Number and relative abundance of synaptic vesicles in functionally distinct priming states determine synaptic strength and short‐term plasticity
Authors/Creators
Description
Sources data for the 2025 J.Physiol. article
"Number and relative abundance of synaptic vesicles in functionally distinct priming states determine synaptic strength and short‐term plasticity" by Lin et al.
- Pooled_NTF_1p5_Ca_50cells_zenodo.pxp
Source data for Figures 1, 2 and 3.
- NTF_ionomycin_13_cells_zenodo.pxp
Source data for Figures 5 and 6.
- NTF_2mM_Ca_13cells_zenodo.pxp
- NTF_PdBu_12cells_zenodo.pxp
Source data for Figures 7 and 8.
- NTF_all_synapses_summary.pdf
Graphical representation summarizing changes in NTF-derived quantities.
The data files can be opened with IgorPro (v6 or higher). A free demo version of IgorPro for evaluation is available at <https://www.wavemetrics.com/>.
Please contact the corresponding author Holger Taschenberger (taschenberger@mpinat.mpg.de) for more information.
Files
NTF_all_synapses_summary.pdf
Files
(2.1 MB)
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