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海蛞蝓(Clione limacina)运动的控制。IV. 12型中间神经元的作用。

Control of locomotion in marine mollusc Clione limacina. IV. Role of type 12 interneurons.

作者信息

Beloozerova I N, Orlovsky G N, Pavlova G A

出版信息

Exp Brain Res. 1985;58(2):285-93. doi: 10.1007/BF00235310.

Abstract

Type 12 interneurons in pedal ganglia of Clione limacina exerted a strong influence upon the locomotor generator during "intense" swimming. These neurons generated "plateau" potentials, i.e. their membrane potential had two stable states: the "upper" one when a neuron was depolarized, and the "down" one, separated by 30-40 mV. The interneurons could remain in each state for a long time. Short depolarizing and hyperpolarizing current pulses, as well as excitatory and inhibitory postsynaptic potentials, could transfer the interneurons from one state to another. When the pedal ganglia generated the locomotory rhythm, type 12 neurons received an EPSP and passed to the "upper" state in the V2-phase of a locomotor cycle. They remained at this state until the beginning of the D1-phase when they received an IPSP and passed to the "down" state. The EPSP in type 12 neurons was produced by type 8d neurons, and the IPSP by type 7 neurons. Type 12 neurons exerted inhibitory influences upon many neurons active in the V1 and V2 phases, and excitatory influences upon the D-phase interneurons (type 7). The functional role of type 12 neurons was to limit the activity of neurons discharging in the V-phase of a locomotory cycle. In addition, they enhanced the excitation of the D-phase neurons and promoted, thus, the transition from the V-phase to the D-phase.

摘要

在“剧烈”游泳过程中,海天使(Clione limacina)足神经节中的12型中间神经元对运动发生器产生了强烈影响。这些神经元产生“平台”电位,即它们的膜电位有两种稳定状态:一种是神经元去极化时的“上”状态,另一种是“下”状态,两者相差30 - 40 mV。中间神经元可以在每种状态下保持很长时间。短的去极化和超极化电流脉冲,以及兴奋性和抑制性突触后电位,可以使中间神经元从一种状态转变为另一种状态。当足神经节产生运动节律时,12型神经元在运动周期的V2期接收一个兴奋性突触后电位(EPSP)并进入“上”状态。它们一直保持在这个状态,直到D1期开始,此时它们接收一个抑制性突触后电位(IPSP)并进入“下”状态。12型神经元的EPSP由8d型神经元产生,IPSP由7型神经元产生。12型神经元对许多在V1和V2期活跃的神经元施加抑制性影响,对D期中间神经元(7型)施加兴奋性影响。12型神经元的功能作用是限制在运动周期V期放电的神经元的活动。此外,它们增强了D期神经元的兴奋,从而促进了从V期到D期的转变。

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