动觉引导与图形治疗目的

Alejandro Jarillo-Silva, O. Dominguez-Ramirez, J. A. Cruz-Tolentino, L. E. R. Velasco, Vicente Parra‐Vega
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引用次数: 1

摘要

本文介绍了一个具有生物医学应用的书法平台的设计、构建和实现。这种技术工具可以用于物理治疗,以恢复由于阅读障碍和脑中风等常见精神运动障碍而导致的书法能力丧失。实验平台允许定义运动性能(物理交互变量),特别是在上肢。引导患者通过触觉装置的末端执行器;为此,采用了一种非线性闭环控制方法,由人工操作,以语言符号作为轨迹跟踪。这使得用户可以是一个被动的人,因此设计的控制律基于被动理论和滑模,以实现人机交互的稳定性和安全性。所描述的触觉系统旨在通过提供运动测量(位置/速度)及其误差来改善物理治疗任务。使用这种新系统的初步测试表明,对精神运动障碍患者的功能恢复有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinesthetic Guided with Graphotherapeutic Purposes
This paper presents the design, construction and implementation of a calligraphic platform with biomedical applications. This technological tool could be employed in physiotherapy to recover the loss of calligraphic abilities caused by common psychomotor disorders such as dyslexia and brain stroke. The experimental platform allow to define the motion performance (physical interaction variables), in particular on upper limbs. the patient is guided through the end effector of a haptic device; to this end is used a nonlinear control in closed loop with the human operator, with language symbols as a trajectory tracking. This allows that the user can be a passive human, so the control law designed is based on passivity theory and sliding mode to achieve stability and security in human machine interaction. The haptic system described, is designed to improve the physiotherapeutic tasks by supplying the motion measurement (position/velocity) and its errors. Preliminary tests using this novel system demonstrated a significative influence on regain functions in patients with psychomotor disorders.
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