刺激频率对离体小鼠指长伸肌力、力和疲劳的影响。

Sharn Shelley, R. James, S. Eustace, Emma L. J. Eyre, J. Tallis
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引用次数: 2

摘要

本研究检测了刺激频率(140、200、230和260 Hz)对8-10周龄CD-1雌性小鼠指长伸肌(EDL)的等长力、工作环(WL)功率和抗疲劳能力的影响。刺激频率对小鼠离体EDL的等长特性有显著影响,刺激频率的增加引起的等长力增加,激活速度加快,松弛时间延长(P = 0.137)。增加刺激频率可增加最大WL功率输出(P <0.001);140 Hz, 71.3±3.5;200hz, 105.4±4.1;230 Hz, 115.5±4.1;260 Hz, 121.1±4.1 w.k kg-1),但在连续WL时导致的疲劳速率显著加快(P <0.004)。WL形状表明,在缩短结束时肌肉松弛受损,随后增加的负功似乎有助于230和260 Hz的疲劳,但在较低的刺激频率下则没有。除了疲劳方案开始时,230和260 Hz产生的工作量大于140 Hz (P <0.039),累积工作量不受增产频率的影响。我们证明了刺激频率影响力量、功率和疲劳,但不同的收缩性能评估之间的影响是不一致的。因此,未来研究孤立骨骼肌收缩特性的工作应考虑在测试最大功率时增加刺激频率,而不是最大力所需的刺激频率,但在疲劳评估中使用次最大刺激频率,以避免非典型体内功能的高度负功。
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Effect of stimulation frequency on force, power, and fatigue of isolated mouse extensor digitorum longus muscle.
This study examined the effect of stimulation frequency (140, 200, 230 and 260 Hz) on isometric force, work loop (WL) power, and the fatigue resistance of extensor digitorum longus (EDL) muscle (n=32), isolated from 8-10-week-old CD-1 female mice. Stimulation frequency had significant effects on isometric properties of isolated mouse EDL, whereby increasing stimulation frequency evoked increased isometric force, quicker activation, and prolonged relaxation (P <0.047), until 230 Hz and above, thereafter force and activation did not differ (P >0.137). Increasing stimulation frequency increased maximal WL power output (P <0.001; 140 Hz, 71.3±3.5; 200 Hz, 105.4±4.1; 230 Hz, 115.5±4.1; 260 Hz, 121.1±4.1 W.kg-1), but resulted in significantly quicker rates of fatigue during consecutive WL's (P <0.004). WL shapes indicate impaired muscle relaxation at the end of shortening and subsequent increased negative work appeared to contribute to fatigue at 230 and 260 Hz, but not at lower stimulation frequencies. Cumulative work was unaffected by stimulation frequency, except at the start of fatigue protocol where 230 and 260 Hz produced more work than 140 Hz (P <0.039). We demonstrate that stimulation frequency affects force, power, and fatigue, but effects are not uniform between different assessments of contractile performance. Therefore, future work examining contractile properties of isolated skeletal muscle should consider increasing stimulation frequency beyond that needed for maximal force when examining maximal power but utilise a sub-maximal stimulation frequency for fatigue assessments to avoid high degree of negative work atypical of in vivo function.
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