Voltage-dependent Ca2+ currents evoke synaptic transmitter release. Of six types of Ca2+ channels, L-, N-, P-, Q-, R-, and T-type, only N- and P/Q-type channels have been pharmacologically identified to mediate action-potential-evoked transmitter release in the mammalian central nervous system. We tested whether Ca2+ channels other than N- and P/Q-type control transmitter release in a calyx-type synapse of the rat medial nucleus of the trapezoid body. Simultaneous recordings of presynaptic Ca2+ influx and the excitatory postsynaptic current evoked by a single action potential were made at single synapses. The R-type channel, a high-voltage-activated Ca2+ channel resistant to L-, N-, and P/Q-type channel blockers, contributed 26% of the tota...
AbstractNeurotransmitter release probability is related by high power to the local concentration of ...
1. To study use-dependent changes in the presynaptic Ca2+ influx and their contribution to transmitt...
The regulation of transmitter release at the neuromuscular junction is tightly regulated by the infl...
Voltage-dependent Ca2+ currents evoke synaptic transmitter release. Of six types of Ca2+ channels, L...
Voltage-dependent Ca2+ currents evoke synaptic transmitter release. Of six types of Ca2+ channels, L...
We studied how Ca2+ influx through different subtypes of Ca2+ channels couples to release at a calyx...
We studied how Ca2+ influx through different subtypes of Ca2+ channels couples to release at a calyx...
The supraoptic nucleus receives an abundant gamma-aminobutyric acid (GABA)ergic input which is inhib...
The supraoptic nucleus receives an abundant gamma-aminobutyric acid (GABA)ergic input which is inhib...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...
The supraoptic nucleus receives an abundant gamma-aminobutyric acid (GABA)ergic input which is inhib...
AbstractNeurotransmitter release probability is related by high power to the local concentration of ...
To study the type of presynaptic calcium channels controlling transmitter release at synaptic connec...
Whole−cell recordings and Ca2+ flux measurements were made at a giant calyx−type synapse in rat brai...
AbstractNeurotransmitter release probability is related by high power to the local concentration of ...
1. To study use-dependent changes in the presynaptic Ca2+ influx and their contribution to transmitt...
The regulation of transmitter release at the neuromuscular junction is tightly regulated by the infl...
Voltage-dependent Ca2+ currents evoke synaptic transmitter release. Of six types of Ca2+ channels, L...
Voltage-dependent Ca2+ currents evoke synaptic transmitter release. Of six types of Ca2+ channels, L...
We studied how Ca2+ influx through different subtypes of Ca2+ channels couples to release at a calyx...
We studied how Ca2+ influx through different subtypes of Ca2+ channels couples to release at a calyx...
The supraoptic nucleus receives an abundant gamma-aminobutyric acid (GABA)ergic input which is inhib...
The supraoptic nucleus receives an abundant gamma-aminobutyric acid (GABA)ergic input which is inhib...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...
Calcium entry through presynaptic calcium channels controls the release of neurotransmitter. It is n...
The supraoptic nucleus receives an abundant gamma-aminobutyric acid (GABA)ergic input which is inhib...
AbstractNeurotransmitter release probability is related by high power to the local concentration of ...
To study the type of presynaptic calcium channels controlling transmitter release at synaptic connec...
Whole−cell recordings and Ca2+ flux measurements were made at a giant calyx−type synapse in rat brai...
AbstractNeurotransmitter release probability is related by high power to the local concentration of ...
1. To study use-dependent changes in the presynaptic Ca2+ influx and their contribution to transmitt...
The regulation of transmitter release at the neuromuscular junction is tightly regulated by the infl...