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Method for Muscle Tone Monitoring During Robot-Assisted Therapy of Hand Function: A Proof of Concept

机译:机器人辅助手功能治疗过程中肌音监测的方法:概念验证

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Robot-assisted rehabilitation of hand function is becoming an established approach to complement conventional therapy after stroke, particularly in view of its possible unsupervised use to promote an increase in therapy dose. Given their intensive therapy regime, robots may promote a temporary increase in hand muscle tone and spasticity, which may cause pain and negatively affect recovery. To integrate hand muscle tone monitoring into an assessment-driven robot-assisted therapy concept, an online assessment of muscle tone is proposed and incorporated into an exercise. The exercise was preliminarily tested in a pilot study with five chronic stroke survivors (non-spastic at rest) and five healthy participants to identify the range of potential physiological muscle tone change that can happen also in a non-spastic population during a single exercise session. In both groups, the muscle tone level during hand opening was higher in fast 20 mm ramp-and-hold perturbations (150 ms) compared to slow (250 ms) perturbations, and corresponded to a force change of approximately 4-5 N. Despite not being statistically significantly different, in the stroke group the force change (and the speed dependency) increased with exercise time. This information could serve as a basis to develop strategies to continuously adapt the difficulty and activity level required in robot-assisted rehabilitation and to monitor or even control the muscle tone evolution over time.
机译:机器人辅助手功能的康复已成为中风后补充常规疗法的一种行之有效的方法,特别是考虑到可能在无人监督的情况下使用它来促进治疗剂量的增加。考虑到他们的强化治疗方案,机器人可能会促进手部肌肉的张力和痉挛性暂时增加,这可能会引起疼痛并对恢复产生负面影响。为了将手部肌肉张力监测集成到评估驱动的机器人辅助治疗概念中,提出了一种在线评估肌肉张力并将其纳入锻炼的方法。这项运动在一项针对5名慢性中风幸存者(静止时非痉挛性)和5名健康参与者的试点研究中进行了初步测试,以识别在一次运动期间非痉挛性人群中也可能发生的潜在生理肌张力变化的范围。 。在两组中,快速的20 mm按住保持扰动(150 ms)中的手张开时的肌肉张力水平均比缓慢的(250 ms)扰动高,并且对应于大约4-5 N的力变化。在统计学上没有显着差异,在中风组中,力的变化(和速度相关性)随着运动时间的增加而增加。该信息可以用作开发策略的基础,以不断适应机器人辅助康复所需的难度和活动水平,并随着时间的推移监视甚至控制肌张力的演变。

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