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首页> 外文期刊>Gait & posture >A 3D mathematical model to predict spinal joint and hip joint force for trans-tibial amputees with different SACH foot pylon adjustments
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A 3D mathematical model to predict spinal joint and hip joint force for trans-tibial amputees with different SACH foot pylon adjustments

机译:预测具有不同SACH脚架调整的经胫截肢者的脊柱和髋关节力的3D数学模型

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摘要

A solid-ankle cushioned heel (SACH) foot is a non-joint foot without natural ankle function. Trans-tibial amputees may occur toe scuffing in the late swing phase due to a lack of active dorsiflexion. To address this problem, clinical guidelines suggests shortening the pylon to produce a smooth gait. However, this causes a leg length discrepancy, induces asymmetry in the hip joint, and causes an overload of L5/S1 joint force. Therefore, this study aimed to investigate the influence of different prosthesis pylons on the hip joint and L5/S1 joint forces.Ten subjects were recruited using leg length for normalisation. Four different pylon reductions (0%, 1%, 2%, and 3%) were used for gait analysis. A Vicon system and force plates were used to collect kinematic data and ground reaction force, respectively. The software package MATLAB was used to create a mathematical model for evaluating the symmetry and force of the hip joint and the low back force of the L5/S1 joint.;The model was validated by the correlation coefficient (CC = 0.947) and root mean square (RMS = 0.028 BW). The model estimated that the 1% group had a symmetrical hip joint force and a lower L5/S1 joint force in the vertical direction. This study indicates that a 1% pylon shortening on a SACH prosthesis is appropriate for a trans-tibial amputee.
机译:实心脚踝缓冲后跟(SACH)脚是无关节脚,没有自然的脚踝功能。由于缺乏活动的背屈,跨胫骨截肢者可能会在挥杆后期出现脚趾擦伤。为了解决这个问题,临床指南建议缩短塔架以产生平稳的步态。但是,这会导致腿长差异,导致髋关节不对称,并导致L5 / S1关节力超负荷。因此,本研究旨在研究不同的假体吊架对髋关节和L5 / S1关节力量的影响。招募了10名受试者,采用腿长进行标准化。步态分析使用了四种不同的塔减少量(0%,1%,2%和3%)。使用Vicon系统和测力板分别收集运动学数据和地面反作用力。使用MATLAB软件包创建了一个数学模型,用于评估髋关节的对称性和力以及L5 / S1关节的下背部力。;该模型已通过相关系数(CC = 0.947)和均方根进行了验证平方(RMS = 0.028 BW)。该模型估计1%的组在垂直方向上具有对称的髋关节力和较低的L5 / S1关节力。这项研究表明,在SACH假体上缩短1%的塔架适用于跨胫骨截肢者。

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