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每日体内神经肌肉刺激对固定大鼠后肢肌肉的影响。

Daily in vivo neuromuscular stimulation effects on immobilized rat hindlimb muscles.

作者信息

Gardiner P F, Lapointe M A

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1982 Oct;53(4):960-6. doi: 10.1152/jappl.1982.53.4.960.

Abstract

The purpose of the investigation was to determine the effects of a daily regimen of near-maximal contractions, produced via in vivo electrical stimulation of peripheral nerve, on functional and histochemical properties of rat hindlimb muscles immobilized for 28 days in a plaster cast. Rats had knee and ankle joints of one hindlimb immobilized; then while anesthetized, half of the group was subjected to a daily regimen of 480 semifused tetanic contractions (50 Hz) via fine-wire electrodes chronically implanted around the sciatic nerve. Immobilization caused significant decreases in soleus and gastrocnemius muscle weights, fiber cross-sectional areas, and twitch and tetanic strength measured in situ. In addition, immobilized soleus muscles had faster time to peak tension (TPT) and higher proportions of fast-twitch fibers, whereas immobilized gastrocnemius muscles demonstrated faster half-relaxation times (RT1/2) and total twitch durations (TPT plus RT1/2). The only significant effects of the imposed contractions were evident in the gastrocnemius in which stimulation prevented the shortening of RT1/2 and total twitch duration and resulted in significantly higher relative tensions at 50 Hz and higher fatigue resistance. Muscle activity of this type imposed on immobilized muscle is ineffective in attenuating atrophy but can, in fast muscle such as gastrocnemius, prevent changes in twitch characteristics resulting from immobilization, as well as augment contractile responses during semifused and fatiguing contractions.

摘要

本研究的目的是确定通过对周围神经进行体内电刺激产生的每日近最大收缩方案,对用石膏固定28天的大鼠后肢肌肉的功能和组织化学特性的影响。将大鼠一侧后肢的膝关节和踝关节固定;然后在麻醉状态下,该组中的一半大鼠通过长期植入坐骨神经周围的细线电极接受每日480次半融合强直收缩(50Hz)的方案。固定导致比目鱼肌和腓肠肌的肌肉重量、纤维横截面积以及原位测量的抽搐和强直力量显著降低。此外,固定的比目鱼肌达到峰值张力的时间(TPT)更快,快肌纤维比例更高,而固定的腓肠肌表现出更快的半松弛时间(RT1/2)和总抽搐持续时间(TPT加RT1/2)。施加收缩的唯一显著影响在腓肠肌中明显,其中刺激阻止了RT1/2和总抽搐持续时间的缩短,并导致在50Hz时相对张力显著更高且抗疲劳能力更强。这种类型的肌肉活动施加于固定的肌肉上,在减轻萎缩方面无效,但在腓肠肌等快肌中,可以防止因固定引起的抽搐特性变化,以及增强半融合和疲劳收缩期间的收缩反应。

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