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小龙虾螯的弦音器官受体与运动神经元群体之间的相互作用。

Interactions among an ensemble of chordotonal organ receptors and motor neurons of the crayfish claw.

作者信息

Lindsey B G, Gerstein G L

出版信息

J Neurophysiol. 1979 Mar;42(2):383-99. doi: 10.1152/jn.1979.42.2.383.

Abstract
  1. Action potentials of crayfish propodite-dactyl (PD) chordotonal organ receptors and two claw motor neurons, the opener inhibitor (OI) and slow closer excitor CE) were simultaneously monitored during imposed step and ramp movements of the dactyl or while the dactyl was held at various positions. 2. The activities of the cells during imposed displacements were analyzed using peristimulus time histograms and response and contour planes. The proprioceptive fields (PFs) of individual receptors resemble components of the more complex motor neuron PFs. Some receptors are briefly active after each successive opening step, while others do not respond to steps near the closed position but respond as the joint angle increases, becoming active when the claw is held open. Another type of receptor responds to closing movements. 3. Interactions among the various types of receptors and the two motor neurons were detected and analyzed by various statistical methods and intracellular recording techniques. The results indicate that receptors activated during opening movements and when the dactyl is held at open positions excite OI and CE via divergent functional connections. The efficacies of the connections made by a receptor may differ. Receptors activated by closing movements produce hyperpolarizing synaptic potentials in both efferents, possible directly or via interneurons. 4. It is concluded that several types of chordotonal organ receptors form an ensemble of parallel input channels, which modulates the activities of OI and CE and contributes to the generation of the spatial-temporal nonuniformities of their proprioceptive reflex responses.
摘要
  1. 在施加指节的阶跃和斜坡运动期间,或者当指节保持在不同位置时,同时监测小龙虾掌节 - 指节(PD)弦音器器官受体以及两个爪运动神经元(张开抑制剂(OI)和慢速闭合兴奋器(CE))的动作电位。2. 使用刺激时间直方图、反应和轮廓平面分析施加位移期间细胞的活动。单个受体的本体感受场(PFs)类似于更复杂的运动神经元PFs的组成部分。一些受体在每次连续张开步骤后短暂激活,而其他受体对接近闭合位置的步骤无反应,但随着关节角度增加而反应,当爪子保持张开时变得活跃。另一种类型的受体对闭合运动有反应。3. 通过各种统计方法和细胞内记录技术检测和分析各种类型的受体与两个运动神经元之间的相互作用。结果表明,在张开运动期间以及当指节保持在张开位置时被激活的受体通过发散的功能连接兴奋OI和CE。受体建立的连接效率可能不同。由闭合运动激活的受体在两个传出神经元中产生超极化突触电位,可能直接或通过中间神经元产生。4. 得出的结论是,几种类型的弦音器器官受体形成一组平行输入通道,调节OI和CE的活动,并有助于产生它们本体感受反射反应的时空不均匀性。

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