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A two-current model for the dynamics of cardiac membrane
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A two-current model for the dynamics of cardiac membrane
Located in
Exposures
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Mitchell, Schaeffer, 2003
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The myogenic response in isolated rat cerebrovascular arteries: smooth muscle cell model
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The myogenic response in isolated rat cerebrovascular arteries: smooth muscle cell model
Located in
Exposures
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Yang, Clark, Bryan, Robertson, 2003
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Vagal Control of Sinoatrial Rhythm: a Mathematical Model
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Vagal Control of Sinoatrial Rhythm: a Mathematical Model
Located in
Exposures
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Dokos, Celler, Lovell, 1996
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A delayed nonlinear PBPK model for genistein dosimetry in rats
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A delayed nonlinear PBPK model for genistein dosimetry in rats
Located in
Exposures
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Zager, Schlosser, Tran, 2007
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Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study (Midmyocardial Cell Model)
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Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study (Midmyocardial Cell Model)
Located in
Exposures
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Viswanathan, Shaw, Rudy, 1999
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Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study (Endocardial Cell Model)
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Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study (Endocardial Cell Model)
Located in
Exposures
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Viswanathan, Shaw, Rudy, 1999
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Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study (Epicardial Cell Model)
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Effects of IKr and IKs heterogeneity on action potential duration and its rate dependence: a simulation study (Epicardial Cell Model)
Located in
Exposures
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Viswanathan, Shaw, Rudy, 1999
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Description of Guyton heart rate and stroke volume module
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Description of Guyton heart rate and stroke volume module
Located in
Exposures
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Guyton, Heart Rate and Stroke Volume, 2008
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Description of Guyton heart rate and stroke volume module
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Description of Guyton heart rate and stroke volume module
Located in
Exposures
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Guyton, Heart Rate and Stroke Volume, 2008
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Mathematical model of human growth hormone (hGH)-stimulated cell proliferation explains the efficacy of hGH variants as receptor agonists or antagonists
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Mathematical model of human growth hormone (hGH)-stimulated cell proliferation explains the efficacy of hGH variants as receptor agonists or antagonists
Located in
Exposures
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Haugh, 2004