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Differentiating Successful and Unsuccessful Single-Leg Drop Landing Performance Using Uncontrolled Manifold Analysis

机译:使用不受控制的歧管分析来区分成功和不成功的单杠降落性能

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摘要

Biomechanical analysis can effectively identify factors associated with task performance and injury risk, but often does not account for the interaction among the components that underlie task execution. Uncontrolled manifold (UCM) analyses were applied to data from 38 female, adolescent athletes performing single-leg drop landings and were used to differentiate successful and unsuccessful task performance by examining the frontal plane joint variance within the UCM (V-UCM) that stabilized the horizontal center of mass position (V-UCM) and within the orthogonal subspace (V-ORT). The UCM revealed stronger coordination, indicated by the V-UCM/V-ORT ratio, in the successful condition. This may inform future research examining reduced motor coordination in failed movement tasks and its relation to injury risk and allow for targeted interventions that consider coordination processes rather than joint-specific outcomes.
机译:生物力学分析可以有效地识别与任务绩效和伤害风险相关的因素,但通常不会占底部任务执行的组成部分之间的互动。 不受控制的歧管(UCM)分析应用于38个雌性,青春期运动员的数据,用于执行单腿落落落的血液,并用于通过检查稳定的UCM(V-UCM)内的正面平面联合方差来区分成功和不成功的任务性能 质量位置水平中心(V-UCM)和正交子空间(V-ORT)。 UCM在成功条件下,通过V-UCM / V-ORT比率表示更强的协调。 这可能会通知未来的研究检查失败的运动任务中的电机协调及其与伤害风险的关系,并允许有针对性的干预措施,以考虑协调流程而不是联合特定的结果。

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