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A Novel and Safe Approach to Simulate Cutting Movements Using Ground Reaction Forces

机译:一种使用地面反作用力模拟切割运动的新颖和安全方法

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Control of shear ground reaction forces (sGRF) is important in performing running and cutting tasks as poor sGRF control has implications for those with knee injuries, such as anterior cruciate ligament (ACL) ruptures. The goal of this study was to develop a novel and safe task to evaluate control or accurate modulation of shear ground reaction forces related to those generated during cutting. Our approach utilized a force control task using real-time visual feedback of a subject's force production and evaluated control capabilities through accuracy and divergence measurements. Ten healthy recreational athletes completed the force control task while force control via accuracy measures and divergence calculations was investigated. Participants were able to accurately control sGRF in multiple directions based on error measurements. Forces generated during the task were equal to or greater than those measured during a number of functional activities. We found no significant difference in the divergence of the force profiles using the Lyapunov Exponent of the sGRF trajectories. Participants using our approach produced high accuracy and low divergence force profiles and functional force magnitudes. Moving forward, we will utilize this task in at-risk populations who are unable to complete a cutting maneuver in early stages of rehabilitation, such as ACL deficient and newly reconstructed individuals, allowing insight into force control not obtainable otherwise.
机译:控制剪切地面反作用力(SGRF)在执行运行和切割任务中是重要的,因为SGRF控制对那些膝关节损伤的影响有难以影响,例如前十字韧带(ACL)破裂。本研究的目标是开发一种新颖和安全的任务,以评估与切割期间产生的剪切地面反作用力的控制或准确调制。我们的方法利用了力量控制任务,使用受试者的力量产生的实时视觉反馈,并通过精度和分歧测量评估控制能力。十个健康的娱乐运动员完成了力量控制任务,同时通过准确度测量和分歧计算来迫使力量控制。参与者能够基于错误测量来准确地控制多个方向的SGRF。在任务期间产生的力等于或大于在许多功能活动期间测量的力。我们发现使用SGRF轨迹的Lyapunov指数的力量曲线的分歧没有显着差异。参与者使用我们的方法产生了高精度和低发散力曲线和功能力幅度。向前迈进,我们将在风险上利用这项任务,他们无法在康复的早期阶段中完成切割机动,例如ACL缺陷和新重建的个体,允许识别不可获得的力量控制。

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