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首页> 外文期刊>Journal of Biomechanics >Mechanical work performed by the individual legs during uphill and downhill walking
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Mechanical work performed by the individual legs during uphill and downhill walking

机译:在上坡和下坡行走期间,各个腿部执行的机械工作

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摘要

Previous studies of the mechanical work performed during uphill and downhill walking have neglected the simultaneous negative and positive work performed by the leading and trailing legs during double support. Our goal was to quantify the mechanical work performed by the individual legs across a range of uphill and downhill grades. We hypothesized that during double support, (1) with steeper uphill grade, the negative work performed by the leading leg would become negligible and the trailing leg would perform progressively greater positive work to raise the center of mass (CoM), and (2) with steeper downhill grade, the leading leg would perform progressively greater negative work to lower the CoM and the positive work performed by the trailing leg would become negligible. 11 healthy young adults (6 M/5 F, 71.0±12.3. kg) walked at 1.25. m/s on a dual-belt force-measuring treadmill at seven grades (0, ±3, ±6, ±9°). We collected three-dimensional ground reaction forces (GRFs) and used the individual limbs method to calculate the mechanical work performed by each leg. As hypothesized, the trailing leg performed progressively greater positive work with steeper uphill grade, and the leading leg performed progressively greater negative work with steeper downhill grade (p<0.005). To our surprise, unlike level-ground walking, during double support the leading leg performed considerable positive work when walking uphill and the trailing leg performed considerable negative work when walking downhill (p<0.005). To understand how humans walk uphill and downhill, it is important to consider these revealing biomechanical aspects of individual leg function and interaction during double support.
机译:先前对上坡和下坡步行过程中的机械功的研究忽略了双支撑时前腿和后腿同时进行的负向和正向工作。我们的目标是量化在上坡和下坡坡度范围内各个腿部进行的机械功。我们假设在双重支持期间,(1)坡度较陡,前腿进行的负向工作将变得微不足道,而后腿将进行逐步更大的正向工作以提高质心(CoM),并且(2)如果下坡坡度较陡,则前腿将执行更大的负功以降低CoM,而后腿将执行正功,而忽略不计。 11名健康的年轻人(6 M / 5 F,71.0±12.3 kg)步行1.25。在7级(0,±3,±6,±9°)的双皮带测力跑步机上以m / s为单位。我们收集了三维地面反作用力(GRF),并使用单个肢体方法来计算每条腿执行的机械功。如假设的那样,后腿在较陡的上坡坡度上执行的负功逐渐增加,而前腿在下坡较陡的坡道上执行的负功逐渐增加(p <0.005)。令我们惊讶的是,与在地面上行走不同,在双重支撑期间,上坡行走时前腿进行了大量的积极工作,而下坡行走时后腿进行了相当的消极工作(p <0.005)。要了解人类如何上坡和下坡,重要的是要考虑到双支撑过程中这些揭示腿部功能和相互作用的生物力学方面。

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