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Ergonomic Assessment of an Active Orthosis for the Rehabilitation of Flexion and Extension of Wrist

机译:符合人体工程学评估活跃的矫形器,用于弯曲和手腕伸展的康复

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Muscular stiffness and limb rigidity are two main consequences of Parkinson's disease. These motor symptoms may be present in distinct parts of the body, influencing functional tasks executed by hands. To aid people suffering from these motor symptoms, we developed an active wrist orthosis whose purpose is to enable increase the flexion and extension range of motion of the wrist joint. We identified five relevant ergonomic variables that should be considered when using the orthosis in the clinical practice: (i) device stability, (ii) forearm position; (iii) muscular strength; (iv) amplitude of motion; and (v) mass of the device. These variables were identified based on the observation of movements while users executed the flexion and extension of the wrist with and without the device. In this research, we present a description of the developed orthosis and an evaluation of the ergonomic variables (i), (ii) and (iii). An enhanced support structure has been used with the orthosis and shown to lead to a stability improvement. Electromyographic analysis showed that the use of the orthosis does not introduce undue muscular load on the user at distinct angular positions of the forearm.
机译:肌肉僵硬和肢体刚性是帕金森病的两个主要后果。这些电机症状可能存在于身体的不同部分中,影响用手执行的功能任务。为了帮助患有这些电机症状的人,我们开发了一种活跃的腕部矫形器,其目的是能够增加腕带的屈曲和延伸范围。我们确定了五个相关的符合人体工程学变量,在临床实践中使用矫形器时应考虑:(i)器件稳定性,(ii)前臂位置; (iii)肌肉力量; (iv)运动的幅度; (v)设备的质量。基于对移动的观察来识别这些变量,而用户在使用和没有设备的情况下执行弯曲和延伸的弯曲和延伸。在本研究中,我们展示了所发育的矫形矫形和对人体工程学变量(I),(II)和(III)的评估。增强的支撑结构已与矫形器一起使用并显示出导致稳定性改善。肌电分析表明,在前臂的不同角度位置,使用矫形器的使用不会在使用者上引入过度的肌肉载荷。

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