When an action potential reaches a synaptic terminal, fusion of a transmitter-containing vesicle with the presynaptic membrane occurs with a probability (pr) of less than one. Despite the fundamental importance of this parameter, pr has not been directly measured in the central nervous system. Here we describe a novel approach to determine pr, monitoring the decrement of NMDA (N-methyl-D-aspartate)-receptor mediated synaptic currents in the presence of the use-dependent channel blocker MK-801 (ref. 2). On a single postsynaptic CA1 hippocampal slice neuron, two classes of synapses with a sixfold difference in pr are resolved. Synapses with low pr contribute to over half of transmission and are more sensitive to drugs enhancing transmitter re...
We have investigated the impact of stochastic transmission on the input-output relations of neurons ...
Abstract Action potentials at the neurons and graded signals at the synapses are primary codes in th...
AbstractGlutamate receptors are concentrated in the postsynaptic complex of central synapses. This i...
Many synapses can change their strength rapidly in a use-dependent manner, but the mechanisms of suc...
SummaryThe arrival of an action potential at a synapse triggers neurotransmitter release with a limi...
The arrival of an action potential at a synapse triggers neurotransmitter release with a limited pro...
Information transfer between neurons in the central nervous system occurs at specialized contacts, c...
Synaptic transmission relies on several processes, such as the location of a released vesicle, the n...
Abstract Background Extrasynaptic NMDA receptors couple to a CREB shut-off pathway and cause cell de...
The number of receptors opening after glutamate release is critical for understanding the sources of...
SummaryThe arrival of an action potential at a synapse triggers neurotransmitter release with a limi...
AbstractWe have used endocytotic uptake of the styryl dye FM1–43 at synaptic terminals (Betz and Bew...
AbstractGlutamate receptors are concentrated in the postsynaptic complex of central synapses. This i...
AbstractPrevious studies of short-term plasticity in central nervous systems synapses have largely f...
The distance between Ca^2+ channels and release sensors determines the speed and efficacy of synapti...
We have investigated the impact of stochastic transmission on the input-output relations of neurons ...
Abstract Action potentials at the neurons and graded signals at the synapses are primary codes in th...
AbstractGlutamate receptors are concentrated in the postsynaptic complex of central synapses. This i...
Many synapses can change their strength rapidly in a use-dependent manner, but the mechanisms of suc...
SummaryThe arrival of an action potential at a synapse triggers neurotransmitter release with a limi...
The arrival of an action potential at a synapse triggers neurotransmitter release with a limited pro...
Information transfer between neurons in the central nervous system occurs at specialized contacts, c...
Synaptic transmission relies on several processes, such as the location of a released vesicle, the n...
Abstract Background Extrasynaptic NMDA receptors couple to a CREB shut-off pathway and cause cell de...
The number of receptors opening after glutamate release is critical for understanding the sources of...
SummaryThe arrival of an action potential at a synapse triggers neurotransmitter release with a limi...
AbstractWe have used endocytotic uptake of the styryl dye FM1–43 at synaptic terminals (Betz and Bew...
AbstractGlutamate receptors are concentrated in the postsynaptic complex of central synapses. This i...
AbstractPrevious studies of short-term plasticity in central nervous systems synapses have largely f...
The distance between Ca^2+ channels and release sensors determines the speed and efficacy of synapti...
We have investigated the impact of stochastic transmission on the input-output relations of neurons ...
Abstract Action potentials at the neurons and graded signals at the synapses are primary codes in th...
AbstractGlutamate receptors are concentrated in the postsynaptic complex of central synapses. This i...