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Development and evaluation of ankle muscle trainer with malleolar and subtalar movement actuators and underfoot reaction force sensors during active ankle dorsiplantarflexion

机译:踝关节肌脚踝肌肉训练器的开发与评价,踝关节运动梗死术期活性踝关转术期间的反作用力传感器

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Stroke patients have reduced kinematic characteristics in gait speed, cadence, step kinematics, and range of motion (ROM). Especially, a drop foot is a common symptom during gait after stroke due to the weakness of ankle dorsiflexor. A few robotic ankle systems have been developed to measure and train pathological ankle movements. However, the previously developed systems use orthogonal ankle axis system which reproduces unnatural human ankle movements. So we have developed a robotic device that considers anatomical ankle axes in order to train ankle muscles and to measure the quantities of ankle ROM, and forefoot and hindfoot ground reaction force. We recruited 10 healthy elderly with no history of neurological disorders. Subjects performed a total of three trials with eight repetitions or more of ankle dorsiplantarflexion using AMT. To investigate the validity of ankle angle measurements in developed AMT, we compared AMT outputs with output ankle kinematics from VICON motion capturing system. We found similar ankle movement pattern between AMT and VICON during active ankle dorsi-plantarflexion movement. The kinematics measured from AMT ankle ROM had a significant correlation with VICON ankle ROM (r = .958, n = 10, p = .00001). Therefore, we confirmed that the validity of ankle angle measurement in developed AMT.
机译:中风患者在步态速度,焦点,步进运动学和运动范围内降低了运动特性,以及运动范围。特别是,由于脚踝背屈的弱点,幼脚是在行程后的常见症状。已经开发出一些机器人踝系来测量和培训病理脚踝运动。然而,先前开发的系统使用正交踝轴系统,其再现不自然的人脚踝运动。因此,我们开发了一种机器人设备,以训练踝关节肌肉并测量脚踝ROM的数量,并前脚和后脚接地反作用力。我们招募了10名健康的老年人,没有神经系统疾病的历史。受试者共进行三次试验,使用AMT进行八次重复或更多的踝关节侧链。为了研究开发的AMT中的脚踝角度测量的有效性,我们将AMT输出与VICON运动捕获系统的输出脚踝运动学进行比较。我们在活动脚踝背部 - Plantarflexion运动期间发现了AMT和VICON之间的类似踝关节运动模式。从AMT脚踝ROM测量的运动学与VICON脚踝ROM具有显着的相关性(r = .958,n = 10,p = .00001)。因此,我们确认发达的AMT中的脚踝角度测量的有效性。

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