Banyai Adriana Daniela, Brișan Cornel
Department of Mechatronics and Machine Dynamics, Technical University of Cluj-Napoca, 400114 Cluj-Napoca, Romania.
Healthcare (Basel). 2024 Aug 29;12(17):1720. doi: 10.3390/healthcare12171720.
As the global prevalence of motor disabilities continues to rise, there is a pressing need for advanced solutions in physical rehabilitation. This systematic review examines the progress and challenges of implementing robotic technologies in the motor rehabilitation of patients with physical disabilities. The integration of robotic technologies such as exoskeletons, assistive training devices, and brain-computer interface systems holds significant promise for enhancing functional recovery and patient autonomy. The review synthesizes findings from the most important studies, focusing on the clinical effectiveness of robotic interventions in comparison to traditional rehabilitation methods. The analysis reveals that robotic therapies can significantly improve motor function, strength, co-ordination, and dexterity. Robotic systems also support neuroplasticity, enabling patients to relearn lost motor skills through precise, controlled, and repetitive exercises. However, the adoption of these technologies is hindered by high costs, the need for specialized training, and limited accessibility. Key insights from the review highlight the necessity of personalizing robotic therapies to meet individual patient needs, alongside addressing technical, economic, social, and cultural barriers. The review also underscores the importance of continued research to optimize these technologies and develop effective implementation strategies. By overcoming these challenges, robotic technologies can revolutionize motor rehabilitation, improving quality of life and social integration for individuals with motor disabilities.
随着全球运动障碍患病率持续上升,物理康复领域迫切需要先进的解决方案。本系统综述探讨了在身体残疾患者的运动康复中应用机器人技术的进展与挑战。外骨骼、辅助训练设备和脑机接口系统等机器人技术的整合,对于增强功能恢复和患者自主性具有重大前景。该综述综合了最重要研究的结果,重点关注机器人干预与传统康复方法相比的临床效果。分析表明,机器人疗法可显著改善运动功能、力量、协调性和灵活性。机器人系统还支持神经可塑性,使患者能够通过精确、可控和重复的练习重新学习丧失的运动技能。然而,这些技术的采用受到高成本、需要专业培训以及可及性有限的阻碍。该综述的关键见解强调了个性化机器人疗法以满足个体患者需求的必要性,同时应对技术、经济、社会和文化障碍。该综述还强调了持续研究以优化这些技术并制定有效实施策略的重要性。通过克服这些挑战,机器人技术可以彻底改变运动康复,改善运动残疾患者的生活质量和社会融合。