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A New Myohaptic Instrument to Assess Wrist Motion Dynamically

机译:动态评估腕部运动的新型触觉治疗仪

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摘要

The pathophysiological assessment of joint properties and voluntary motion in neurological patients remains a challenge. This is typically the case in cerebellar patients, who exhibit dysmetric movements due to the dysfunction of cerebellar circuitry. Several tools have been developed, but so far most of these tools have remained confined to laboratories, with a lack of standardization. We report on a new device which combines the use of electromyographic (EMG) sensors with haptic technology for the dynamic investigation of wrist properties. The instrument is composed of a drivetrain, a haptic controller and a signal acquisition unit. Angular accuracy is 0.00611 rad, nominal torque is 6 N·m, maximal rotation velocity is 34.907 rad/sec, with a range of motion of −1.0472 to +1.0472 rad. The inertia of the motor and handgrip is 0.004 kg·m2. This is the first standardized myohaptic instrument allowing the dynamic characterization of wrist properties, including under the condition of artificial damping. We show that cerebellar patients are unable to adapt EMG activities when faced with an increase in damping while performing fast reversal movements. The instrument allows the extraction of an electrophysiological signature of a cerebellar deficit.
机译:神经病患者关节特性和自发运动的病理生理评估仍然是一个挑战。在小脑患者中通常就是这种情况,由于小脑回路功能障碍,这些患者表现出运动失调。已经开发了几种工具,但是到目前为止,这些工具中的大多数仍局限于实验室,缺乏标准化。我们报告了一种新设备,该设备结合了肌电(EMG)传感器和触觉技术的使用,可以对腕部性能进行动态研究。该仪器由传动系统,触觉控制器和信号采集单元组成。角精度为0.00611 rad,额定扭矩为6 N·m,最大旋转速度为34.907 rad / sec,运动范围为-1.0472至+1.0472 rad。电机和手柄的惯性为0.004 kg·m 2 。这是第一款允许动态表征手腕特性(包括在人工阻尼条件下)的标准变态触觉仪。我们显示,小脑患者在进行快速逆向运动时,随着阻尼的增加而无法适应EMG活动。该仪器可以提取小脑缺陷的电生理特征。

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