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猫腓骨短肌肌梭中静态γ轴突刺激引发的袋1纤维糖原耗竭。

Glycogen depletion of bag1 fibers elicited by stimulation of static gamma axons in cat peroneus brevis muscle spindles.

作者信息

Emonet-Dénand F, Jami L, Laporte Y, Tankov N

出版信息

J Physiol. 1980 May;302:311-21. doi: 10.1113/jphysiol.1980.sp013244.

Abstract
  1. The distribution of static fusimotor axons to intrafusal muscle fibres in cat peroneus brevis spindles has been studied with the glycogen depletion method. 2. In each of six experiments three to seven static axons were stimulated. The muscle was subsequently quick-frozen and cut in serial transverse sections that were stained for glycogen. In each muscle, nearly all the spindles were examined for depletion. 3. Intrafusal muscle fibres displaying zones of complete glycogen depletion were observed in fifty-two whole spindles and seven half-spindles. Chain fibres were depleted in forty-eight (92%) of the whole spindles, bag2 fibres in thirty-five spindles (67%) and bag1 fibres in nineteen spindles (36%). 4. Seven other experiments were performed to test whether small amplitude sinusoidal stretching (30--100 Hz) of the muscle might produce glycogen depletion in bag1 fibres. Two hundred and seven spindles were examined. In nearly all of them the glycogen content of the intrafusal muscle fibres was normal. Two muscles had limited atrophic portions within which a few depleted spindles were found. 5. These experiments show that the intrafusal distribution of static gamma axons is not restricted to chain and bag2 fibres but that in a significant number of spindles the bag1 fibres are also supplied by static gamma axons.
摘要
  1. 采用糖原耗竭法研究了猫腓骨短肌梭内静态肌梭运动轴突向梭内肌纤维的分布情况。2. 在六个实验中,每个实验刺激三到七条静态轴突。随后将肌肉快速冷冻,并切成连续的横切片,对其进行糖原染色。对每块肌肉中几乎所有的肌梭都进行了耗竭检查。3. 在52个完整的肌梭和7个半肌梭中观察到了显示完全糖原耗竭区域的梭内肌纤维。在48个(92%)完整肌梭中,链纤维出现耗竭,在35个肌梭(67%)中袋2纤维出现耗竭,在19个肌梭(36%)中袋1纤维出现耗竭。4. 进行了另外七个实验,以测试对肌肉进行小幅度正弦拉伸(30 - 100赫兹)是否会导致袋1纤维出现糖原耗竭。检查了207个肌梭。几乎所有肌梭内的梭内肌纤维糖原含量均正常。有两块肌肉有局限性萎缩区域,在其中发现了一些耗竭的肌梭。5. 这些实验表明,静态γ轴突在梭内的分布并不局限于链纤维和袋2纤维,而是在相当数量的肌梭中,袋1纤维也由静态γ轴突提供支配。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a8d/1282849/c46094ba1688/jphysiol00723-0323-a.jpg

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