AbstractGiant synaptic terminals of goldfish bipolar neurons allow direct studies of presynaptic mechanisms underlying neurotransmitter release and its modulation. Calcium influx via L-type calcium channels of the terminal triggers synaptic vesicle exocytosis, which can be monitored in isolated terminals by means of the associated changes in membrane capacitance. Information about the kinetics and calcium dependence of synaptic exocytosis has been obtained from capacitance measurements in these ribbon-type synaptic terminals
Action potentials open voltage-sensitive calcium channels in excitable cells, leading to an influx o...
Synchronous neurotransmission is central to efficient information transfer in neural circuits, requi...
Action potentials open voltage-sensitive calcium channels in excitable cells, leading to an influx o...
AbstractGiant synaptic terminals of goldfish bipolar neurons allow direct studies of presynaptic mec...
Ribbon synapses of sensory neurons are able to sustain high rates of exocytosis in response to maint...
Ribbon synapses of sensory neurons are able to sustain high rates of exocytosis in response to maint...
Ribbon synapses of sensory neurons are able to sustain high rates of exocytosis in response to maint...
AbstractExocytosis-mediated glutamate release from ribbon-type synaptic terminals of retinal bipolar...
The distribution of exocytic sites and ion channels in the synaptic terminal of retinal bipolar cell...
AbstractWe relate the ultrastructure of the giant bipolar synapse in goldfish retina to the jump in ...
Glutamate uptake by high-affinity transporters is responsible for limiting the activation of postsyn...
To better understand synaptic signaling at the mammalian rod bipolar cell terminal and pave the way ...
AbstractUsing high resolution capacitance measurements, we have characterized an ultrafast component...
<p><b>A</b>, A schematic diagram is shown of a bipolar cell axon with large and small synaptic termi...
To better understand synaptic signaling at the mammalian rod bipolar cell terminal and pave the way ...
Action potentials open voltage-sensitive calcium channels in excitable cells, leading to an influx o...
Synchronous neurotransmission is central to efficient information transfer in neural circuits, requi...
Action potentials open voltage-sensitive calcium channels in excitable cells, leading to an influx o...
AbstractGiant synaptic terminals of goldfish bipolar neurons allow direct studies of presynaptic mec...
Ribbon synapses of sensory neurons are able to sustain high rates of exocytosis in response to maint...
Ribbon synapses of sensory neurons are able to sustain high rates of exocytosis in response to maint...
Ribbon synapses of sensory neurons are able to sustain high rates of exocytosis in response to maint...
AbstractExocytosis-mediated glutamate release from ribbon-type synaptic terminals of retinal bipolar...
The distribution of exocytic sites and ion channels in the synaptic terminal of retinal bipolar cell...
AbstractWe relate the ultrastructure of the giant bipolar synapse in goldfish retina to the jump in ...
Glutamate uptake by high-affinity transporters is responsible for limiting the activation of postsyn...
To better understand synaptic signaling at the mammalian rod bipolar cell terminal and pave the way ...
AbstractUsing high resolution capacitance measurements, we have characterized an ultrafast component...
<p><b>A</b>, A schematic diagram is shown of a bipolar cell axon with large and small synaptic termi...
To better understand synaptic signaling at the mammalian rod bipolar cell terminal and pave the way ...
Action potentials open voltage-sensitive calcium channels in excitable cells, leading to an influx o...
Synchronous neurotransmission is central to efficient information transfer in neural circuits, requi...
Action potentials open voltage-sensitive calcium channels in excitable cells, leading to an influx o...