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Learning Hand Kinematics for Parkinson's Disease Assessment Using a Multimodal Sensor Glove

Yu Li, Junyi Yin, Chang Liu, Bing Xue, Cyrus Shokoohi, Gang Ge, Menglei Hu, Tenghuan Li, Tao Xue, Zhi Rao, Fanye Meng, Hongfeng Shi, Xiaoqiang Ji, Peyman Servati, Xiao Xiao, Jun Chen

2023Advanced Science55 citationsDOIOpen Access PDF

Abstract

Hand dysfunctions in Parkinson's disease include rigidity, muscle weakness, and tremor, which can severely affect the patient's daily life. Herein, a multimodal sensor glove is developed for quantifying the severity of Parkinson's disease symptoms in patients' hands while assessing the hands' multifunctionality. Toward signal processing, various algorithms are used to quantify and analyze each signal: Exponentially Weighted Average algorithm and Kalman filter are used to filter out noise, normalization to process bending signals, K-Means Cluster Analysis to classify muscle strength grades, and Back Propagation Neural Network to identify and classify tremor signals with an accuracy of 95.83%. Given the compelling features, the flexibility, muscle strength, and stability assessed by the glove and the clinical observations are proved to be highly consistent with Kappa values of 0.833, 0.867, and 0.937, respectively. The intraclass correlation coefficients obtained by reliability evaluation experiments for the three assessments are greater than 0.9, indicating that the system is reliable. The glove can be applied to assist in formulating targeted rehabilitation treatments and improve hand recovery efficiency.

Topics & Concepts

Intraclass correlationPhysical medicine and rehabilitationComputer scienceKinematicsFlexibility (engineering)Artificial intelligencePattern recognition (psychology)SimulationMedicineMathematicsReproducibilityStatisticsClassical mechanicsPhysicsParkinson's Disease Mechanisms and TreatmentsMuscle activation and electromyography studiesNeurological disorders and treatments
Learning Hand Kinematics for Parkinson's Disease Assessment Using a Multimodal Sensor Glove | Litcius