AbstractCalcium oscillations and waves have been observed not only in several types of living cells but also in less complex systems of isolated cell organelles. Here we report the determination of apparent Ca2+ diffusion coefficients in a novel excitable medium of agarose gel with homogeneously distributed vesicles of skeletal sarcoplasmic reticulum. Spatiotemporal calcium patterns were visualized by confocal laser scanning fluorescence microscopy. To obtain characteristic parameters of the velocity curvature relationship, namely, apparent diffusion coefficient, velocity of plane calcium waves, and critical radius, positively and negatively curved wave fronts were analyzed. It is demonstrated that gel-immobilized cell organelles reveal fea...
Neuronal calcium signals propagating by simple diffusion and reaction with mobile and stationary buf...
AbstractCalcium waves in heart cells are mediated by diffusion-coupled calcium-induced calcium relea...
In the present study, the mechanism of intercellular calcium wave propagation in bone cell networks ...
AbstractCalcium oscillations and waves have been observed not only in several types of living cells ...
AbstractIn different cell types, activation of signal transduction pathways leads to the generation ...
AbstractClusters of calcium-loaded sarcoplasmic reticulum (SR) vesicles in agarose gel were previous...
Colliding spherical calcium waves in enzymatically isolated rat cardiac myocytes develop new wavefro...
Spontaneous calcium waves in enzymatically isolated rat cardiac myocytes were investigated by confoc...
In many types of eukaryotic cells, the activation of surface receptors leads to the production of in...
Digital imaging microscopy of fluor-3 fluorescence was used to study the propagation of intracellula...
AbstractWe propose a mechanism for the formation of membrane oscillations and traveling waves, which...
Biological excitability enables the rapid transmission of physiological signals over distance. Using...
In rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in response to l...
The regenerative Ca(2+)-induced Ca2+ release mechanism is an important amplifier of signal transduct...
AbstractIn rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in respo...
Neuronal calcium signals propagating by simple diffusion and reaction with mobile and stationary buf...
AbstractCalcium waves in heart cells are mediated by diffusion-coupled calcium-induced calcium relea...
In the present study, the mechanism of intercellular calcium wave propagation in bone cell networks ...
AbstractCalcium oscillations and waves have been observed not only in several types of living cells ...
AbstractIn different cell types, activation of signal transduction pathways leads to the generation ...
AbstractClusters of calcium-loaded sarcoplasmic reticulum (SR) vesicles in agarose gel were previous...
Colliding spherical calcium waves in enzymatically isolated rat cardiac myocytes develop new wavefro...
Spontaneous calcium waves in enzymatically isolated rat cardiac myocytes were investigated by confoc...
In many types of eukaryotic cells, the activation of surface receptors leads to the production of in...
Digital imaging microscopy of fluor-3 fluorescence was used to study the propagation of intracellula...
AbstractWe propose a mechanism for the formation of membrane oscillations and traveling waves, which...
Biological excitability enables the rapid transmission of physiological signals over distance. Using...
In rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in response to l...
The regenerative Ca(2+)-induced Ca2+ release mechanism is an important amplifier of signal transduct...
AbstractIn rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in respo...
Neuronal calcium signals propagating by simple diffusion and reaction with mobile and stationary buf...
AbstractCalcium waves in heart cells are mediated by diffusion-coupled calcium-induced calcium relea...
In the present study, the mechanism of intercellular calcium wave propagation in bone cell networks ...