...
首页> 外文期刊>Critical Reviews in Biomedical Engineering >Haptic Neurorehabilitation and Virtual Reality for Upper Limb Paralysis: A Review
【24h】

Haptic Neurorehabilitation and Virtual Reality for Upper Limb Paralysis: A Review

机译:上肢瘫痪的触觉神经康复和虚拟现实:综述。

获取原文
获取原文并翻译 | 示例
           

摘要

Motor and sensory loss or dysfunction affects the quality of life for thousands of individuals daily. The upper limb, and especially the hand, are important for a person's ability to complete activities of daily living. Traditional therapy methods focus on motor recovery, but future methods should include sensory recovery and should promote the use of the affected limb(s) at home. In this review, we highlight the current state-of-art robotic devices for the upper limb, and we discuss benefits of including haptic feedback and virtual reality environments during neurorehabilitation. Robotic devices, such as end-effector devices, grounded and ungrounded exoskeletons, have been developed to assist with various functions including individual finger, whole hand, and shoulder movements. Many robots highlighted in this paper are inexpensive and are small enough to be in a patient's home, or allow for telerehabilitation. Virtual reality creates safe environments for patients to practice motor movements and interactive games improve enjoyment of therapy. Haptic feedback creates more immersive virtual reality, and contributes to the recovery of sensory function. Physiological studies conducted after brain trauma and with robotic devices contribute to the understanding of brain plasticity, and illustrate the efficacy of these technologies. We conclude by addressing the future direction of neurorehabilitation research.
机译:运动和感觉丧失或功能障碍每天影响成千上万个人的生活质量。上肢,尤其是手,对一个人完成日常生活活动的能力很重要。传统的治疗方法侧重于运动恢复,但未来的方法应包括感觉恢复,并应在家中促进患肢的使用。在这篇评论中,我们重点介绍了上肢当前使用的最先进的机器人设备,并讨论了在神经康复过程中包括触觉反馈和虚拟现实环境的好处。已经开发出诸如末端执行器装置,接地和不接地的外骨骼之类的机器人设备来辅助各种功能,包括单个手指,整个手和肩膀的运动。本文重点介绍的许多机器人价格便宜,并且足够小,可以放在患者家中,也可以进行远程康复。虚拟现实为患者提供了练习运动的安全环境,交互式游戏改善了治疗的乐趣。触觉反馈创建了更加身临其境的虚拟现实,并为感觉功能的恢复做出了贡献。脑部创伤后和使用机器人设备进行的生理研究有助于理解脑可塑性,并说明了这些技术的功效。最后,我们着眼于神经康复研究的未来方向。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号