Intracellular Ca2+ release and synaptic plasticity: A tale of many stores
Ca2+ is an essential trigger for most forms of synaptic plasticity. Ca2+ signaling occurs not only by Ca2+ entry via plasma membrane channels but also via Ca2+ signals generated by intracellular organelles. These organelles, by dynamically regulating the spatial and temporal extent of Ca2+ elevation...
Hauptverfasser: | Padamsey, Z, Foster, W, Emptage, NJ |
---|---|
Format: | Journal article |
Veröffentlicht: |
SAGE Publications
2018
|
Ähnliche Einträge
Ähnliche Einträge
-
Imaging synaptic plasticity.
von: Padamsey, Z, et al.
Veröffentlicht: (2011) -
Calcium stores in hippocampal synaptic boutons mediate short-term plasticity, store-operated Ca2+ entry, and spontaneous transmitter release.
von: Emptage, N, et al.
Veröffentlicht: (2001) -
Ca2+ and synaptic plasticity
von: Cavazzini, M, et al.
Veröffentlicht: (2005) -
Ca2+ and synaptic plasticity.
von: Cavazzini, M, et al.
Veröffentlicht: (2005) -
The effects of lysosomal Ca2+ release on membrane depolarisation and synaptic plasticity in hippocampus
von: Foster, W
Veröffentlicht: (2017)