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最大负荷反跳式纵跳中下肢生物力学在性别间存在差异。

Lower-Limb Biomechanics Differ Between Sexes During Maximal Loaded Countermovement Jumps.

机构信息

Department of Kinesiology, Center for Orthopaedic and Biomechanics Research, Boise State University, Boise, Idaho.

出版信息

J Strength Cond Res. 2021 Feb 1;35(2):325-331. doi: 10.1519/JSC.0000000000003889.

Abstract

Fain, AC, Semore, KD, Lobb, NJ, and Brown, TN. Lower-limb biomechanics differ between sexes during maximal loaded countermovement jumps. J Strength Cond Res 35(2): 325-331, 2021-To improve military personnel's operational performance, this study determined the impact of heavy, military body-borne load on vertical jump performance. Twenty men and 17 women had lower-limb work and power quantified during a series of countermovement jumps with 4 body-borne loads (20, 25, 30, and 35 kg). For each jump, subjects stood in athletic position with feet shoulder-width apart, then squatted down and immediately performed a maximal-effort vertical jump. Subjects performed 3 successful jumps with each load. During each jump, limb and hip, knee and ankle work and power, each joint's contribution to limb work, as well as jump height and center of mass velocity were quantified. Each dependent measure was submitted to a 2-way repeated-meausres analysis of variance, with alpha level 0.05. Body-borne load reduced jump height (p = 0.001) but increased ankle work (p < 0.001). To jump higher (p < 0.001) with a greater center of mass velocity (p = 0.001), men produced more limb work (p < 0.001), hip (p = 0.001; p < 0.001), knee (p < 0.001; p < 0.001), and ankle (p < 0.001; p < 0.001) joint power and work. But, women produced a greater percentage of work at the ankle (p = 0.020) than men. Military practitioners may target different training adaptations to improve male and female personnel operational performance because lower-limb biomechanics differ between sexes during loaded vertical jumps.

摘要

费恩、塞莫尔、克德、洛布、纽杰和布朗。男女在最大负荷反向跳跃时下肢生物力学存在差异。《力量与调节研究杂志》35(2):325-331,2021 年-为了提高军事人员的作战表现,本研究确定了沉重的军用体载负荷对垂直跳跃表现的影响。20 名男性和 17 名女性在一系列反向跳跃中量化了下肢工作和功率,这些跳跃带有 4 个体载负荷(20、25、30 和 35 公斤)。对于每个跳跃,受试者以站立姿势双脚分开与肩同宽,然后蹲下并立即进行最大努力的垂直跳跃。每个负荷受试者完成 3 次成功跳跃。在每次跳跃中,量化了肢体和臀部、膝盖和脚踝的工作和功率,每个关节对肢体工作的贡献,以及跳跃高度和质心速度。每个依赖度量都提交给了具有 0.05 显著性水平的 2 因素重复测量方差分析。体载负荷降低了跳跃高度(p=0.001),但增加了脚踝工作(p<0.001)。为了跳得更高(p<0.001),质心速度更快(p=0.001),男性产生了更多的肢体工作(p<0.001),臀部(p=0.001;p<0.001),膝盖(p<0.001;p<0.001)和脚踝(p<0.001;p<0.001)关节功率和工作。但是,女性在脚踝处产生的工作百分比大于男性(p=0.020)。军事从业者可能会针对不同的训练适应来提高男性和女性人员的作战表现,因为在负载垂直跳跃时男女下肢生物力学存在差异。

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