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PMID: 6254790 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Transient changes in the size of the extracellular space in the sensorimotor cortex of cats in relation to stimulus-induced changes in potassium concentration.

Experimental brain research ·Vol. 40 ·No. 4 ·1980-00-00 ·Pages 432-9

Dietzel I, Heinemann U, Hofmeier G, Lux HD

Abstract

The time course of local changes of the extracellular space (ES) was investigated by measuring concentration changes of repeatedly injected tetramethylammonium (TMA+) and choline (Ch+) ions for which cell membranes are largely impermeable. After stimulus-induced extracellular [K+] elevations the delta [TMA+] and delta [Ch+] signals recorded with nominally K+-selective liquid ion-exchanger microelectrodes increased by up to 100%, thus indicating a reduction of the ES down to one half of its initial size. The shrinkage was maximal at sites where the K+ release into the ES was also largest. At very superficial and deep layers, however, considerable increases in extracellular K+ concentration were not accompanied by significant reductions in the ES. These findings can be explained as a consequence of K+ movement through spatially extended cell structures. Calculations based on a model combining the spatial buffer mechanism of Kuffler and Nicholls (1966) to osmolarity changes caused by selective K+ transport through primarily K+ permeable membranes support this concept. Following stimulation additional iontophoretically induced [K+]0 rises were reduced in amplitude by up to 35%, even at sites where maximal decreases of the ES were observed. This emphasizes the importance of active uptake for K+ clearance out of the ES.

MeSH Terms
Animals Cats Choline/metabolism Electric Stimulation Extracellular Space/physiology Neurons/physiology Potassium/metabolism Seizures/physiopathology Somatosensory Cortex/physiology Synaptic Transmission Thalamic Nuclei/physiology
Chemicals
Choline Potassium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Dietzel I
Heinemann U
Hofmeier G
Lux H D
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40 references, click to expand
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Article Info
Journal
Experimental brain research
Abbr.
Exp Brain Res
ISSN
0014-4819
Published
1980-00-00
Pages
432-9
Language
English
Region
Germany
NLM ID
0043312
Subset
IM
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