首页> 外文期刊>Journal of Neurophysiology >Functional analysis of the sensory motor pathway of resistance reflex in crayfish. I. Multisensory coding and motor neuron monosynaptic responses.
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Functional analysis of the sensory motor pathway of resistance reflex in crayfish. I. Multisensory coding and motor neuron monosynaptic responses.

机译:小龙虾抵抗反射感觉运动通路的功能分析。 I.多感觉编码和运动神经元单突触反应。

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An in vitro preparation of the fifth thoracic ganglion of the crayfish was used to study in detail the negative feedback loop involved in the control of passive movements of the leg. Release-sensitive primary afferents of from the coxo-basipodite chordotonal organ (CBCO), a proprioceptor whose strand is released by upward movement of the leg, monosynaptically connect to depressor motor neurons (Dep MNs). Extracellular identification of sensory units from the CBCO neurogram allowed us to determine the global coding of a sine-wave movement, imposed from the most released position of the CBCO strand. Intracellular recordings from sensory terminals (CBTs) and ramp movement stimulations applied to the CBCO strand allowed us to characterize two groups of release-sensitive CBCO fibers. The first group, divided into two subgroups (phasic and phaso-tonic), is characterized by discontinuous firing patterns: phasic CBTs fired exclusively during release movements; phaso-tonic CBTs displayed both a phasic firing and a tonic discharge during the more released plateaus. The second group was continuously firing whatever the movement, with higher frequencies during the release phase of the movement stimulation. All CBTs displayed a marked sensitivity for release movements while only the phaso-tonic ones showed a clear sensitivity to maintained positions. Surprisingly, no pure tonic sensory fibers were encountered. Systematic intracellular recordings from all resistant Dep MNs, performed in high divalent cation saline, allowed us to describe two shapes of monosynaptic resistance reflex responses. A phasic response was characterized by bursts of excitatory postsynaptic potentials (EPSPs) occurring exclusively during CBCO strand release movements. A phaso-tonic response was characterized by a progressive depolarization occurring all along the release phase of the stimulation: during maintained released positions, the amplitude of the sustained depolarization was position dependent; in addition, each release movement produced a phasic burst of EPSPs in the MN. The parallel study of the Dep MN properties failed to point out any correlation between the type of reflex response recorded from the MN and the MN intrinsic properties, which would indicate that the type of MN response is entirely determined by the afferent messages it receives.
机译:小龙虾第五个神经节的体外制备用于详细研究与控制腿的被动运动有关的负反馈回路。蛇麻石-斜纹肌腱索器官(CBCO)的释放敏感初级传入神经,其本体链通过腿的向上运动而释放,并与降压运动神经元(Dep MNs)突触连接。从CBCO神经图的感觉单元的细胞外识别使我们能够确定从CBCO链的最释放位置施加的正弦波运动的全局编码。来自感觉末端(CBT)的细胞内记录和应用于CBCO链的斜坡运动刺激使我们能够表征两组对释放敏感的CBCO纤维。第一组分为两个子组(相声和相声),其特征是不连续的发射方式:仅在释放运动中发射相CBT。在更多释放的高原期间,相张性CBT表现出相发和补品放电。第二组在运动刺激的释放阶段以更高的频率连续发射任何运动。所有CBT对释放运动均显示出显着的敏感性,而仅相张性对保持位置具有明显的敏感性。令人惊讶的是,没有遇到纯的滋补感觉纤维。在高二价阳离子盐水中进行的所有抗性Dep MN的系统细胞内记录,使我们能够描述两种形式的单突触抗性反射反应。阶段性反应的特征是仅在CBCO链释放过程中发生的兴奋性突触后突触(EPSP)爆发。阶段性反应的特征是在刺激的整个释放阶段都发生进行性去极化:在维持释放位置期间,持续去极化的幅度与位置有关;此外,每次释放运动都会在MN中产生阶段性的EPSP。对Dep MN属性的并行研究未能指出从MN记录的反射响应的类型与MN固有属性之间的任何相关性,这表明MN响应的类型完全由其接收的传入消息确定。

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