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Presynaptic inhibition: the mechanism of protection from habituation of the crayfish lateral giant fibre escape response.

机译:突触前抑制:防止小龙虾侧向巨纤维逃逸反应适应的机制。

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摘要

1. Mechanism of protection from habituation of the lateral giant escape reflex of the crayfish was studied. Experiments were designed to determine whether presynaptic inhibition of primary afferents for the reflex occurs following escape command neurone firing, and if so, whether it could account for protection of the first synapse from depression. 2. Synaptic transmission between afferents and interneurone A of the escape reflex is strongly inhibited following giant fibre spikes. 3. Giant fibre firing results in post-synaptic inhibition of interneurone A. However, inhibition of afferent input to interneurone A consistently outlasts both i.p.s.p.s and post-synaptic conductance increases in the neurone; the inhibition, therefore, is probably not exclusively post-synaptic. 4. Giant fibre firing results in excitability changes in sensory afferent terminals as measured by the amplitude of antidromic compound action potentials to focal electrical stimuli applied in the region of afferent terminals in the last abdominal ganglion. The time course of this effect parallels those of protection and inhibition of the first synapse. 5. The magnitude and time course of protection and inhibition of transmission to interneurone A parallel each other closely. Both processes considerably outlast measurable signs of post-synaptic inhibition. 6. We conclude that following giant fibre activity the first synapse of the lateral giant reflex is presynaptically inhibited and the presynaptic inhibition is responsible for the protection effect described in the preceding paper.
机译:1.研究了防止小龙虾的外侧巨逃逸反射适应的机制。设计实验以确定在逃避命令神经元放电后是否发生突触前突触前抑制突触的反射,如果是,则是否可以解释第一突触对抑郁的保护作用。 2.在巨大的纤维尖峰之后,强烈抑制了逃逸反射的传入神经和中间神经元A之间的突触传递。 3.巨大的纤维发射会导致突触后神经节A的抑制。但是,抑制传入神经节A的输入持续超过i.p.s.p.s和神经元中突触后电导的增加。因此,抑制作用可能不仅仅在突触后。 4.巨纤维发射导致感觉传入终末的兴奋性变化,这是通过对末次腹部神经节传入终末区域施加的局部电刺激的反激复合动作电位幅度进行测量的。这种作用的时间过程与第一突触的保护和抑制相平行。 5.保护和抑制向中间神经元A的传播的幅度和时间过程彼此紧密平行。这两个过程都大大超过了突触后抑制的可测量信号。 6.我们得出的结论是,继巨纤维活动之后,外侧巨反射的第一个突触被先突触抑制,而突触前的抑制是造成前文所述保护作用的原因。

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