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蟑螂腿部毛板传入神经与运动神经元之间的联系。

Connexions between hair-plate afferents and motoneurones in the cockroach leg.

作者信息

Pearson K G, Wong R K, Fourtner C R

出版信息

J Exp Biol. 1976 Feb;64(1):251-66. doi: 10.1242/jeb.64.1.251.

Abstract
  1. The trochanteral hair-plate afferents in the metathoracic leg of the cockroach, Periplaneta americana, were stimulated electrically and at the same time intracellular recordings were made from either motoneurones, interneurones or afferent terminals within the methathoracic ganglion. 2. Activity in the hair-plate afferents evoked short latency excitatory postsynaptic potentials (EPSPs) in femur flexor motoneurones. The latency of the IPSPs was on average 1-8 ms longer than the latency ofthe EPSPs. 3. Intracellular recordings from terminal branches of the hair-plate afferents showed that the delay between the peak of the afferent terminal spike and the beginning of the EPSPs is about 0.4 ms. This finding, together with the observations that the amplitude of the EPSPs is increased by the passage of hyperpolarizing current and decreased following high-frequency stimulation, indicates that the EPpSPs are evoked via-monosynaptic chemical synaptic junctions. 4. The observations of the long latency of the IPSPs, the need for a number of afferents to be simultaneously acive for them to be evoked and the occasional variability in latency, all indicate that the IPSPs are evoked via a disynaptic pathway...
摘要
  1. 对美洲大蠊后胸腿节的转子毛板传入神经进行电刺激,同时在其后胸神经节内的运动神经元、中间神经元或传入神经末梢进行细胞内记录。2. 毛板传入神经的活动在股节屈肌运动神经元中诱发了短潜伏期兴奋性突触后电位(EPSP)。抑制性突触后电位(IPSP)的潜伏期平均比EPSP的潜伏期长1 - 8毫秒。3. 对毛板传入神经终末分支的细胞内记录显示,传入神经终末锋电位峰值与EPSP开始之间的延迟约为0.4毫秒。这一发现,连同超极化电流通过时EPSP幅度增加以及高频刺激后减小的观察结果,表明EPSP是通过单突触化学突触连接诱发的。4. 对IPSP潜伏期长、需要多个传入神经同时活动才能诱发以及潜伏期偶尔变化的观察,都表明IPSP是通过双突触途径诱发的……

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