 current during the action potential: "optical AP clamp" and approximation Sci. Rep. 4 2014 5838
    • (2014) Sci. Rep. , vol.4 , pp. 5838
    • Entcheva, E.1    Williams, J.C.2
  • 16
    • 84884679394 scopus 로고    scopus 로고
    • Computational optogenetics: Empirically derived voltage- and light-sensitive channelrhodopsin-2 model
    • J.C. Williams, and J. Xu E. Entcheva Computational optogenetics: empirically derived voltage- and light-sensitive channelrhodopsin-2 model PLOS Comput. Biol. 9 2013 e1003220
    • (2013) PLOS Comput. Biol. , vol.9 , pp. e1003220
    • Williams, J.C.1    Xu, J.2    Entcheva, E.3
  • 18
    • 77956299328 scopus 로고    scopus 로고
    • Light induced stimulation and delay of cardiac activity
    • B. Hofmann, and V. Maybeck A. Offenhäusser Light induced stimulation and delay of cardiac activity Lab Chip 10 2010 2588 2596
    • (2010) Lab Chip , vol.10 , pp. 2588-2596
    • Hofmann, B.1    Maybeck, V.2    Offenhäusser, A.3
  • 19
    • 80053129860 scopus 로고    scopus 로고
    • Multiscale computational models for optogenetic control of cardiac function
    • O.J. Abilez, and J. Wong E. Kuhl Multiscale computational models for optogenetic control of cardiac function Biophys. J. 101 2011 1326 1334
    • (2011) Biophys. J. , vol.101 , pp. 1326-1334
    • Abilez, O.J.1    Wong, J.2    Kuhl, E.3
  • 20
    • 84913600482 scopus 로고    scopus 로고
    • Light-induced termination of spiral wave arrhythmias by optogenetic engineering of atrial cardiomyocytes
    • B.O. Bingen, and M.C. Engels A.A. de Vries Light-induced termination of spiral wave arrhythmias by optogenetic engineering of atrial cardiomyocytes Cardiovasc. Res. 104 2014 194 205
    • (2014) Cardiovasc. Res. , vol.104 , pp. 194-205
    • Bingen, B.O.1    Engels, M.C.2    De Vries, A.A.3
  • 21
    • 84906544857 scopus 로고    scopus 로고
    • Optical mapping of optogenetically shaped cardiac action potentials
    • S.A. Park, and S.R. Lee D.T. Yue Optical mapping of optogenetically shaped cardiac action potentials Sci. Rep 4 2014 6125
    • (2014) Sci. Rep , vol.4 , pp. 6125
    • Park, S.A.1    Lee, S.R.2    Yue, D.T.3
  • 22
    • 78149368433 scopus 로고    scopus 로고
    • Optogenetic control of cardiac function
    • A.B. Arrenberg, and D.Y. Stainier J. Huisken Optogenetic control of cardiac function Science 330 2010 971 974
    • (2010) Science , vol.330 , pp. 971-974
    • Arrenberg, A.B.1    Stainier, D.Y.2    Huisken, J.3
  • 23
    • 84897013419 scopus 로고    scopus 로고
    • Modulation of cardiac tissue electrophysiological properties with light-sensitive proteins
    • U. Nussinovitch, R. Shinnawi, and L. Gepstein Modulation of cardiac tissue electrophysiological properties with light-sensitive proteins Cardiovasc. Res. 102 2014 176 187
    • (2014) Cardiovasc. Res. , vol.102 , pp. 176-187
    • Nussinovitch, U.1    Shinnawi, R.2    Gepstein, L.3
  • 24
    • 84871346469 scopus 로고    scopus 로고
    • Energy efficient neural stimulation: Coupling circuit design and membrane biophysics
    • T.J. Foutz, and D.M. Ackermann Jr. C.C. McIntyre Energy efficient neural stimulation: coupling circuit design and membrane biophysics PLoS ONE 7 2012 e51901
    • (2012) PLoS ONE , vol.7 , pp. e51901
    • Foutz, T.J.1    Ackermann, Jr.D.M.2    McIntyre, C.C.3
  • 25
    • 47049107739 scopus 로고    scopus 로고
    • Non-rectangular waveforms for neural stimulation with practical electrodes
    • M. Sahin, and Y. Tie Non-rectangular waveforms for neural stimulation with practical electrodes J. Neural Eng. 4 2007 227 233
    • (2007) J. Neural Eng. , vol.4 , pp. 227-233
    • Sahin, M.1    Tie, Y.2
  • 26
    • 0032541976 scopus 로고    scopus 로고
    • Relative efficacy of monophasic and biphasic waveforms for transthoracic defibrillation after short and long durations of ventricular fibrillation
    • G.P. Walcott, and S.B. Melnick R.E. Ideker Relative efficacy of monophasic and biphasic waveforms for transthoracic defibrillation after short and long durations of ventricular fibrillation Circulation 98 1998 2210 2215
    • (1998) Circulation , vol.98 , pp. 2210-2215
    • Walcott, G.P.1    Melnick, S.B.2    Ideker, R.E.3
  • 27
    • 0033977145 scopus 로고    scopus 로고
    • Theoretical predictions of the optimal monophasic and biphasic defibrillation waveshapes
    • M.G. Fishler Theoretical predictions of the optimal monophasic and biphasic defibrillation waveshapes IEEE Trans. Biomed. Eng. 47 2000 59 67
    • (2000) IEEE Trans. Biomed. Eng. , vol.47 , pp. 59-67
    • Fishler, M.G.1
  • 28
    • 23744463963 scopus 로고    scopus 로고
    • Mechanisms of superiority of ascending ramp waveforms: New insights into mechanisms of shock-induced vulnerability and defibrillation
    • F. Qu, and L. Li I.R. Efimov Mechanisms of superiority of ascending ramp waveforms: new insights into mechanisms of shock-induced vulnerability and defibrillation Am. J. Physiol. Heart Circ. Physiol. 289 2005 H569 H577
    • (2005) Am. J. Physiol. Heart Circ. Physiol. , vol.289 , pp. H569-H577
    • Qu, F.1    Li, L.2    Efimov, I.R.3
  • 29
    • 0021075903 scopus 로고
    • Improved defibrillator waveform safety factor with biphasic waveforms
    • J.L. Jones, and R.E. Jones Improved defibrillator waveform safety factor with biphasic waveforms Am. J. Physiol. 245 1983 H60 H65
    • (1983) Am. J. Physiol. , vol.245 , pp. H60-H65
    • Jones, J.L.1    Jones, R.E.2
  • 30
    • 0015119008 scopus 로고
    • A more efficient waveform for cardiac stimulation
    • O.Z. Roy, and R.W. Wehnert A more efficient waveform for cardiac stimulation Med. Biol. Eng. 9 1971 495 501
    • (1971) Med. Biol. Eng. , vol.9 , pp. 495-501
    • Roy, O.Z.1    Wehnert, R.W.2
  • 31
    • 84862694195 scopus 로고    scopus 로고
    • Theoretical principles underlying optical stimulation of a channelrhodopsin-2 positive pyramidal neuron
    • T.J. Foutz, R.L. Arlow, and C.C. McIntyre Theoretical principles underlying optical stimulation of a channelrhodopsin-2 positive pyramidal neuron J. Neurophysiol. 107 2012 3235 3245
    • (2012) J. Neurophysiol. , vol.107 , pp. 3235-3245
    • Foutz, T.J.1    Arlow, R.L.2    McIntyre, C.C.3
  • 32
    • 84880946950 scopus 로고    scopus 로고
    • Theoretical principles underlying optical stimulation of myelinated axons expressing channelrhodopsin-2
    • R.L. Arlow, T.J. Foutz, and C.C. McIntyre Theoretical principles underlying optical stimulation of myelinated axons expressing channelrhodopsin-2 Neuroscience 248 2013 541 551
    • (2013) Neuroscience , vol.248 , pp. 541-551
    • Arlow, R.L.1    Foutz, T.J.2    McIntyre, C.C.3
  • 33
    • 80052430640 scopus 로고    scopus 로고
    • Control of neural synchrony using channelrhodopsin-2: A computational study
    • S.S. Talathi, P.R. Carney, and P.P. Khargonekar Control of neural synchrony using channelrhodopsin-2: a computational study J. Comput. Neurosci. 31 2011 87 103
    • (2011) J. Comput. Neurosci. , vol.31 , pp. 87-103
    • Talathi, S.S.1    Carney, P.R.2    Khargonekar, P.P.3
  • 34
    • 84886560341 scopus 로고    scopus 로고
    • Computational models of optogenetic tools for controlling neural circuits with light
    • K. Nikolic, and S. Jarvis S. Schultz Computational models of optogenetic tools for controlling neural circuits with light Conf. Proc. IEEE Eng. Med. Biol. Soc. 2013 2013 5934 5937
    • (2013) Conf. Proc. IEEE Eng. Med. Biol. Soc. , vol.2013 , pp. 5934-5937
    • Nikolic, K.1    Jarvis, S.2    Schultz, S.3
  • 35
    • 79956360160 scopus 로고    scopus 로고
    • Modeling study of the light stimulation of a neuron cell with channelrhodopsin-2 mutants
    • N. Grossman, and K. Nikolic P. Degenaar Modeling study of the light stimulation of a neuron cell with channelrhodopsin-2 mutants IEEE Trans. Biomed. Eng. 58 2011 1742 1751
    • (2011) IEEE Trans. Biomed. Eng. , vol.58 , pp. 1742-1751
    • Grossman, N.1    Nikolic, K.2    Degenaar, P.3
  • 36
    • 84859539566 scopus 로고    scopus 로고
    • Computational optogenetics: A novel continuum framework for the photoelectrochemistry of living systems
    • J. Wong, O.J. Abilez, and E. Kuhl Computational optogenetics: a novel continuum framework for the photoelectrochemistry of living systems J. Mech. Phys. Solids 60 2012 1158 1178
    • (2012) J. Mech. Phys. Solids , vol.60 , pp. 1158-1178
    • Wong, J.1    Abilez, O.J.2    Kuhl, E.3
  • 37
  • 38
    • 79958158591 scopus 로고    scopus 로고
    • Simulation of the undiseased human cardiac ventricular action potential: Model formulation and experimental validation
    • T. O'Hara, and L. Virág Y. Rudy Simulation of the undiseased human cardiac ventricular action potential: model formulation and experimental validation PLOS Comput. Biol. 7 2011 e1002061
    • (2011) PLOS Comput. Biol. , vol.7 , pp. e1002061
    • O'Hara, T.1    Virág, L.2    Rudy, Y.3
  • 39
    • 33750856807 scopus 로고    scopus 로고
    • Ionic mechanisms underlying human atrial action potential properties: Insights from a mathematical model
    • M. Courtemanche, R.J. Ramirez, and S. Nattel Ionic mechanisms underlying human atrial action potential properties: insights from a mathematical model Am. J. Physiol. 275 1998 H301 H321
    • (1998) Am. J. Physiol. , vol.275 , pp. H301-H321
    • Courtemanche, M.1    Ramirez, R.J.2    Nattel, S.3
  • 40
    • 77954742469 scopus 로고    scopus 로고
    • A computational model of Purkinje fiber single cell electrophysiology: Implications for the long QT syndrome
    • K.J. Sampson, and V. Iyer R.S. Kass A computational model of Purkinje fiber single cell electrophysiology: implications for the long QT syndrome J. Physiol. 588 2010 2643 2655
    • (2010) J. Physiol. , vol.588 , pp. 2643-2655
    • Sampson, K.J.1    Iyer, V.2    Kass, R.S.3
  • 41
    • 58749110341 scopus 로고    scopus 로고
    • A simple modification of the Hodgkin and Huxley equations explains type 3 excitability in squid giant axons
    • J.R. Clay, D. Paydarfar, and D.B. Forger A simple modification of the Hodgkin and Huxley equations explains type 3 excitability in squid giant axons J. R. Soc. Interface 5 2008 1421 1428
    • (2008) J. R. Soc. Interface , vol.5 , pp. 1421-1428
    • Clay, J.R.1    Paydarfar, D.2    Forger, D.B.3
  • 42
    • 0015421859 scopus 로고
    • Strength-duration curves in cardiac Purkinje fibers: Effects of liminal length and charge distribution
    • H.A. Fozzard, and M. Schoenberg Strength-duration curves in cardiac Purkinje fibers: effects of liminal length and charge distribution J. Physiol. 226 1972 593 618
    • (1972) J. Physiol. , vol.226 , pp. 593-618
    • Fozzard, H.A.1    Schoenberg, M.2
  • 43
    • 24144476557 scopus 로고    scopus 로고
    • Effect of input resistance voltage-dependency on DC estimate of membrane capacitance in cardiac myocytes
    • M. Zaniboni, F. Cacciani, and M. Groppi Effect of input resistance voltage-dependency on DC estimate of membrane capacitance in cardiac myocytes Biophys. J. 89 2005 2170 2181
    • (2005) Biophys. J. , vol.89 , pp. 2170-2181
    • Zaniboni, M.1    Cacciani, F.2    Groppi, M.3
  • 44
    • 0034023244 scopus 로고    scopus 로고
    • Beat-to-beat repolarization variability in ventricular myocytes and its suppression by electrical coupling
    • M. Zaniboni, and A.E. Pollard K.W. Spitzer Beat-to-beat repolarization variability in ventricular myocytes and its suppression by electrical coupling Am. J. Physiol. Heart Circ. Physiol. 278 2000 H677 H687
    • (2000) Am. J. Physiol. Heart Circ. Physiol. , vol.278 , pp. H677-H687
    • Zaniboni, M.1    Pollard, A.E.2    Spitzer, K.W.3
  • 45
    • 84907478487 scopus 로고    scopus 로고
    • Fitting membrane resistance along with action potential shape in cardiac myocytes improves convergence: Application of a multi-objective parallel genetic algorithm
    • J. Kaur, A. Nygren, and E.J. Vigmond Fitting membrane resistance along with action potential shape in cardiac myocytes improves convergence: application of a multi-objective parallel genetic algorithm PLoS ONE 9 2014 e107984
    • (2014) PLoS ONE , vol.9 , pp. e107984
    • Kaur, J.1    Nygren, A.2    Vigmond, E.J.3
  • 46
    • 84944495672 scopus 로고
    • The threshold conditions for initiation of action potentials by excitable cells
    • D. Noble, and R.B. Stein The threshold conditions for initiation of action potentials by excitable cells J. Physiol. 187 1966 129 162
    • (1966) J. Physiol. , vol.187 , pp. 129-162
    • Noble, D.1    Stein, R.B.2
  • 47
    • 12344323809 scopus 로고    scopus 로고
    • Electrical stimulation of excitable tissue: Design of efficacious and safe protocols
    • D.R. Merrill, M. Bikson, and J.G. Jefferys Electrical stimulation of excitable tissue: design of efficacious and safe protocols J. Neurosci. Methods 141 2005 171 198
    • (2005) J. Neurosci. Methods , vol.141 , pp. 171-198
    • Merrill, D.R.1    Bikson, M.2    Jefferys, J.G.3
  • 48
    • 77957687641 scopus 로고    scopus 로고
    • Voltage- and temperature-dependent gating of heterologously expressed channelrhodopsin-2
    • T.E. Chater, and J.M. Henley A.D. Randall Voltage- and temperature-dependent gating of heterologously expressed channelrhodopsin-2 J. Neurosci. Methods 193 2010 7 13
    • (2010) J. Neurosci. Methods , vol.193 , pp. 7-13
    • Chater, T.E.1    Henley, J.M.2    Randall, A.D.3
  • 50
    • 79956332172 scopus 로고    scopus 로고
    • High-efficiency channelrhodopsins for fast neuronal stimulation at low light levels
    • A. Berndt, and P. Schoenenberger T.G. Oertner High-efficiency channelrhodopsins for fast neuronal stimulation at low light levels Proc. Natl. Acad. Sci. USA 108 2011 7595 7600
    • (2011) Proc. Natl. Acad. Sci. USA , vol.108 , pp. 7595-7600
    • Berndt, A.1    Schoenenberger, P.2    Oertner, T.G.3
  • 51
    • 73849143150 scopus 로고    scopus 로고
    • High-performance genetically targetable optical neural silencing by light-driven proton pumps
    • B.Y. Chow, and X. Han E.S. Boyden High-performance genetically targetable optical neural silencing by light-driven proton pumps Nature 463 2010 98 102
    • (2010) Nature , vol.463 , pp. 98-102
    • Chow, B.Y.1    Han, X.2    Boyden, E.S.3
  • 52
    • 77950930288 scopus 로고    scopus 로고
    • Molecular and cellular approaches for diversifying and extending optogenetics
    • V. Gradinaru, and F. Zhang K. Deisseroth Molecular and cellular approaches for diversifying and extending optogenetics Cell 141 2010 154 165
    • (2010) Cell , vol.141 , pp. 154-165
    • Gradinaru, V.1    Zhang, F.2    Deisseroth, K.3
  • 53
    • 84862909320 scopus 로고    scopus 로고
    • A high-light sensitivity optical neural silencer: Development and application to optogenetic control of non-human primate cortex
    • X. Han, and B.Y. Chow E.S. Boyden A high-light sensitivity optical neural silencer: development and application to optogenetic control of non-human primate cortex Front. Syst. Neurosci. 5 2011 18
    • (2011) Front. Syst. Neurosci. , vol.5 , pp. 18
    • Han, X.1    Chow, B.Y.2    Boyden, E.S.3
  • 54
    • 55849136898 scopus 로고    scopus 로고
    • Multiple-color optical activation, silencing, and desynchronization of neural activity, with single-spike temporal resolution
    • X. Han, and E.S. Boyden Multiple-color optical activation, silencing, and desynchronization of neural activity, with single-spike temporal resolution PLoS ONE 2 2007 e299
    • (2007) PLoS ONE , vol.2 , pp. e299
    • Han, X.1    Boyden, E.S.2
  • 55
    • 34247222730 scopus 로고    scopus 로고
    • Multimodal fast optical interrogation of neural circuitry
    • F. Zhang, and L.P. Wang K. Deisseroth Multimodal fast optical interrogation of neural circuitry Nature 446 2007 633 639
    • (2007) Nature , vol.446 , pp. 633-639
    • Zhang, F.1    Wang, L.P.2    Deisseroth, K.3
  • 56
    • 77950935182 scopus 로고    scopus 로고
    • Informational lesions: Optical perturbation of spike timing and neural synchrony via microbial opsin gene fusions
    • X. Han, and X. Qian E.S. Boyden Informational lesions: optical perturbation of spike timing and neural synchrony via microbial opsin gene fusions Front. Mol. Neurosci 2 2009 12
    • (2009) Front. Mol. Neurosci , vol.2 , pp. 12
    • Han, X.1    Qian, X.2    Boyden, E.S.3
  • 57
    • 84899528517 scopus 로고    scopus 로고
    • Structure-guided transformation of channelrhodopsin into a light-activated chloride channel
    • A. Berndt, and S.Y. Lee K. Deisseroth Structure-guided transformation of channelrhodopsin into a light-activated chloride channel Science 344 2014 420 424
    • (2014) Science , vol.344 , pp. 420-424
    • Berndt, A.1    Lee, S.Y.2    Deisseroth, K.3
  • 58
    • 84928250802 scopus 로고    scopus 로고
    • Toward microendoscopy-inspired cardiac optogenetics in vivo: Technical overview and perspective
    • A. Klimas, and E. Entcheva Toward microendoscopy-inspired cardiac optogenetics in vivo: technical overview and perspective J. Biomed. Opt. 19 2014 080701
    • (2014) J. Biomed. Opt. , vol.19 , pp. 080701
    • Klimas, A.1    Entcheva, E.2
  • 59
    • 84906499657 scopus 로고    scopus 로고
    • Simulating photon scattering effects in structurally detailed ventricular models using a Monte Carlo approach
    • M.J. Bishop, and G. Plank Simulating photon scattering effects in structurally detailed ventricular models using a Monte Carlo approach Front. Physiol. 5 2014 338
    • (2014) Front. Physiol. , vol.5 , pp. 338
    • Bishop, M.J.1    Plank, G.2
  • 60
    • 80052475926 scopus 로고    scopus 로고
    • The role of photon scattering in voltage-calcium fluorescent recordings of ventricular fibrillation
    • M.J. Bishop, and A. Rowley G. Bub The role of photon scattering in voltage-calcium fluorescent recordings of ventricular fibrillation Biophys. J. 101 2011 307 318
    • (2011) Biophys. J. , vol.101 , pp. 307-318
    • Bishop, M.J.1    Rowley, A.2    Bub, G.3


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