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Calcium and Glycolysis Mediate Multiple Bursting Modes in Pancreatic Islets
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Calcium and Glycolysis Mediate Multiple Bursting Modes in Pancreatic Islets
Located in
Exposures
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Bertram, Satin, Zhang, Smolen, Sherman, 2004
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Calcium and Glycolysis Mediate Multiple Bursting Modes in Pancreatic Islets
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Calcium and Glycolysis Mediate Multiple Bursting Modes in Pancreatic Islets
Located in
Exposures
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Bertram, Satin, Zhang, Smolen, Sherman, 2004
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Calcium and Glycolysis Mediate Multiple Bursting Modes in Pancreatic Islets
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Calcium and Glycolysis Mediate Multiple Bursting Modes in Pancreatic Islets
Located in
Exposures
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Bertram, Satin, Zhang, Smolen, Sherman, 2004
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Calcium-activated K+ Channels of Mouse Beta Cells are Controlled by Both Store and Cytoplasmic Ca2+: Experimental and Theoretical Studies
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Calcium-activated K+ Channels of Mouse Beta Cells are Controlled by Both Store and Cytoplasmic Ca2+: Experimental and Theoretical Studies
Located in
Exposures
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Goforth, Bertram, Khan, Zhang, Sherman, Satin, 2002
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calcium_Buf.cellml
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Located in
Exposures
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Reproducibility of the computational model of induced pluripotent stem-cell derived cardiomyocytes
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Components
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calcium_SR.cellml
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Located in
Exposures
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Reproducibility of the computational model of induced pluripotent stem-cell derived cardiomyocytes
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Components
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Calmodulin Mediates Differential Sensitivity of CAMKII and Calcineurin to Local Ca2+ in Cardiac Myocytes
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Calmodulin Mediates Differential Sensitivity of CAMKII and Calcineurin to Local Ca2+ in Cardiac Myocytes
Located in
Exposures
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Saucerman, Bers, 2008
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Calmodulin Mediates Differential Sensitivity of CAMKII and Calcineurin to Local Ca2+ in Cardiac Myocytes
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Calmodulin Mediates Differential Sensitivity of CAMKII and Calcineurin to Local Ca2+ in Cardiac Myocytes
Located in
Exposures
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Saucerman, Bers, 2008
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Can yeast glycolysis be understood in terms of in vitro kinetics of the constituent enzymes? Testing biochemistry.
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Can yeast glycolysis be understood in terms of in vitro kinetics of the constituent enzymes? Testing biochemistry.
Located in
Exposures
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Teusink, Westerhoff, Snoep, Passarge, Reijenga, Esgalhado, van der Weijden, Schepper, Walsh, Bakker, van Dam, 2000
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Can yeast glycolysis be understood in terms of in vitro kinetics of the constituent enzymes? Testing biochemistry.
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Can yeast glycolysis be understood in terms of in vitro kinetics of the constituent enzymes? Testing biochemistry.
Located in
Exposures
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Teusink, Westerhoff, Snoep, Passarge, Reijenga, Esgalhado, van der Weijden, Schepper, Walsh, Bakker, van Dam, 2000