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大鼠内侧比目鱼肌疲劳收缩过程中的力-频率关系。

Force-frequency relationship during fatiguing contractions of rat medial gastrocnemius muscle.

机构信息

Faculty of Kinesiology, University of Calgary, Calgary, AB, T2N 1N4, Canada.

Faculty of Medicine, University of Calgary, Calgary, AB, T2N 1N4, Canada.

出版信息

Sci Rep. 2020 Jul 14;10(1):11575. doi: 10.1038/s41598-020-68392-6.

Abstract

The force-frequency relationship presents the amount of force a muscle can produce as a function of the frequency of activation. During repetitive muscular contractions, fatigue and potentiation may both impact the resultant contractile response. However, both the apparent fatigue observed, and the potential for activity-dependent potentiation can be affected by the frequency of activation. Thus, we wanted to explore the effects that repetitive stimulation had on the force-frequency relationship. The force-frequency relationship of the rat medial gastrocnemius muscle was investigated during consecutive bouts of increasing fatigue with 20 to 100 Hz stimulation. Force was measured prior to the fatiguing protocol, during each of three levels of fatigue, and after 30 min of recovery. Force at each frequency was quantified relative to the pre-fatigued 100 Hz contractions, as well as the percentage reduction of force from the pre-fatigued level at a given frequency. We observed less reduction in force at low frequencies compared to high frequencies, suggesting an interplay of fatigue and potentiation, in which potentiation can "protect" against fatigue in a frequency-dependent manner. The exact mechanism of fatigue is unknown, however the substantial reduction of force at high frequency suggests a role for reduced force per cross-bridge.

摘要

力频率关系表示肌肉能够产生的力的大小与激活频率的关系。在重复肌肉收缩过程中,疲劳和增强作用都会对收缩反应产生影响。然而,观察到的明显疲劳以及活动依赖性增强的潜力都会受到激活频率的影响。因此,我们想探讨重复刺激对力频率关系的影响。在连续增加疲劳的过程中,使用 20 到 100 Hz 的刺激来研究大鼠内侧腓肠肌的力频率关系。在疲劳方案之前、疲劳的三个阶段中的每一个阶段以及 30 分钟恢复后测量力。将每个频率的力相对于预疲劳的 100 Hz 收缩进行量化,以及在给定频率下相对于预疲劳水平的力减少的百分比。我们观察到低频时的力减少程度低于高频时,这表明疲劳和增强作用之间存在相互作用,其中增强作用可以以频率依赖的方式“保护”免受疲劳的影响。疲劳的确切机制尚不清楚,但是高频时力的大幅度减少表明了每个横桥的力减少的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6aa/7360560/0ca7c3eab13f/41598_2020_68392_Fig1_HTML.jpg

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