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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Effects of Inertia and Wrist Oscillations on Contralateral Neurological Postural Tremor Using the Wristalyzer, a New Myohaptic Device
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Effects of Inertia and Wrist Oscillations on Contralateral Neurological Postural Tremor Using the Wristalyzer, a New Myohaptic Device

机译:惯性和腕部摆动对腕关节对侧神经姿势性震颤的影响

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摘要

Upper limb postural tremor consists of mechanical-reflex and central-neurogenic oscillations, superimposed upon a background of irregular fluctuations in muscle force. Muscle spindles play key-roles in the information flow to supra-spinal and spinal generators. Oscillations were delivered using a new generation portable myohaptic device, called ldquowristalyzer,rdquo taking into account the ergonomy of upper limbs and allowing a fine adjustment to each configuration of upper limb segments. The nominal torque of the first generation device is 4 Nm, with a maximal rotation velocity of 300 degrees/s and a range of motion of plusmn45 degrees. Reliability was assessed in basal condition and during loading conditions. We assessed the effects of the addition of inertia on postural tremor of the finger in a group of 26 neurological patients and the effects of wrist oscillations upon contralateral postural tremor in 6 control subjects and in 7 neurological patients exhibiting a postural tremor. Patients showed two different behaviors in response to inertia and exhibited an increased variability of postural tremor during fast oscillations (13.3 Hz). One patient with overactivity of the olivocerebellar pathways exhibited a drop in the peak frequency of more than 20%. The relative power of the 8-12 Hz subband was significantly higher in controls both in basal condition and during oscillations (p = 0.028 and p = 0.015, respectively). The second generation wristalyzer allows to investigate the effects of mechanical oscillations up to frequency of 50 Hz. This mechatronic device can assess the responsiveness of tremor generators to stimulation of muscle spindles and biomechanical loading. Potential applications are the monitoring of dysmetria under various inertial or damping conditions, the assessment of rigidity in Parkinson's disease and the characterization of voluntary muscle force.
机译:上肢姿势性震颤由机械反射和中枢神经源性振荡组成,叠加在肌肉力量不规则波动的背景上。肌肉纺锤在向上脊髓和脊柱生成器的信息流中发挥关键作用。考虑到上肢的人体工程学,并允许对上肢节段的每种构造进行精细调整,使用称为ldquowristalyzer的新一代便携式肌触觉设备来传递振动。第一代设备的标称扭矩为4 Nm,最大旋转速度为300度/秒,运动范围为正45度。在基础条件和负载条件下评估可靠性。我们评估了一组26位神经病患者的惯性对手指姿势性震颤的影响,并评估了6名对照受试者和7位表现出姿势性震颤的神经病患者的腕部振动对对侧姿势性震颤的影响。患者表现出两种不同的响应惯性的行为,并且在快速振荡(13.3 Hz)期间表现出姿势震颤的变异性增加。一位小骨小路活动过度的患者的峰值频率下降超过20%。在基础条件下和振荡期间,控件中8-12 Hz子带的相对功率均显着较高(分别为p = 0.028和p = 0.015)。第二代腕式分析仪允许研究频率高达50 Hz的机械振荡的影响。该机电一体化设备可以评估震颤发生器对刺激肌肉纺锤体和生物力学负荷的响应能力。潜在的应用是在各种惯性或阻尼条件下监测不良状态,评估帕金森氏病的僵硬度以及表征自愿性肌肉力量。

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