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首页> 外文期刊>International journal of rehabilitation research: Internationale Zeitschrift fur Rehabilitationsforschungon >A novel robot training system designed to supplement upper limb physiotherapy of patients with spastic hemiparesis.
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A novel robot training system designed to supplement upper limb physiotherapy of patients with spastic hemiparesis.

机译:一种新颖的机器人训练系统,旨在补充痉挛性偏瘫患者的上肢物理治疗。

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摘要

Spasticity is velocity and acceleration dependent, and it is therefore important to execute physiotherapeutic exercises at a relatively low and constant velocity. This can be more accurately managed by a robot than by a person when such exercises are administered continuously for more than 15-20 min. The purpose of this project was to construct a robot-mediated system that could support upper limb physiotherapy of patients with spastic hemiparesis. The system, unlike any known robotic therapeutic system, uses unmodified industrial robots to carry out passive physiotherapy on the upper limb (including the movements of the shoulder and the elbow). An initial trial was executed in order to assess its safety and to gain experience of the robot-mediated therapy. Four healthy subjects and eight patients with spastic hemiparesis were included. Each subject received 30-min-long robotic physiotherapy sessions over 20 consecutive workdays. The 12 participants received, in total, 240 robot-mediated physiotherapeutic sessions. No dangerous situation or considerable technical problem occurred; the robots executed the therapy programme as intended. Investigation of the effectiveness of this kind of therapy was not an aim of this initial trial; however, the patients' clinical status was followed and some favourable changes were found regarding the spasticity of elbow flexors and shoulder abductors. According to the experiences of the first clinical investigation, the programming interface and the mechanical interface device between the patient and the robots had been improved. A controlled clinical study is under way to assess the effectiveness of the REHAROB movement therapy.
机译:痉挛取决于速度和加速度,因此以相对较低且恒定的速度进行物理治疗很重要。当连续进行15-20分钟以上的锻炼时,由机器人比由人可以更准确地进行管理。该项目的目的是构建一个机器人介导的系统,该系统可以支持痉挛性偏瘫患者的上肢物理治疗。与任何已知的机器人治疗系统不同,该系统使用未经修改的工业机器人对上肢进行被动物理治疗(包括肩膀和肘部的运动)。为了评估其安全性并获得机器人介导疗法的经验,进行了初步试验。包括四名健康受试者和八名痉挛性偏瘫患者。每个受试者在连续20个工作日中接受30分钟长的机器人物理治疗。 12名参与者总共接受了240次机器人介导的物理治疗会议。没有发生危险情况或重大技术问题;机器人按预期执行了治疗程序。对这种疗法的有效性进行调查并不是该初始试验的目的;但是,患者的临床状况得到了跟踪,并且在肘屈肌和肩外展肌痉挛方面发现了一些有利的变化。根据第一次临床研究的经验,改进了患者与机器人之间的编程接口和机械接口设备。正在进行一项对照临床研究,以评估REHAROB运动疗法的有效性。

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