2016
DOI: 10.1113/jp272724
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Cited by 2 publications
(2 citation statements)
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“…We thus sought to biophysically define the contribution of the “fast” synaptotagmin‐dependent form of release, and to describe the properties of the slower remaining form. To do so, we used the calyx‐of‐Held synapse as a model system because it allows simultaneous patching of pre‐ and postsynaptic compartments, providing an unparalleled resolution of electrophysiological measurements 129. 130 The calyx‐of‐Held synapse expresses only Syt2 among the “fast” synaptotagmins (Figure 8 A).…”
Section: Ca2+‐triggering Of Fusion: Synaptotagmins and Morementioning
confidence: 99%
“…We thus sought to biophysically define the contribution of the “fast” synaptotagmin‐dependent form of release, and to describe the properties of the slower remaining form. To do so, we used the calyx‐of‐Held synapse as a model system because it allows simultaneous patching of pre‐ and postsynaptic compartments, providing an unparalleled resolution of electrophysiological measurements 129. 130 The calyx‐of‐Held synapse expresses only Syt2 among the “fast” synaptotagmins (Figure 8 A).…”
Section: Ca2+‐triggering Of Fusion: Synaptotagmins and Morementioning
confidence: 99%
“…Dafür wählten wir die Held’sche Calyx als Modellsystem, da sie es uns ermöglichte, gleichzeitig prä‐ und postsynaptische Kompartimente zu kontrollieren bzw. zu messen, und somit eine einmalige Auflösung für elektrophysiologischen Messungen bot 129. 130 Die Held’sche Calyx exprimiert von den “schnellen” Synaptotagminen nur Syt2 (Abbildung 8 A).…”
Section: Ca2+‐steuerung Der Fusion: Synaptotagmine Und Ihre Partnerunclassified