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疲劳对业余跑者最大增量测试后跑步技术和机械变量的影响。

Fatigue-Related Changes in Running Technique and Mechanical Variables After a Maximal Incremental Test in Recreational Runners.

机构信息

Programa de Pós-Graduação em Educação Física, Universidade Federal do Paraná, Curitiba, PR, Brazil.

LaBiodin Biodynamics Laboratory, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil.

出版信息

J Appl Biomech. 2024 Sep 4;40(5):424-431. doi: 10.1123/jab.2024-0092. Print 2024 Oct 1.

DOI:10.1123/jab.2024-0092
PMID:39231490
Abstract

Understanding the changes in running mechanics caused by fatigue is essential to assess its impact on athletic performance. Changes in running biomechanics after constant speed conditions are well documented, but the adaptive responses after a maximal incremental test are unknown. We compared the spatiotemporal, joint kinematics, elastic mechanism, and external work parameters before and after a maximal incremental treadmill test. Eighteen recreational runners performed 2-minute runs at 8 km·h-1 before and after a maximal incremental test on a treadmill. Kinematics, elastic parameters, and external work were determined using the OpenCap and OpenSim software. We did not find differences in spatiotemporal parameters and elastic parameters (mechanical work, ankle, and knee motion range) between premaximal and postmaximal test conditions. After the maximal test, the runners flexed their hips more at contact time (19.4°-20.6°, P = .013) and presented a larger range of pelvis rotation at the frontal plane (10.3°-11.4°, P = .002). The fatigue applied in the test directly affects pelvic movements; however, it does not change the lower limb motion or the spatiotemporal and mechanical work parameters in recreational runners. A larger frontal plane motion of the pelvis deserves attention due to biomechanical risk factors associated with injuries.

摘要

了解疲劳引起的跑步力学变化对于评估其对运动表现的影响至关重要。在恒定速度条件下,跑步生物力学的变化已有充分记录,但在最大增量测试后适应性反应尚不清楚。我们比较了最大增量跑步机测试前后的时空、关节运动学、弹性机制和外部工作参数。18 名休闲跑者在跑步机上进行了最大增量测试前后进行了 2 分钟 8km·h-1 的跑步。使用 OpenCap 和 OpenSim 软件确定运动学、弹性参数和外部工作。我们在最大测试前后的时空参数和弹性参数(机械工作、踝关节和膝关节运动范围)之间没有发现差异。在最大测试后,跑步者在接触时间时髋关节更多地弯曲(19.4°-20.6°,P =.013),并在额状面呈现更大的骨盆旋转范围(10.3°-11.4°,P =.002)。测试中施加的疲劳直接影响骨盆运动;然而,它不会改变下肢运动或休闲跑者的时空和机械工作参数。由于与受伤相关的生物力学危险因素,骨盆在额状面的更大运动值得关注。

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