Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:2395-2398. doi: 10.1109/EMBC48229.2022.9871409.
Observing the kinematics of specific motor tasks, such as finger tapping (FT), provides an objective and consistent quantification of the severity of neurodegenerative diseases. However, the current clinical practice mostly relies on visual observations performed by the clinician. Thus, the assessment is subjective. In this paper, we propose a magnetometer-free Kalman filter (KF) to assess FT features using wearable, inertial sensors. The KF was used to assess features during two different FT tasks, namely forefinger tapping (FTAP) and thumb-forefinger tapping (THFF). The proposed KF was validated against a camera-based reference and compared with a strap-down integration-based method. Comparison between KF method and camera reference showed low discrepancies in terms of root mean square error (RMSE) for considered features: namely number of repetitions (RMSE < 0.7), tapping frequency (RMSE < 0.1 Hz), and amplitude (RMSE < 2.6 deg). An high correlation coefficient between amplitudes was also obtained. The proposed KF performed better than the strap-down integration method on both FT tasks, showing lower RMSE on every feature as well as a higher correlation coefficient. Clinical Relevance- The wearable setup, as well as the proposed magnetometer-free KF, may provide a low-cost, easyto- use, non-invasive motion tracking system for protocols aimed to assess motor performances in neurodegenerative disorders.
观察特定运动任务的运动学,如手指敲击(FT),可以客观、一致地量化神经退行性疾病的严重程度。然而,目前的临床实践主要依赖于临床医生进行的视觉观察。因此,评估是主观的。在本文中,我们提出了一种无磁力计卡尔曼滤波器(KF),使用可穿戴惯性传感器评估 FT 特征。KF 用于评估两种不同 FT 任务(即食指敲击(FTAP)和拇指-食指敲击(THFF))期间的特征。所提出的 KF 经过基于相机的参考验证,并与基于捷联惯性集成的方法进行了比较。KF 方法与相机参考之间的比较显示,所考虑特征的均方根误差(RMSE)差异较小:即重复次数(RMSE<0.7)、敲击频率(RMSE<0.1 Hz)和幅度(RMSE<2.6 度)。还获得了振幅之间的高相关系数。该 KF 在两项 FT 任务中的表现均优于捷联惯性集成方法,在每个特征上均具有更低的 RMSE 和更高的相关系数。临床相关性-可穿戴设备设置以及提出的无磁力计 KF 可以为旨在评估神经退行性疾病运动表现的协议提供低成本、易于使用、非侵入性的运动跟踪系统。