首页> 外文会议>Proceedings of the ASME international mechanical engineering congress and exposition 2009 >CPG-CONTROLLED FRONTAL BIPED MODEL FOR THE EVALUATION OF PATHOLOGICAL GAIT
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CPG-CONTROLLED FRONTAL BIPED MODEL FOR THE EVALUATION OF PATHOLOGICAL GAIT

机译:CPG控制的前肢双足模型用于评估病态步态

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Increased frontal-plane hip movement of the affected leg during the swing phase is a commonly observed gait adaptation in stroke patients. Recent evidence suggests that pathologically- induced torque coupling may contribute to asymmetric gait behaviors observed following stroke. This study proposes to use a CPG-controlled three-dimensional (3D) bipedal model to quantify the effects of abnormal torque coupling on frontal plane gait kinematics. Model dynamics have been evaluated using overground data collection observed under comparable in vivo experimental conditions. The CPG controller has demonstrated ability to provide sustained stable gait over an inclined surface in a simplified model. Preliminary results indicate that the proposed framework is feasible to control a 3D model for investigating the effects of torque coupling on the abnormal frontal plane kinematics of pathological gait.
机译:在挥杆阶段受影响的腿的额平面髋关节运动增加是中风患者通常观察到的步态适应。最近的证据表明,病理诱发的扭矩耦合可能有助于中风后观察到的步态不对称行为。这项研究建议使用CPG控制的三维(3D)双足模型来量化异常扭矩耦合对额面步态运动学的影响。使用在可比的体内实验条件下观察到的地面数据收集,评估了模型动力学。 CPG控制器在简化模型中已证明能够在倾斜表面上提供持续稳定的步态。初步结果表明,提出的框架可用于控制3D模型,以研究扭矩耦合对病理步态的异常额平面运动学的影响。

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