Wang Honggang, Guo Junlong, Zhang Yangqi, Fu Ze, Yao Yufeng
State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin, 150001, China.
Institute of Biological and Medical Technology, Harbin Institute of Technology (Weihai), Weihai, 264200, China.
J Neuroeng Rehabil. 2025 Apr 19;22(1):87. doi: 10.1186/s12984-025-01617-9.
This review proposes an innovative closed-loop rehabilitation strategy that integrates multiple subdomains of stroke science to address the global challenge of upper-limb dyskinesia post-stroke. Despite advancements in neural remodeling and rehabilitation research, the compartmentalization of subdomains has limited the effectiveness of current rehabilitation strategies. Our approach unites key areas-including the post-stroke brain, upper-limb rehabilitation robotics, motion sensing, metrics, neural microfluidics, and neuroelectronics-into a cohesive framework designed to enhance upper-limb motion rehabilitation outcomes. By leveraging cutting-edge technologies such as lightweight rehabilitation robotics, advanced motion sensing, and neural microfluidic models, this strategy enables real-time monitoring, adaptive interventions, and personalized rehabilitation plans. Furthermore, we explore the potential of closed-loop systems to drive neural plasticity and functional recovery, offering a transformative perspective on stroke rehabilitation. Finally, we discuss future directions, emphasizing the integration of emerging technologies and interdisciplinary collaboration to advance the field. This review highlights the promise of closed-loop strategies in achieving unprecedented integration of subdomains and improving post-stroke upper-limb rehabilitation outcomes.
本综述提出了一种创新的闭环康复策略,该策略整合了中风科学的多个子领域,以应对中风后上肢运动障碍这一全球性挑战。尽管神经重塑和康复研究取得了进展,但子领域的划分限制了当前康复策略的有效性。我们的方法将关键领域——包括中风后的大脑、上肢康复机器人技术、运动传感、指标、神经微流体学和神经电子学——整合到一个连贯的框架中,旨在提高上肢运动康复效果。通过利用诸如轻型康复机器人技术、先进运动传感和神经微流体模型等前沿技术,该策略能够实现实时监测、自适应干预和个性化康复计划。此外,我们探索了闭环系统促进神经可塑性和功能恢复的潜力,为中风康复提供了一种变革性的观点。最后,我们讨论了未来的方向,强调新兴技术的整合和跨学科合作,以推动该领域的发展。本综述突出了闭环策略在实现子领域前所未有的整合以及改善中风后上肢康复效果方面的前景。