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In situ measurements of skeletal muscle power output using new capacitive strain gauge.

机译:使用新的电容应变仪原位测量骨骼肌功率输出。

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摘要

Experiments are described in which a fatigue index is determined for the latissimus dorsi muscle of sheep in situ, using capacitive strain gauges. Parallel experiments for invasive and non-invasive measurements are conducted, measuring global contraction and relaxation rates and shortening duration for paced muscle. The results show that, above one pulse per burst (5 V, 100 microseconds pulsewidth), contraction rates (62 +/- 11 mm s-1) and relaxation rates (50 +/- 7 mm s-1) are constant for unloaded muscle. For one animal, fatigue testing with a 2.5 kg load at six pulses per burst shows shortening rates increasing to a maximum (80 mm s-1) after 30 s and reducing to 5 mm s-1 after 150 s. The decrease in shortening amplitude is used as a fatigue index, log displacement against time. Power output is load dependent, measuring 4.7 W kg-1 with a 2.5 kg load. There is good agreement between the invasive and non-invasive measurements, thus providing a method for monitoring changes in muscle parameters non-invasively during future pacing transformation.
机译:描述了使用电容应变仪在现场确定绵羊背阔肌疲劳指数的实验。进行了有创和无创测量的并行实验,测量了整体收缩率和松弛率并缩短了步速肌肉的持续时间。结果表明,在无脉冲的情况下,每个突发超过一个脉冲(5 V,100毫秒脉冲宽度),收缩率(62 +/- 11 mm s-1)和松弛率(50 +/- 7 mm s-1)恒定。肌肉。对于一只动物,以2.5 kg的负载进行疲劳测试,每次爆发六个脉冲显示,缩短率在30 s后增加到最大值(80 mm s-1),在150 s后减少到5 mm s-1。缩短幅度的减小用作疲劳指标,对数位移随时间变化。功率输出取决于负载,在2.5 kg负载下测量为4.7 W kg-1。侵入性和非侵入性测量之间有很好的一致性,因此提供了一种在将来的起搏转换过程中非侵入性地监测肌肉参数变化的方法。

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