In small presynaptic boutons in brain, synaptic vesicles are thought not to merge with the plasma membrane when they release transmitter, but instead to close their fusion pores and survive intact for future use (kiss-and-run exocytosis). The strongest evidence for this idea is the slow and incomplete release of the fluorescent membrane marker, FM1-43 [N-(3-triethylammoniumpropyl)-4-(4-(dibutylamino)styryl) pyridinium dibromide], from single vesicles. We investigated the release of FM1-43 from sparse cultures of hippocampal neurons grown on coverslips with no glia. This allowed presynaptic boutons to be imaged at favorable signal-to-noise ratio. Sparingly stained boutons were imaged at high time resolution, while high-frequency electrical s...
AbstractDirect optical measurements of single synaptic vesicles undergoing exocytosis at a synapse r...
AbstractUsing the fluorescent membrane label FM 1–43, we have measured the release, reuptake, and re...
AbstractHippocampal neurons in tissue culture develop functional synapses that exhibit considerable ...
In small presynaptic boutons in brain, synaptic vesicles are thought not to merge with the plasma me...
In small presynaptic boutons in brain, synaptic vesicles are thought not to merge with the plasma me...
AbstractPerhaps synaptic vesicles can recycle so rapidly because they avoid complete exocytosis, and...
AbstractPerhaps synaptic vesicles can recycle so rapidly because they avoid complete exocytosis, and...
SummarySynaptic vesicles are tethered to the active zone where they are docked/primed so that they c...
Fast repetitive synaptic transmission depends on efficient exocytosis and retrieval of synaptic vesi...
AbstractStyryl dyes (also referred to as FM dyes) become highly fluorescent upon binding to membrane...
SummarySynaptic vesicle recycling is essential for maintaining efficient synaptic transmission. Deta...
There is a general consensus that synaptic vesicular release by a full collapse process is the prima...
Electrophysiology and imaging techniques have been applied to study presynaptic vesicle release and ...
SummarySynaptic vesicles are tethered to the active zone where they are docked/primed so that they c...
SummaryThe kinetics of exo-endocytotic recycling could restrict information transfer at central syna...
AbstractDirect optical measurements of single synaptic vesicles undergoing exocytosis at a synapse r...
AbstractUsing the fluorescent membrane label FM 1–43, we have measured the release, reuptake, and re...
AbstractHippocampal neurons in tissue culture develop functional synapses that exhibit considerable ...
In small presynaptic boutons in brain, synaptic vesicles are thought not to merge with the plasma me...
In small presynaptic boutons in brain, synaptic vesicles are thought not to merge with the plasma me...
AbstractPerhaps synaptic vesicles can recycle so rapidly because they avoid complete exocytosis, and...
AbstractPerhaps synaptic vesicles can recycle so rapidly because they avoid complete exocytosis, and...
SummarySynaptic vesicles are tethered to the active zone where they are docked/primed so that they c...
Fast repetitive synaptic transmission depends on efficient exocytosis and retrieval of synaptic vesi...
AbstractStyryl dyes (also referred to as FM dyes) become highly fluorescent upon binding to membrane...
SummarySynaptic vesicle recycling is essential for maintaining efficient synaptic transmission. Deta...
There is a general consensus that synaptic vesicular release by a full collapse process is the prima...
Electrophysiology and imaging techniques have been applied to study presynaptic vesicle release and ...
SummarySynaptic vesicles are tethered to the active zone where they are docked/primed so that they c...
SummaryThe kinetics of exo-endocytotic recycling could restrict information transfer at central syna...
AbstractDirect optical measurements of single synaptic vesicles undergoing exocytosis at a synapse r...
AbstractUsing the fluorescent membrane label FM 1–43, we have measured the release, reuptake, and re...
AbstractHippocampal neurons in tissue culture develop functional synapses that exhibit considerable ...