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首页> 外文期刊>Journal of athletic training >Lower Limb Joint Kinetics During a Side-Cutting Task in Participants With or Without Chronic Ankle Instability
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Lower Limb Joint Kinetics During a Side-Cutting Task in Participants With or Without Chronic Ankle Instability

机译:在参与者中的侧裁任务期间,下肢关节动力学在有或没有慢性踝关节不稳定的情况下

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Context Individuals with chronic ankle instability (CAI) demonstrate altered lower limb movement dynamics during jump landings, which can contribute to recurrent injury. However, the literature examining lower limb movement dynamics during a side-cutting task in individuals with CAI is limited. Objective To assess lower limb joint kinetics and sagittal-plane joint stiffness during the stance phase of a side-cutting task in individuals with or without CAI. Design Cohort study. Setting Motion-capture laboratory. Patients or Other Participants Fifteen physically active, young adults with CAI (7 men, 8 women; age = 21.3 ± 1.6 years, height = 171.0 ± 11.2 cm, mass = 73.4 ± 15.2 kg) and 15 healthy matched controls (7 men, 8 women; age = 21.5 ± 1.5 years, height = 169.9 ± 10.6 cm, mass = 75.5 ± 13.0 kg). Intervention(s) Lower limb 3-dimensional kinematic and ground reaction force data were recorded while participants completed 3 successful trials of a side-cutting task. Net internal joint moments, in addition to sagittal-plane ankle-, knee-, and hip-joint stiffness, were computed from 3-dimensional kinematic and ground reaction force data during the stance phase of the side-cutting task and analyzed. Main Outcome Measure(s) Data from each participant's stance phase were normalized to 100% from initial foot contact (0%) to toe-off (100%) to compute means, standard deviations, and Cohen d effect sizes for all dependent variables. Results The CAI group exhibited a reduced ankle-eversion moment (39%–81% of stance phase) and knee-abduction moment (52%–75% of stance phase) and a greater ankle plantar-flexion moment (3%–16% of stance phase) than the control group (P range = .009–.049). Sagittal-plane hip-joint stiffness was greater in the CAI than in the control group (t28 = 1.978, P = .03). Conclusions Our findings suggest that altered ankle-joint kinetics and increased hip-joint stiffness were associated when individuals with CAI performed a side-cutting task. These lower limb kinetic changes may contribute to an increased risk of recurrent lateral ankle sprains in people with CAI. Clinicians and practitioners can use these findings to develop rehabilitation programs for improving maladaptive movement mechanics in individuals with CAI.
机译:背景下具有慢性脚踝不稳定(CAI)的个体在跳转登陆过程中展示了更改的下肢运动动态,这有助于经常损伤。然而,在具有CAI的个体中的侧切割任务期间,在涉及Cai的侧切割任务期间检查肢体运动动态的文献。目的在有或没有CAI的个体侧切割任务的立场阶段期间评估下肢关节动力学和矢状平面关节刚度。设计队列研究。设置运动捕获实验室。患者或其他参与者十五是身体活性,年轻人与蔡(7名男子,8名女性;年龄= 21.3±1.6厘米,质量= 73.4±15.2千克)和15个健康匹配的控制(7人,8人女性;年龄= 21.5±1.5岁,高度= 169.9±10.6厘米,质量= 75.5±13.0千克)。干预介入肢体三维运动和地面反作用力数据被记录,而参与者完成了侧裁任务的3个成功试验。除了矢状平面踝关节,膝盖和髋关节刚度之外,净内联矩在侧切割任务的姿势阶段计算和接地反应力数据和分析。来自每个参与者的姿势阶段的主要结果测量衡量标准化为100%,从初始脚接触(0%)到肌腱(100%),以计算所有相关变量的平均值,标准偏差和COHEN D效应尺寸。结果CAI集团表现出降低的踝关节转化矩(姿势相39%-81%)和膝关节齿轮(姿势阶段的52%-75%)和更大的脚踝跖屈(3%-16%)姿势阶段)比对照组(P范围= .009-.049)。 CAI中矢状平面髋关节刚度比对照组更大(T28 = 1.978,P = .03)。结论我们的研究结果表明,当具有CAI的个体进行侧切割任务时,有关的踝关节动力学和增加的髋关节刚度增加。这些较低的肢体动力学变化可能有助于CAI人们反复过度侧踝扭伤的风险增加。临床医生和从业者可以利用这些调查结果制定改进蔡氏人的人口运动机制的康复计划。

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