Activity-Dependent Disinhibition. I. Repetitive Stimulation Reduces IPSP Driving Force and Conductance in the Hippocampus in Vitro.¶
Thompson, S. M., & Gahwiler, B. H. (1989). Activity-Dependent Disinhibition. I. Repetitive Stimulation Reduces IPSP Driving Force and Conductance in the Hippocampus in Vitro. Journal of Neurophysiology, 501-511.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Inhibitory Postsynaptic Potential
- During intense inhibition, shifts in ionic gradients can change `E_i` and weaken driving force; Thompson and Gähwiler demonstrated activity-dependent reduction of IPSP driving force and conductance in hippocampal tissue.
This sourcePrimary evidence for activity-dependent changes in inhibitory driving force and conductance.
- During intense inhibition, shifts in ionic gradients can change `E_i` and weaken driving force; Thompson and Gähwiler demonstrated activity-dependent reduction of IPSP driving force and conductance in hippocampal tissue.
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Links previously used in the corpus¶
Before the registry existed this work was also linked 1 other way.
Registry ID ref:a269c7ab42e9 · see in the full table