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Responses of tendon organs in a lizard.

机译:蜥蜴的肌腱器官反应。

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摘要

1. In the lizard Tiliqua the tendons of the caudo-femoralis muscle are supplied by a nerve which runs separately from the muscle nerve. 2. Recordings of afferent discharges in the tendon nerve revealed the presence in the tendon of stretch-sensitive mechanoreceptors which responded to both passive changes in limb position and to muscle contraction. 3. A preparation of the tendon and its nerve were dissected free of surrounding tissue and studied in isolation while recording the activity of single functional units. The minimum tension in the tendon necessary for a maintained response from a receptor lay in the range 5-35 g (mean 16 g) and the firing rates at these tensions were in the range 5-14 impulses/sec (mean 9 impulses/sec). 4. Receptors showed a steep increase in firing rate with increase in tension up to about 120 g. The firing rate 30 sec after the onset of a tension change did not exceed 40 impulses/sec. 5. During the tension change the receptor responded with a burst of impulses whose frequency depended on the velocity of stretch. With large, rapidly rising tension steps peak firing rates of up to 300 impulses/sec were observed. 6. Tension and length changes recorded during rapid tendon-stretches were very similar, with little sag in tension at the new length. The response of all units however continued to fall throughout the stretch. Some of the possible causes of this adaptation have been discussed.
机译:1.在蜥蜴Tiliqua中,股腓肌的肌腱由与肌肉神经分开的神经提供。 2.肌腱神经传入放电的记录表明,在肌腱中存在牵拉敏感的机械感受器,该感受器对肢体位置的被动变化和肌肉收缩均作出反应。 3.将肌腱及其神经的制备物从周围组织中解剖下来,并在记录单个功能单元活性的同时进行单独研究。为维持受体反应所必需的最小肌腱张力在5-35 g(平均16 g)范围内,在这些张力下的发射速率在5-14脉冲/秒的范围内(平均9脉冲/秒) )。 4.受体显示出射速的急剧增加,直至约120 g的张力增加。张力变化开始后30秒的发射速率不超过40脉冲/秒。 5.在张力变化期间,感受器以脉冲的形式响应,脉冲的频率取决于拉伸的速度。使用大的,迅速上升的张力步阶时,观察到峰值放电速率高达300脉冲/秒。 6.快速的肌腱拉伸过程中记录的张力和长度变化非常相似,在新长度下几乎没有松弛的下垂。然而,在整个过程中,所有部队的反应持续下降。已经讨论了这种适应的一些可能原因。

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