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Effect of Running Speed and Leg Prostheses on Mediolateral Foot Placement and Its Variability

机译:跑步速度和腿部假肢对内侧外侧足位置及其变异性的影响

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摘要

This study examined the effects of speed and leg prostheses on mediolateral (ML) foot placement and its variability in sprinters with and without transtibial amputations. We hypothesized that ML foot placement variability would: 1. increase with running speed up to maximum speed and 2. be symmetrical between the legs of non-amputee sprinters but asymmetrically greater for the affected leg of sprinters with a unilateral transtibial amputation. We measured the midline of the body (kinematic data) and center of pressure (kinetic data) in the ML direction while 12 non-amputee sprinters and 7 Paralympic sprinters with transtibial amputations (6 unilateral, 1 bilateral) ran across a range of speeds up to maximum speed on a high-speed force measuring treadmill. We quantified ML foot placement relative to the body’s midline and its variability. We interpret our results with respect to a hypothesized relation between ML foot placement variability and lateral balance. We infer that greater ML foot placement variability indicates greater challenges with maintaining lateral balance. In non-amputee sprinters, ML foot placement variability for each leg increased substantially and symmetrically across speed. In sprinters with a unilateral amputation, ML foot placement variability for the affected and unaffected leg also increased substantially, but was asymmetric across speeds. In general, ML foot placement variability for sprinters with a unilateral amputation was within the range observed in non-amputee sprinters. For the sprinter with bilateral amputations, both affected legs exhibited the greatest increase in ML foot placement variability with speed. Overall, we find that maintaining lateral balance becomes increasingly challenging at faster speeds up to maximum speed but was equally challenging for sprinters with and without a unilateral transtibial amputation. Finally, when compared to all other sprinters in our subject pool, maintaining lateral balance appears to be the most challenging for the Paralympic sprinter with bilateral transtibial amputations.
机译:这项研究检查了速度和腿部假体对有或没有经胫骨截肢的短跑运动员的中外侧(ML)脚放置及其变化的影响。我们假设ML脚的放置变异性将:1.随着跑步速度的增加而增加到最大速度,并且2.非截肢短跑运动员的双腿之间对称,但对于单侧经胫骨截肢的短跑运动员的受影响腿非对称地增大。我们在ML方向上测量了身体的中线(运动学数据)和压力中心(运动数据),而12名非截肢短跑运动员和7名经小腿截肢的残奥会短跑运动员(6名单侧运动员,1名双侧运动员)在各种速度上跑了在高速测力跑步机上达到最大速度。我们量化了ML脚相对于身体中线的位置及其变异性。我们根据ML脚放置变异性与侧向平衡之间的假设关系来解释我们的结果。我们推断,较大的ML脚放置可变性表示维持横向平衡面临更大的挑战。在非截肢短跑运动员中,每条腿的ML脚放置差异在整个速度上均显着且对称地增加。在单侧截肢的短跑运动员中,患侧和未患侧腿的ML脚放置差异也显着增加,但在速度上不对称。通常,单侧截肢的短跑运动员的ML脚放置变异性在非截肢短跑运动员的观察范围内。对于使用双截肢的短跑运动员,两条受影响的腿均表现出ML脚放置随速度变化的最大增加。总的来说,我们发现保持横向平衡在以更快的速度达到最大速度时变得越来越具有挑战性,但是对于有或没有单侧胫骨截肢的短跑运动员同样具有挑战性。最后,与我们受试者库中的所有其他短跑运动员相比,对于双侧胫骨截肢的残奥短跑运动员来说,保持横向平衡似乎是最具挑战性的。

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