Intracellular calcium (Ca2+) cycling dynamics in cardiac myocytes are spatiotemporally generated by stochastic events arising from a spatially distributed network of coupled Ca2+ release units that interact with an intertwined mitochondrial network. In this study, we developed a spatiotemporal ventricular myocyte model that integrates mitochondria-related Ca2+ cycling components into our previously developed ventricular myocyte model consisting of a three-dimensional Ca2+ release unit network. Mathematical formulations of mitochondrial membrane potential, mitochondrial Ca2+ cycling, mitochondrial permeability transition pore stochastic opening and closing, intracellular reactive oxygen species signaling, and oxidized Ca2+/calmodulin-depende...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
AbstractRecent studies have revealed that Ca2+ not only regulates the contraction of cardiomyocytes,...
Calcium (Ca2+) plays a central role in the excitation and contraction of cardiac myocytes. Experimen...
Mitochondria fulfill the cell’s energy demand and affect the intracellular calcium (Ca2+) dynamics v...
Mitochondria are vital organelles inside the cell and contribute to intracellular calcium (Ca2+) dyn...
AbstractPeriodic cellwide depolarizations of mitochondrial membrane potential (ΨM) which are trigger...
AbstractExisting theory suggests that mitochondria act as significant, dynamic buffers of cytosolic ...
AbstractOscillatory behavior of mitochondrial inner membrane potential (ΔΨm) is commonly observed in...
AbstractAn intricate network of reactions is involved in matching energy supply with demand in the h...
Recent studies have suggested that mitochondria may play important roles in the Ca(2+) homeostasis o...
Recent studies have suggested that mitochondria may play important roles in the Ca2+ homeostasis of ...
Existing theory suggests that mitochondria act as significant, dynamic buffers of cytosolic calcium ...
AbstractIn cardiomyocyte subcellular structures, colocalization of mitochondria with Ca2+ release si...
INTRODUCTION:Ca2+ release from sarcoplasmic reticulum (SR) is known to contribute to automaticity vi...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
AbstractRecent studies have revealed that Ca2+ not only regulates the contraction of cardiomyocytes,...
Calcium (Ca2+) plays a central role in the excitation and contraction of cardiac myocytes. Experimen...
Mitochondria fulfill the cell’s energy demand and affect the intracellular calcium (Ca2+) dynamics v...
Mitochondria are vital organelles inside the cell and contribute to intracellular calcium (Ca2+) dyn...
AbstractPeriodic cellwide depolarizations of mitochondrial membrane potential (ΨM) which are trigger...
AbstractExisting theory suggests that mitochondria act as significant, dynamic buffers of cytosolic ...
AbstractOscillatory behavior of mitochondrial inner membrane potential (ΔΨm) is commonly observed in...
AbstractAn intricate network of reactions is involved in matching energy supply with demand in the h...
Recent studies have suggested that mitochondria may play important roles in the Ca(2+) homeostasis o...
Recent studies have suggested that mitochondria may play important roles in the Ca2+ homeostasis of ...
Existing theory suggests that mitochondria act as significant, dynamic buffers of cytosolic calcium ...
AbstractIn cardiomyocyte subcellular structures, colocalization of mitochondria with Ca2+ release si...
INTRODUCTION:Ca2+ release from sarcoplasmic reticulum (SR) is known to contribute to automaticity vi...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
Spatio-temporal dynamics of intracellular calcium, [Ca2+]i, regulate the contractile function of car...
AbstractRecent studies have revealed that Ca2+ not only regulates the contraction of cardiomyocytes,...
Calcium (Ca2+) plays a central role in the excitation and contraction of cardiac myocytes. Experimen...