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. 1968 Dec 1;52(6):855–875. doi: 10.1085/jgp.52.6.855

Slow and Spike Potentials Recorded from Retinula Cells of the Honeybee Drone in Response to Light

Fritz Baumann 1
PMCID: PMC2225847  PMID: 5722083

Abstract

Responses to light recorded by means of intracellular microelectrodes in isolated heads kept in oxygenated Ringer solution consist of a slow depolarization. Light adaptation increases the rates of depolarization and repolarization and decreases the amplitude of the response. Qualitatively these changes are similar to those observed in Limulus by Fuortes and Hodgkin. They are rapidly reversible during dark adaptation. In retinula cells of the drone eye a large single spike is recorded superimposed on the rising phase of the slow potential. The spike is a regenerative phenomenon; it can be triggered with electric current and is markedly reduced, sometimes abolished by tetrodotoxin. In rare cases cells were found which responded to light with a train of spikes. This behavior was only found under "unusual" experimental conditions; i.e., towards the end of a long experiment, during impalement, or at the beginning of responses to steps of strongly light-adapted preparations.

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Selected References

These references are in PubMed. This may not be the complete list of references from this article.

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