AbstractMorphological and biochemical studies indicate association between voltage-gated Ca2+ channels and the vesicle docking complex at vertebrate presynaptic active zones, which constrain the separation between some Ca2+ channels and vesicles to 20nm or less. To address the effect of the precise geometrical relationship among the vesicles, the Ca2+ channel, and the proteins of the release machinery on neurotransmitter release, we developed a Monte Carlo simulation of Ca2+ diffusion and buffering with nanometer resolution. We find that the presence of a vesicle as a diffusion barrier alters the shape of the Ca2+ microdomain of a single Ca2+ channel around the vesicle. This effect is maximal in the vicinity of the vesicle and depends criti...
AbstractA Monte Carlo analysis has been made of calcium dynamics and quantal secretion at microdomai...
Synaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels (VGCCs...
SummarySynaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels...
ABSTRACT Morphological and biochemical studies indicate association between voltage-gated Ca21 chann...
AbstractMorphological and biochemical studies indicate association between voltage-gated Ca2+ channe...
Calcium triggered neurotransmitter release is distinguished from other types of cellular exocytosis ...
We investigate the effects of synaptic vesicle geometry on Ca2+ diffusion dynamics in presynaptic te...
AbstractAlthough single-channel Ca2+ microdomains are capable of gating neurotransmitter release in ...
Calcium diffusion in the thin 100 nm layer located between the plasma membrane and docked vesicles i...
SummarySynaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels...
AbstractAlthough single-channel Ca2+ microdomains are capable of gating neurotransmitter release in ...
SummaryUnravelling principles underlying neurotransmitter release are key to understand neural signa...
AbstractExocytosis in neuroendocrine cells is a process triggered by Ca2+. A Monte Carlo simulation ...
AbstractA Monte Carlo analysis has been made of calcium dynamics in submembranous domains of active ...
AbstractSynchronous neurotransmitter release is mediated by the opening of voltage-gated Ca2+ channe...
AbstractA Monte Carlo analysis has been made of calcium dynamics and quantal secretion at microdomai...
Synaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels (VGCCs...
SummarySynaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels...
ABSTRACT Morphological and biochemical studies indicate association between voltage-gated Ca21 chann...
AbstractMorphological and biochemical studies indicate association between voltage-gated Ca2+ channe...
Calcium triggered neurotransmitter release is distinguished from other types of cellular exocytosis ...
We investigate the effects of synaptic vesicle geometry on Ca2+ diffusion dynamics in presynaptic te...
AbstractAlthough single-channel Ca2+ microdomains are capable of gating neurotransmitter release in ...
Calcium diffusion in the thin 100 nm layer located between the plasma membrane and docked vesicles i...
SummarySynaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels...
AbstractAlthough single-channel Ca2+ microdomains are capable of gating neurotransmitter release in ...
SummaryUnravelling principles underlying neurotransmitter release are key to understand neural signa...
AbstractExocytosis in neuroendocrine cells is a process triggered by Ca2+. A Monte Carlo simulation ...
AbstractA Monte Carlo analysis has been made of calcium dynamics in submembranous domains of active ...
AbstractSynchronous neurotransmitter release is mediated by the opening of voltage-gated Ca2+ channe...
AbstractA Monte Carlo analysis has been made of calcium dynamics and quantal secretion at microdomai...
Synaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels (VGCCs...
SummarySynaptic efficacy and precision are influenced by the coupling of voltage-gated Ca2+ channels...