机器人辅助上肢中风后运动康复:一项调查

Xianwei Huang, F. Naghdy, G. Naghdy, H. Du, Catherine A. Todd
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引用次数: 16

摘要

最近的神经学研究表明,卒中后患者的运动技能受损可以通过以任务为导向的重复训练得到改善和恢复。这是由于神经可塑性——大脑在成年期改变的能力。利用神经可塑性来重新训练神经通路,恢复或改善由于中风或脊髓损伤(SCI)而丧失的运动技能,已经开发了各种康复过程。在过去的几十年里,这一领域的研究使人们对中风后患者的康复动力学有了更好的了解,并开发了辅助装置和工具来诱导重复的有针对性的身体运动。随着脑卒中康复治疗方法的不断增多,机器人技术在脑卒中康复过程中的应用受到了广泛的关注。因此,已经提出了许多机械和机器人辅助上肢和手部功能训练装置。本研究对机器人辅助上肢运动康复疗法进行了系统回顾。评估每种方法的优势和局限性及其在手臂和手功能恢复中的有效性。该研究对该领域的最新发展和趋势进行了比较分析,并有助于确定研究差距和潜在的未来工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robot-assisted post-stroke motion rehabilitation in upper extremities: a survey
Abstract Recent neurological research indicates that the impaired motor skills of post-stroke patients can be enhanced and possibly restored through task-oriented repetitive training. This is due to neuroplasticity – the ability of the brain to change through adulthood. Various rehabilitation processes have been developed to take advantage of neuroplasticity to retrain neural pathways and restore or improve motor skills lost as a result of stroke or spinal cord injuries (SCI). Research in this area over the last few decades has resulted in a better understanding of the dynamics of rehabilitation in post-stroke patients and development of auxiliary devices and tools to induce repeated targeted body movements. With the growing number of stroke rehabilitation therapies, the application of robotics within the rehabilitation process has received much attention. As such, numerous mechanical and robot-assisted upper limb and hand function training devices have been proposed. A systematic review of robotic-assisted upper extremity (UE) motion rehabilitation therapies was carried out in this study. The strengths and limitations of each method and its effectiveness in arm and hand function recovery were evaluated. The study provides a comparative analysis of the latest developments and trends in this field, and assists in identifying research gaps and potential future work.
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