| Literature DB >> 6984493 |
P Grafe, J Rimpel, M M Reddy, G ten Bruggencate.
Abstract
A post-tetanic membrane hyperpolarization following repetitive neuronal activity is a commonly observed phenomenon in the isolated frog spinal cord as well as in neurons of other nervous tissues. We have now used double-barrelled Na+- and K+-ion-sensitive microelectrodes to measure the intracellular Na+- and K+-concentrations and also the extracellular K+-concentration of lumbar spinal motoneurons during and after repetitive stimulation of a dorsal root. The results show that the post-tetanic membrane hyperpolarization occurred at a time when the intracellular [Na+] reached its maximal value, intracellular [K+] had its lowest level and extracellular [K+] was still elevated. The hyperpolarization was blocked by ouabain and reduced by Li+. These data support the previous suggestion that an electrogenic Na+/K+ pump mode may be the mechanism underlying the post-tetanic membrane hyperpolarization.Entities:
Mesh:
Substances:
Year: 1982 PMID: 6984493 DOI: 10.1016/0306-4522(82)90243-3
Source DB: PubMed Journal: Neuroscience ISSN: 0306-4522 Impact factor: 3.590