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Mechanism for the Universal Pattern of Activity in Developing Neuronal Networks
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Mechanism for the Universal Pattern of Activity in Developing Neuronal Networks
Located in
Exposures
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Tabak, Mascagni, Bertram, 2010
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One-dimensional mathematical model of the atrioventricular node including atrio-nodal, nodal, and nodal-his cells
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One-dimensional mathematical model of the atrioventricular node including atrio-nodal, nodal, and nodal-his cells
Located in
Exposures
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Inada, Hancox, Zhang, Boyett, 2009
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One-dimensional mathematical model of the atrioventricular node including atrio-nodal, nodal, and nodal-his cells
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One-dimensional mathematical model of the atrioventricular node including atrio-nodal, nodal, and nodal-his cells
Located in
Exposures
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Inada, Hancox, Zhang, Boyett, 2009
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One-dimensional mathematical model of the atrioventricular node including atrio-nodal, nodal, and nodal-his cells
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One-dimensional mathematical model of the atrioventricular node including atrio-nodal, nodal, and nodal-his cells
Located in
Exposures
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Inada, Hancox, Zhang, Boyett, 2009
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Revilla and Garcia-Ramos's 2003 dynamic model for HIV-1 therapy.
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Fighting a virus with a virus: a dynamic model for HIV-1 therapy
Located in
Exposures
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Revilla, Garcia-Ramos, 2003
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Action potential and contractility changes in [Na(+)](i) overloaded cardiac myocytes: a simulation study (Original model in steady state)
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Action potential and contractility changes in [Na(+)](i) overloaded cardiac myocytes: a simulation study.
Located in
Exposures
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Faber, Rudy, 2000
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Action potential and contractility changes in [Na(+)](i) overloaded cardiac myocytes: a simulation study (Updated model with an added Ito current and and updated Irel current)
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Action potential and contractility changes in [Na(+)](i) overloaded cardiac myocytes: a simulation study
Located in
Exposures
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Faber, Rudy, 2000
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A quantitative model of gastric smooth muscle cellular activation
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A quantitative model of gastric smooth muscle cellular activation
Located in
Exposures
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Corrias, Buist, 2007
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Differential feedback regulation of the MAPK cascade underlies the quantitative differences in EGF and NGF signalling in PC12 cells.
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Differential feedback regulation of the MAPK cascade underlies the quantitative differences in EGF and NGF signalling in PC12 cells.
Located in
Exposures
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Brightman, Fell, 2000
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Computational modeling reveals how interplay between components of a GTPase-cycle module regulates signal transduction
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Computational modeling reveals how interplay between components of a GTPase-cycle module regulates signal transduction
Located in
Exposures
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Bornheimer, Maurya, Farquhar, Subramaniam, 2004