[120天模拟微重力条件下的体能训练对肱三头肌表面肌的收缩特性和肌肉肌腱僵硬度的影响]。

Iu A Koriak
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引用次数: 2

摘要

以4名年龄28.0岁的健康年轻女性为研究对象,研究了120天-5度头向下倾斜(HDT)床上休息和对策(体能训练)对人体三头肌表面肌肉力学性能的影响。结果表明,所研究的骨骼肌的收缩特性发生了较大的变化。在无对策的HDT后,最大自主收缩(MVC)下降了36% (P < 0.05),电诱发的150 Hz强直张力(P)和等距抽动收缩(P(t))分别下降了24% (P < 0.05)和12% (P < 0.05)。肌痉挛的峰值张力时间(TPT)显著增加了14% (P < 0.05),半松弛时间(1/2 RT)和总收缩时间(TCT)分别减少了19% (P < 0.05)和18% (P < 0.05)。还计算了P(o)和MVC之间的差异,以P(o)的百分比表示,称为力不足(P(d))。P(d)增加了40% (P < 0.001)。根据相对尺度计算的自发性收缩增加率明显降低,但电诱发的收缩没有明显变化。HDT加TPT后,1/2 RT和TCT分别较对照下降4%、7%和19%。训练使MVC下降3% (P > 0.05), P(t)和P(o)分别下降14%和9% (P > 0.05)。Pd显著降低10% (P < 0.05)。电诱发破伤风张力的增加速率在HDT期间没有显著变化,但等长自主张力发展的增加速率有所增加。体育锻炼提供了神经肌肉功能的储备,这减弱了卧床休息的效果。实验结果表明,HDT对神经和肌肉都产生了适应,并有相应的对策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Influence of physical training under conditions of 120-day simulated microgravity on contractile properties and musculo-tendinous stiffness of the triceps surae muscle].
The effect of a 120-day -5 degrees head-down tilt (HDT) bed rest with countermeasures (physical training) on the mechanical properties of the human triceps surae muscle was studied in four healthy young women aged 28.0. The results showed that the contractile properties of the skeletal muscle studied changed considerably. After HDT without countermeasures the maximal voluntary contraction (MVC) had decreased by 36% (P < 0.05), and the electrically evoked tetanic tension at 150 Hz (P) and isometric twitch contraction (P(t)) had decreased by 24% (P < 0.05) and 12 % (P < 0.05), respectively. Time-to-peak tension (TPT) of the twitch had significantly increased by 14% (P < 0.05), but half-relaxation time (1/2 RT), and total contraction time (TCT) had decreased by 19% (P < 0.05) and 18% (P < 0.05), respectively. The difference between P(o) and MVC expressed as a percentage of P(o) and referred to as force deficiency (P(d)), was also calculated. The P(d) had increased by 40% (P < 0.001). The rate of increase of voluntary contractions calculated according to a relative scale had significantly reduced, but for the electrically evoked contraction no substantial changes were observed. After HDT with countermeasures TPT, 1/2 RT and TCT had decreased by 4%, 7%, 19%, respectively in relation to the control condition. Training had caused a decrease of 3% (P > 0.05) in MVC, and P(t) and in P(o) of 14%, and of 9% (P > 0.05), respectively. The Pd had decreased significantly by 10% (P < 0.05). The rate of increase of electrically evoked tetanic tension did not change significantly during HDT with countermeasures but the rate of increase in isometric voluntary tension development was increased. Physical training provided a reserve of neuromuscular function, which attenuated the effect of bed rest. The experimental findings indicated that neural as well as muscle adaptation occurred in response to HDT with countermeasures.
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