IEEE Trans Neural Syst Rehabil Eng. 2018 Feb;26(2):460-467. doi: 10.1109/TNSRE.2017.2782361.
Despite the advancement of the tremor assessment systems, the current technology still lacks a method that can objectively characterize tremors in relative segmental movements. This paper presents a measurement system, which quantifies multi-degrees-of-freedom coupled relative motions of hand-arm tremor, in terms of joint angular displacement. In-laboratory validity and reliability tests of the system algorithm to provide joint angular displacement was carried out by using the two-degrees-of-freedom tremor simulator with incremental rotary encoder systems installed. The statistical analyses show that the developed system has high validity results and comparable reliability performances using the rotary encoder system as the reference. In the clinical trials, the system was tested on 38 Parkinson's disease patients. The system readings were correlated with the observational tremor ratings of six trained medical doctors. The moderate to very high clinical correlations of the system readings in measuring rest, postural and task-specific tremors add merits to the degree of readiness of the developed tremor measurement system in a routine clinical setting and/or intervention trial for tremor amelioration.
尽管震颤评估系统已经取得了进展,但当前的技术仍然缺乏一种能够客观描述相对节段运动中震颤的方法。本文提出了一种测量系统,该系统能够以关节角位移的形式量化手-臂震颤的多自由度耦合相对运动。通过使用带有增量式旋转编码器系统的两自由度震颤模拟器,对系统算法的关节角位移进行了实验室有效性和可靠性测试。统计分析表明,与旋转编码器系统作为参考相比,所开发的系统具有较高的有效性结果和相当的可靠性性能。在临床试验中,该系统在 38 名帕金森病患者中进行了测试。系统读数与六名经过培训的医生的观察性震颤评分相关。系统读数在测量静止、姿势和任务特异性震颤方面具有中度到非常高的临床相关性,这为开发的震颤测量系统在常规临床环境和/或震颤改善干预试验中的准备程度提供了优势。