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Passive vibration absorber for tremor in hand of parkinsonian patients: Tuned vibration absorber for rest tremor

机译:帕金森氏病患者手部震颤的被动式减震器:用于休息性震颤的调谐式减震器

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摘要

Parkinson's disease is characterized by involuntary movement of body parts resulting from antagonistic muscle contractions. In this paper, an effective passive vibration absorber is modeled to control the involuntary pathological rest tremor in the right hand of Parkinson's disease patient. The three-degree-of-freedom dynamic hand model capable to describe the flexion-extension planar motion at shoulder, elbow, and wrist joints in horizontal plane is designed. The passive tuned vibration absorber is modeled to suppress flexion motion of shoulder, elbow and wrist joints. Active inputs producing motion are considered at shoulder and elbow joints, and driven at resonance frequencies. The equations of motion for the dynamically coupled modeled hand system are derived. The responses are represented in time and frequency domains using the complex transfer function method. Optimum position of the absorber on the forearm is determined in terms of its effectiveness in reducing tremor's amplitude.
机译:帕金森氏病的特征是拮抗性肌肉收缩导致身体部位不自主运动。在本文中,对有效的被动减振器进行建模,以控制帕金森氏病患者右手的非自愿性病理性震颤。设计了一种三自由度动态手模型,该模型可以描述水平面中肩,肘和腕关节的屈伸平面运动。被动调谐减震器的建模可抑制肩,肘和腕关节的屈曲运动。在肩膀和肘关节处考虑产生运动的主动输入,并以共振频率进行驱动。导出了动态耦合的建模手系统的运动方程。使用复数传递函数方法在时域和频域中表示响应。吸收体在前臂上的最佳位置取决于其在减少震颤幅度方面的有效性。

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