Vassilakos George, James Rob S, Cox Valerie M
Department of Biomolecular and Sport Sciences, Faculty of HLS, Coventry University, James Starley Building, Coventry CV15FB, United Kingdom.
Can J Physiol Pharmacol. 2009 Mar;87(3):203-10. doi: 10.1139/y09-002.
The effects of electrical stimulation frequency on force, work loop power output, and fatigue of mouse soleus muscle were investigated in vitro at 35 degrees C. Increasing stimulation frequency did not significantly affect maximal isometric tetanic stress (overall mean +/- SD, 205 +/- 16.6 kN.m-2 between 70 and 160 Hz) but did significantly increase the rate of force generation. The maximal net power output during work loops significantly increased with stimulation frequency: 18.2 +/- 3.7, 22.5 +/- 3.3, 26.8 +/- 3.7, and 28.6 +/- 3.4 W.kg(-1) at 70, 100, 130, and 160 Hz, respectively. The stimulation frequency that was used affected the pattern of fatigue observed during work loop studies. At stimulation frequencies of 100 and 130 Hz, there were periods of mean net negative work during the fatigue tests due to a slowing of relaxation rate. In contrast, mean net work remained positive throughout the fatigue test when stimulation frequencies of 70 and 160 Hz were used. The highest cumulative work during the fatigue test was performed at 70 and 160 Hz, followed by 130 Hz, then 100 Hz. Therefore, stimulation frequency affects power output and the pattern of fatigue in mouse soleus muscle.
在35摄氏度的体外环境下,研究了电刺激频率对小鼠比目鱼肌的力量、功环功率输出和疲劳的影响。增加刺激频率对最大等长强直应力没有显著影响(总体平均值±标准差,在70至160赫兹之间为205±16.6千牛·米-2),但显著提高了力量产生的速率。功环期间的最大净功率输出随刺激频率显著增加:在70、100、130和160赫兹时分别为18.2±3.7、22.5±3.3、26.8±3.7和28.6±3.4瓦·千克-1。所使用的刺激频率影响了功环研究期间观察到的疲劳模式。在100和130赫兹的刺激频率下,由于放松速率减慢,疲劳测试期间存在平均净负功的阶段。相比之下,当使用70和160赫兹的刺激频率时,整个疲劳测试期间平均净功保持为正。疲劳测试期间最高的累积功是在70和160赫兹下完成的,其次是130赫兹,然后是100赫兹。因此,刺激频率会影响小鼠比目鱼肌的功率输出和疲劳模式。