首页> 外文期刊>American Journal of Physical Medicine and Rehabilitation >Effect of electrical stimulation to prevent muscle atrophy on morphologic and histologic properties of hindlimb suspended rat hindlimb muscles.
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Effect of electrical stimulation to prevent muscle atrophy on morphologic and histologic properties of hindlimb suspended rat hindlimb muscles.

机译:电刺激预防肌肉萎缩对后肢悬吊大鼠后肢肌肉形态和组织学特性的影响。

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OBJECTIVE: To determine the morphologic and histologic effects of electrical stimulation (ES) used to prevent muscle atrophy, and to investigate the effects of ES at different stimulation frequencies in preventing atrophy in different muscle fiber types. DESIGN: Rats in the hindlimb suspended (HS) plus ES group were subjected to 20- and 30-Hz stimulation (ES1, ES2) every other day for 2 wks. RESULTS: In soleus, the muscle weight, muscle fiber cross-sectional area, and the number of type I muscle fibers were significantly decreased in the HS and HS + ES2 groups, whereas they were maintained in the HS + ES1 group. This indicated that ES at 20 Hz could suppress muscle atrophy and retain muscle fiber type proportions, based on histologic properties. In extensor digitorum longus, the muscle weight, muscle fiber cross-sectional area, and the number of type II muscle fibers were significantly decreased in the HS group, whereas they were maintained in the HS + ES groups. This indicated that ES at either 20 Hz or 30 Hz could suppress muscle atrophy, and retain muscle fiber type proportions, based on histologic properties. ES at 30 Hz also had positive effects in maintaining the extensor digitorum longus muscle. CONCLUSIONS: These results suggest that short periods of low-intensity, low-stimulation frequency (20 Hz) ES of muscle during periods of inactivity could maintain changes in both morphologic and histologic properties of the slow-twitch muscle fibers (soleus). Short periods of low-intensity, high-stimulation frequency (30 Hz) ES of muscle during periods of inactivity could maintain changes in both morphologic and histologic properties of the fast-twitch muscle fibers (extensor digitorum longus).
机译:目的:确定电刺激(ES)预防肌肉萎缩的形态学和组织学效果,并研究不同刺激频率下ES预防不同类型肌肉纤维萎缩的作用。设计:后肢悬吊(HS)加ES组的大鼠每隔一天接受20 Hz和30 Hz刺激(ES1,ES2),持续2周。结果:在比目鱼肌中,HS和HS + ES2组的肌肉重量,肌纤维横截面积和I型肌纤维数量显着减少,而在HS + ES1组中则保持不变。这表明,根据组织学性质,20 Hz的ES可以抑制肌肉萎缩并保留肌肉纤维类型的比例。在趾长伸肌中,HS组的肌肉重量,肌肉纤维横截面积和II型肌纤维的数量显着减少,而HS + ES组则保持不变。这表明,根据组织学性质,在20 Hz或30 Hz的ES均可抑制肌肉萎缩并保留肌肉纤维类型比例。 30 Hz的ES在维持伸指长肌方面也有积极作用。结论:这些结果表明,在不活动期间,肌肉的短期低强度,低刺激频率(20 Hz)ES可以维持慢抽动性肌肉纤维(比目鱼)的形态和组织学特性的变化。在不活动期间,肌肉的低强度,高刺激频率(30 Hz)ES的短时间可以维持快速抽动的肌肉纤维(指趾长肌)的形态和组织学特性的变化。

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