AbstractCalcium waves in heart cells are mediated by diffusion-coupled calcium-induced calcium release. The waves propagate in circular fashion. This is counterintuitive in view of the accepted ultrastructure of the cardiac myocyte. The density of calcium release sites in the transverse direction is four times higher than in the longitudinal direction. Simulations with release sites localized along Z-lines and isotropic diffusion yielded highly elliptical, nonphysiological waves. We hypothesized that subcellular organelles counteracted the higher release site density along the Z-lines by acting as transverse diffusion barriers and sites of active calcium uptake. We quantified the reduction of transverse diffusion by microinjecting cells wit...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
In rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in response to l...
AbstractA novel Nipkow-type confocal microscope was applied to image spontaneously propagating Ca2+ ...
Digital imaging microscopy of fluor-3 fluorescence was used to study the propagation of intracellula...
Spontaneous calcium waves in enzymatically isolated rat cardiac myocytes were investigated by confoc...
Colliding spherical calcium waves in enzymatically isolated rat cardiac myocytes develop new wavefro...
AbstractAtrial myocytes in a number of species lack transverse tubules. As a consequence the intrace...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
The aim was to investigate the propagation of Ca2+ waves between cells and determine whether this sy...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
AbstractCalcium oscillations and waves have been observed not only in several types of living cells ...
Understanding the biology and mechanisms as to how the heart contracts has long been a point of inte...
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...
AbstractOf the many ongoing controversies regarding the workings of the sarcoplasmic reticulum (SR) ...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
In rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in response to l...
AbstractA novel Nipkow-type confocal microscope was applied to image spontaneously propagating Ca2+ ...
Digital imaging microscopy of fluor-3 fluorescence was used to study the propagation of intracellula...
Spontaneous calcium waves in enzymatically isolated rat cardiac myocytes were investigated by confoc...
Colliding spherical calcium waves in enzymatically isolated rat cardiac myocytes develop new wavefro...
AbstractAtrial myocytes in a number of species lack transverse tubules. As a consequence the intrace...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
The aim was to investigate the propagation of Ca2+ waves between cells and determine whether this sy...
Atrial myocytes in a number of species lack transverse tubules. As a consequence the intracellular c...
AbstractCalcium oscillations and waves have been observed not only in several types of living cells ...
Understanding the biology and mechanisms as to how the heart contracts has long been a point of inte...
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...
AbstractOf the many ongoing controversies regarding the workings of the sarcoplasmic reticulum (SR) ...
Contraction of cardiac cells is initiated by an increase in the level of intracellular calcium conce...
In rat mesenteric arteries, smooth muscle cells exhibit intercellular calcium waves in response to l...
AbstractA novel Nipkow-type confocal microscope was applied to image spontaneously propagating Ca2+ ...