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Loading applied on prosthetic knee of transfemoral amputee: comparison of inverse dynamics and direct measurements.

机译:经股截肢者假肢施加的载荷:反向动力学和直接测量的比较。

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摘要

Inverse dynamics is the most comprehensive method that gives access to the net joint forces and moments during walking. However it is based on assumptions (i.e., rigid segments linked by ideal joints) and it is known to be sensitive to the input data (e.g., kinematic derivatives, positions of joint centres and centre of pressure, inertial parameters). Alternatively, transducers can be used to measure directly the load applied on the residuum of transfemoral amputees. So, the purpose of this study was to compare the forces and moments applied on a prosthetic knee measured directly with the ones calculated by three inverse dynamics computations--corresponding to 3 and 2 segments, and "ground reaction vector technique"--during the gait of one patient. The maximum RMSEs between the estimated and directly measured forces (i.e., 56 N) and moment (i.e., 5 N m) were relatively small. However the dynamic outcomes of the prosthetic components (i.e., absorption of the foot, friction and limit stop of the knee) were only partially assessed with inverse dynamic methods.
机译:逆动力学是最全面的方法,可在行走过程中获得净关节力和力矩。但是,它是基于假设的(即,由理想关节链接的刚性线段),并且它对输入数据(例如,运动学派生,关节中心和压力中心的位置,惯性参数)敏感。或者,可以使用换能器直接测量经股截肢者残体上施加的负荷。因此,本研究的目的是将直接测量在假肢上的力和力矩与通过三个逆动力学计算(分别对应于3段和2段)和“地面反应矢量技术”所计算出的力和力矩进行比较。一名患者的步态。估计和直接测得的力(即56 N)和力矩(即5 N m)之间的最大RMSE相对较小。然而,假体组件的动态结果(即脚的吸收,摩擦和膝盖的限位)仅通过反向动态方法进行了部分评估。

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