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After-hyperpolarization and receptor potential attenuation following bursts of action potentials in an insect mechanoreceptor.

作者信息

French A S

出版信息

Can J Physiol Pharmacol. 1985 Jan;63(1):18-22. doi: 10.1139/y85-003.

DOI:10.1139/y85-003
PMID:3986687
Abstract

The receptor potential in the sensory neuron of the cockroach femoral tactile spine was recently observed by raising the axon into an oil bath and measuring the decrementally conducted receptor current. Although action potential discharge in this receptor adapts rapidly, there was no evidence of adaptation in the receptor potential. In the present work we report that bursts of action potentials in the neuron produce a prolonged after-hyperpolarization and attenuate the receptor potential. Both of these effects could be important in receptor adaptation and we sought to identify their origin. It was impossible to control ionic concentrations in the fluid surrounding the sensory neuron because of an effective glial barrier, but it was possible to infuse the tissues with chemical agents which are known to block ionic membrane processes. Cobalt and cadmium, which inhibit calcium influx, eliminated the effects of action potentials, and ouabain had similar effects. These results suggest that both a calcium-activated potassium conductance and an electrogenic sodium pump are involved in these phenomena. However, it is argued that the former is probably more important.

摘要

相似文献

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引用本文的文献

1
Nonlinear neuronal mode analysis of action potential encoding in the cockroach tactile spine neuron.
Biol Cybern. 1995 Oct;73(5):425-30. doi: 10.1007/BF00201477.
2
Removal of rapid sensory adaptation from an insect mechanoreceptor neuron by oxidizing agents which affect sodium channel inactivation.通过影响钠通道失活的氧化剂去除昆虫机械感受器神经元的快速感觉适应。
J Comp Physiol A. 1987 Aug;161(2):275-82. doi: 10.1007/BF00615247.