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水蛭离体神经索神经元中的节律性游泳活动。

Rhythmic swimming activity in neurones of the isolated nerve cord of the leech.

作者信息

Kristan W B, Calabrese R L

出版信息

J Exp Biol. 1976 Dec;65(3):643-68. doi: 10.1242/jeb.65.3.643.

Abstract
  1. Repeating bursts of motor neurone impulses have been recorded from the nerves of completely isolated nerve cords of the medicinal leech. The salient features of this burst rhythm are similar to those obtained in the semi-intact preparation during swimming. Hence the basic swimming rhythm is generated by a central oscillator. 2. Quantitative comparisons between the impulse patterns obtained from the isolated nerve cord and those obtained from a semi-intact preparation show that the variation in both dorsal to ventral motor neurone phasing and burst duration with swim cycle period differ in these two preparations. 3. The increase of intersegmental delay with period, which is a prominent feature of swimming behaviour of the intact animal, is not seen in either the semi-intact or isolated cord preparations. 4. In the semi-intact preparation, stretching the body wall or depolarizing an inhibitory motor neurone changes the burst duration of excitatory motor neurones in the same segment. In the isolated nerve cord, these manipulations also change the period of the swim cycle in the entire cord. 5. These comparisons suggest that sensory input stabilizes the centrally generated swimming rhythm, determines the phasing of the bursts of impulses from dorsal and ventral motor neurones, and matches the intersegmental delay to the cycle period so as to maintain a constant body shape at all rates of swimming.
摘要
  1. 从药用水蛭完全分离的神经索的神经中记录到运动神经元冲动的重复爆发。这种爆发节律的显著特征与在半完整制剂游泳期间获得的特征相似。因此,基本的游泳节律是由中央振荡器产生的。2. 从分离的神经索获得的冲动模式与从半完整制剂获得的冲动模式之间的定量比较表明,在这两种制剂中,背侧到腹侧运动神经元相位和爆发持续时间随游泳周期的变化是不同的。3. 节间延迟随周期增加,这是完整动物游泳行为的一个突出特征,在半完整或分离的神经索制剂中均未观察到。4. 在半完整制剂中,拉伸体壁或使抑制性运动神经元去极化会改变同一节段中兴奋性运动神经元的爆发持续时间。在分离的神经索中,这些操作也会改变整个神经索中游泳周期的时长。5. 这些比较表明,感觉输入稳定了中枢产生的游泳节律,决定了背侧和腹侧运动神经元冲动爆发的相位,并使节间延迟与周期时长相匹配,从而在所有游泳速度下保持恒定的身体形状。

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