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Development and Pilot Testing of a Novel Electromechanical Device to Measure Wrist Rigidity in Parkinson’s Disease

机译:一种新型机电装置的开发和试验试验,以测量帕金森病的腕部刚度

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Quantitative assessment of the muscle tone is important when studying patients with neurological disorders such as Parkinson's disease (PD). For the assessment of therapeutic progress, quantitative and objective outcome measures are needed. This article presents a novel electromechanical device to monitor the quantitative rigidity of the wrist joint against passive movement. The novel device is equipped with an electrical motor to move the wrist joint in a flexion-extension manner with different velocity profiles. The accuracy of the device was measured in terms of position, velocity and torque accuracy. The feasibility of the measurement procedure was tested in a pilot study with four PD patients and 12 healthy controls (HC), at velocities of 10°/s, 50°/s, and 100°/s. The position and velocity of the developed device were (0.005 ± 0.105)° and (0.734 ± 0.276)°/s, unloaded, and (0.003 ± 0.113)° and (0.013 ± 0.038)°/s, loaded with a relaxed arm, respectively. The torque accuracy was (15.029 ± 2.235) mNm. The comparison of the median rigidity between the PD patients and HC showed significant differences at all tested velocities, during both flexion and extension movements. This device proved to have sufficient accuracy and sensitivity to precisely measure the interaction torque at the wrist joint and to differentiate PD rigidity from normal muscle tone. The device, thus provides a quantitative and objective measure of rigidity in PD.
机译:当研究帕金森病(PD)等神经系统疾病(PD)等神经系统疾病患者时,对肌腱的定量评估非常重要。为了评估治疗进展,需要定量和客观结果措施。本文介绍了一种新型机电装置,用于监测腕带对被动运动的定量刚性。新颖的装置配备有电动机,以使腕带以不同的速度轮廓移动。根据位置,速度和扭矩精度来测量装置的精度。测量程序的可行性在具有四种PD患者和12名健康对照(HC)的试验研究中进行了测试,以10°/ s,50°/ s和100°/ s的速度。开发装置的位置和速度(0.005±0.105)°和(0.734±0.276)°/ s,卸载,(0.003±0.113)°和(0.013±0.038)°/ s,装有宽松的臂,分别。扭矩精度(15.029±2.235)Mnm。在屈曲和延伸运动期间,Pd患者与HC之间的中值刚性的比较显示了所有测试速度的显着差异。该装置证明具有足够的精度和敏感性,以精确地测量手腕接头处的相互作用扭矩并从正常肌肉间调区分PD刚性。因此,该装置提供了PD中的刚性的定量和客观度量。

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