Many essential physiological processes are controlled by calcium. To ensure reliability and specificity, calcium signals are highly organized in time and space in the form of oscillations and waves. Interesting findings have been obtained at various scales, ranging from the stochastic opening of a single calcium channel to the intercellular calcium wave spreading through an entire organ. A detailed understanding of calcium dynamics thus requires a link between observations at different scales. It appears that some regulations such as calcium-induced calcium release or PLC activation by calcium, as well as the weak diffusibility of calcium ions play a role at all levels of organization in most cell types. To comprehend how calcium waves spre...
While calcium signaling in excitable cells, such as muscle or neurons, is extensively characterized,...
Intercellular waves of calcium (Ca2+) are an important signalling mechanism in a wide variety of ce...
While calcium signaling in excitable cells, such as muscle or neurons, is extensively characterized,...
Calcium signal can be found in many types of cell. It has been treated as a life and death signal in...
Changes in cellular calcium concentration control a wide range of physiological processes, from the ...
Changes in cellular Ca2+ concentration control a wide range of physiological processes, from the sub...
Calcium (Ca2+) is a key signaling ion that plays a fundamental role in many cellular processes in mo...
Ca2+ is one of the most important messengers. It transmits signals inside living cells and takes par...
Calcium is a ubiquitous second messenger that mediates vital physiological responses such as fertili...
Ca2 is one of the most important messengers. It transmits signals inside living cells and takes pa...
Intracellular Calcium is an important messenger in living cells. Calcium dynamics display complex te...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
This review provides a comparative overview of recent developments in the modelling of cellular calc...
Ca2+ is a highly versatile intracellular signal that operates over a wide temporal range to regulate...
AbstractMore and more data accumulate concerning calcium dependent effects in all compartments of ce...
While calcium signaling in excitable cells, such as muscle or neurons, is extensively characterized,...
Intercellular waves of calcium (Ca2+) are an important signalling mechanism in a wide variety of ce...
While calcium signaling in excitable cells, such as muscle or neurons, is extensively characterized,...
Calcium signal can be found in many types of cell. It has been treated as a life and death signal in...
Changes in cellular calcium concentration control a wide range of physiological processes, from the ...
Changes in cellular Ca2+ concentration control a wide range of physiological processes, from the sub...
Calcium (Ca2+) is a key signaling ion that plays a fundamental role in many cellular processes in mo...
Ca2+ is one of the most important messengers. It transmits signals inside living cells and takes par...
Calcium is a ubiquitous second messenger that mediates vital physiological responses such as fertili...
Ca2 is one of the most important messengers. It transmits signals inside living cells and takes pa...
Intracellular Calcium is an important messenger in living cells. Calcium dynamics display complex te...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
This review provides a comparative overview of recent developments in the modelling of cellular calc...
Ca2+ is a highly versatile intracellular signal that operates over a wide temporal range to regulate...
AbstractMore and more data accumulate concerning calcium dependent effects in all compartments of ce...
While calcium signaling in excitable cells, such as muscle or neurons, is extensively characterized,...
Intercellular waves of calcium (Ca2+) are an important signalling mechanism in a wide variety of ce...
While calcium signaling in excitable cells, such as muscle or neurons, is extensively characterized,...