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与生理性震颤高频成分相关的振荡幅度评估:负荷与信号微分的影响

Assessment of the amplitude of oscillations associated with high-frequency components of physiological tremor: impact of loading and signal differentiation.

作者信息

Duval Christian, Jones Jennifer

机构信息

Faculty of Applied Health Science, Brock University, 500 Glenridge Ave, St. Catharines, Ontario, Canada.

出版信息

Exp Brain Res. 2005 May;163(2):261-6. doi: 10.1007/s00221-005-2233-x. Epub 2005 Mar 15.

Abstract

The goal of this study was accurate quantification of the amplitude of high-frequency components of physiological tremor (PT) in units of displacement, velocity, and acceleration. In addition, changes of amplitude with finger loading were compared within specific frequency bands. Index finger tremor was measured for 20 healthy subjects using a high-resolution laser, simultaneously with an accelerometer, under two conditions, unloaded and loaded (70 g). By use of an accurate filtering technique, oscillations within six predetermined frequency bands were isolated. Results showed that overall mean tremor amplitude under the unloaded condition was 0.0973 mm in displacement units, 4.525 mm s(-1) in velocity units, and 301.526 mm s(-2) in acceleration units. Although the mean amplitude of oscillations located within the 16.5-30 Hz band was 0.009 mm and represented only 10% of total tremor amplitude, amplitude of acceleration within the 16.5-30 Hz band was 191 mm s(-2) and represented 60% of total acceleration amplitude. Mean amplitude increased significantly with loading (displacement, t=-2.67, P=0.015; velocity, t=-4.33, P=0.000; acceleration, t=-3.48, P=0.002) but the magnitude of that change was different in each frequency band and its relative importance depended on the level of signal differentiation. Velocity was the only measure that retained sensitivity to changes in amplitude with loading in the low and high-frequency components of PT. In conclusion, this study provides, for the first time, accurate quantification of the amplitude of oscillation of high-frequency components of PT. In addition, it provides clear evidence that the velocity of tremor oscillation is more suitable for detection of the impact of finger loading because it enables detection of amplitude changes in both the low and high-frequency components of PT.

摘要

本研究的目标是以位移、速度和加速度为单位,准确量化生理性震颤(PT)高频成分的振幅。此外,还比较了特定频段内振幅随手指负荷的变化情况。在无负荷和负荷(70克)两种条件下,使用高分辨率激光同时结合加速度计,对20名健康受试者的食指震颤进行了测量。通过使用精确的滤波技术,分离出六个预定频段内的振荡。结果显示,在无负荷条件下,震颤的总体平均振幅以位移为单位是0.0973毫米,以速度为单位是4.525毫米/秒,以加速度为单位是301.526毫米/秒²。虽然位于16.5 - 30赫兹频段内的振荡平均振幅为0.009毫米,仅占总震颤振幅的10%,但该频段内的加速度振幅为191毫米/秒²,占总加速度振幅的60%。平均振幅随负荷显著增加(位移,t = -2.67,P = 0.015;速度,t = -4.33,P = 0.000;加速度,t = -3.48,P = 0.002),但各频段内该变化的幅度不同,其相对重要性取决于信号分化水平。速度是唯一对PT低频和高频成分中振幅随负荷变化仍保持敏感性的测量指标。总之,本研究首次提供了PT高频成分振荡振幅的准确量化。此外,还提供了明确证据表明,震颤振荡的速度更适合检测手指负荷的影响,因为它能够检测PT低频和高频成分中的振幅变化。

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