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Stresses in human leg muscles in running and jumping determined by force plate analysis and from published magnetic resonance images

机译:力板分析和已发表的磁共振图像确定了跑步和跳跃中人腿肌肉的压力

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摘要

Calculation of the stresses exerted by human muscles requires knowledge of their physiological cross-sectional area (PCSA). Magnetic resonance imaging (MRI) has made it possible to measure PCSAs of leg muscles of healthy human subjects, which are much larger than the PCSAs of cadaveric leg muscles that have been used in previous studies, We have used published MRI data, together with our own force-plate records and films of running and jumping humans, to calculate stresses in the major groups of leg muscles. Peak stresses in the triceps surae ranged from 100 kN m(-2) during take off for standing high jumps to 150 kN m(-2) during running at 4 m s(-1). In the quadriceps, peak stresses ranged from 190 kN m(-2) during standing long jumps to 280 kN m(-2) during standing high jumps, Similar stresses were calculated from published measurements of joint moments, These stresses are lower than those previously calculated from cadaveric data, but are in the range expected from physiological experiments on isolated muscles. [References: 44]
机译:计算人的肌肉施加的压力需要了解其生理横截面积(PCSA)。磁共振成像(MRI)使得测量健康人类受试者腿部肌肉的PCSA成为可能,其比以前研究中使用的尸体腿部肌肉的PCSA更大。我们将已发布的MRI数据与我们的拥有跑步和跳跃人类的测力板记录和影片,以计算主要腿部肌肉群的压力。在三头肌肱三头肌的最高应力范围从站立跳高起跳时的100 kN m(-2)到以4 m s(-1)运行时的150 kN m(-2)。在股四头肌中,峰值应力的范围从站立跳远时的190 kN m(-2)到站立跳高时的280 kN m(-2),从公布的关节力矩测量值可得出相似的应力,这些应力低于以前的应力。由尸体数据计算得出,但在离体肌肉的生理实验中预期的范围内。 [参考:44]

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