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A Roitbak

Publications and source records attributed to A Roitbak.

2 recordsLinked to original sources

Relationships between electrically induced slow negative potentials and changes in extracellular potassium concentrations in cerebral cortex of the cat.

Experiments were carried out on cats under deep nembutal anaesthesia. Local cortical stimulation evoked both a slow negative potential (SNP) and an increase in extracellular potassium ([K+]o) which were maximal in the upper cortical layers. The decline in the K(+)-potential in deeper layers was slower than in the upper ones so that with time [K+]o became equal in upper and deeper layers. No SNP was recorded at that time, perhaps explaining why K(+)-potential decay is of longer duration than the SNP. Transcallosal stimulation also evoked an SNP but gave a lesser difference in delta [K+]o in upper and deeper layers. The lower amplitude of the SNP evoked by transcallosal stimulation may be due to these circumstances. These data could clarify the mechanism of correlation disturbance between SNPs and K(+)-potentials in the cerebral cortex.

Animals↗

On the process of inhibition in the superficial neuropil of the cerebral cortex.

Experiments were carried out on cats under Nembutal anaesthesia. The electrodes were placed on the gyrus suprasylvius. The recording macroelectrode and the K+--sensitive microelectrode were placed between two stimulating electrodes (S1 and S2). A strong stimulus applied through S1 elicited a slow surface negative potential (SNP) and an increase in [K/]0. The change of K+ potential correlated in time with SNP but the decay of K+ potential lasted longer. At this time depression of the dendritic potential (DP)--EPSP of apcial dendrites--evoked by stimulation through S2 took place. The greater the negative shift and the [K/]0 increase the greater was the depression. Tetraethylammonium increased SNP and this correlated with a strong depression of DP. Application of KCl or acetylcholine solutions resulted in DP depression. It may be supposed that the depression of dendritic potentials expresses presynaptic inhibition in the cortical neuropile based on the action of K+ ions.

Animals↗