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评估上肢机器人辅助神经康复过程中的恢复机制。

Assessing mechanisms of recovery during robot-aided neurorehabilitation of the upper limb.

作者信息

Colombo R, Pisano F, Micera S, Mazzone A, Delconte C, Carrozza M C, Dario P, Minuco G

机构信息

Salvatore Maugeri Foundation, IRCCS, Service of Bioengineering Veruno (NO), Italy.

出版信息

Neurorehabil Neural Repair. 2008 Jan-Feb;22(1):50-63. doi: 10.1177/1545968307303401. Epub 2007 Jul 11.

Abstract

OBJECTIVE

The present study aimed to qualify and quantify the different components of motor recovery in a group of stroke patients treated by robot-aided techniques. In addition, the learning model of each motor recovery component was analyzed.

METHODS

Two groups of poststroke patients were treated with the use of an elbow-shoulder manipulator, respectively, within (recent) and after (chronic) the first 6 months of their cerebrovascular accident. Both groups were evaluated by means of standard clinical assessment scales and a robot-measured evaluation method.

RESULTS

These findings confirm that motor training consisting of voluntary movements assisted by the robot device led to significant improvements in motor performance in terms of the kinematic and dynamic components of the arm movements. This corresponded to improvement of impairment as confirmed by the clinical scale results.

CONCLUSIONS

Knowledge of the recovery components and of the associated performance acquisition model may be useful in assessing and training stroke patients and should make it possible to precisely plan and, if necessary, modify the rehabilitation strategies.

摘要

目的

本研究旨在对一组接受机器人辅助技术治疗的中风患者运动恢复的不同组成部分进行定性和定量分析。此外,还分析了每个运动恢复组成部分的学习模型。

方法

两组中风后患者分别在脑血管意外后的前6个月内(近期)和6个月后(慢性期)使用肘肩操纵器进行治疗。两组均通过标准临床评估量表和机器人测量评估方法进行评估。

结果

这些发现证实,由机器人设备辅助的自主运动组成的运动训练在手臂运动的运动学和动力学组成部分方面导致了运动表现的显著改善。这与临床量表结果证实的损伤改善相对应。

结论

了解恢复组成部分和相关的表现习得模型可能有助于评估和训练中风患者,并应能精确规划并在必要时修改康复策略。

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