1)Key Laboratory of Intelligent Rehabilitation and Neuroregulation, School of Electrical Engineering, Yanshan University, Qinhuangdao 066004, China;2)Key Laboratory of Intelligent Control and Neural Information Processing, Ministry of Education, School of Electrical Engineering, Yanshan University, Qinhuangdao 066004, China;3)Department of Neuromodulation, Ningbo Rehabilitation Hospital, Ningbo 315040, China;4)Department of Neurology, The First Hospital of Qinhuangdao, Qinhuangdao 066000, China
This work was supported by grants from National Key R&D Program (2022YFE0140400), The National Natural Science Foundation of China (52207255), Hebei Provincial Key R&D Program (21372001D), Centralized Guided Local Projects (236Z2001G), and Hebei Provincial Program for Introducing Overseas Educated Personnel (C20220332).
Objective Functional near-infrared spectroscopy (fNIRS), a novel non-invasive technique for monitoring cerebral activity, can be integrated with upper limb rehabilitation robots to facilitate the real-time assessment of neurological rehabilitation outcomes. The rehabilitation robot is designed with 3 training modes: passive, active, and resistance. Among these, the resistance mode has been demonstrated to yield superior rehabilitative outcomes for patients with a certain level of muscle strength. The control modes in the resistance mode can be categorized into dynamic and static control. However, the effects of different control modes in the resistance mode on the motor function of patients with upper limb hemiplegia in stroke remain unclear. Furthermore, the effects of force, an important parameter of different control modes, on the activation of brain regions have rarely been reported
FU Ling-Di, DOU Jia-Xuan, YING Ting-Ting, YIN Li-Yong, TANG Min, LIANG Zhen-Hu. Study on Kinetic and Static Tasks With Different Resistance Coefficients in Post-stroke Rehabilitation Training Based on Functional Near-infrared Spectroscopy[J]. Progress in Biochemistry and Biophysics,,():
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