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首页> 外文期刊>Gait & posture >Evaluation of the autonomic response in healthy subjects during treadmill training with assistance of a robot-driven gait orthosis.
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Evaluation of the autonomic response in healthy subjects during treadmill training with assistance of a robot-driven gait orthosis.

机译:借助机器人驱动的步态矫形器,评估跑步机训练期间健康受试者的自主神经反应。

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Body weight supported treadmill training assisted with a robotic driven gait orthosis is an emerging clinical tool helpful to restore gait in individuals with loss of motor skills. However, the autonomic response during this rehabilitation protocol is not known. The aim of the study was to evaluate the autonomic response during a routine protocol of motor rehabilitation through spectral and symbolic analyses of short-term heart rate variability in a group of 20 healthy subjects (11 men, mean age 25+/-3.8 years). The protocol included the following phases: (1) sitting position; (2) standing position; (3) suspension during subject instrumentation; (4 and 5) robotic-assisted treadmill locomotion at 1.5km/h and 2.5km/h respectively with partial body weight support; (6) standing recovery after exercise. Results showed a significant tachycardia associated with the reduction in variance during the suspended phase of the protocol compared to the sitting position. Spectral analysis did not demonstrate any significant autonomic response during the entire protocol, while symbolic analysis detected an increase in sympathetic modulation during body suspension and an increase of vagal modulation during walking. These results could be used to improve understanding of the cardiovascular effects of rehabilitation in subjects undergoing robotic driven gait orthosis treadmill training.
机译:体重支持的跑步机训练,结合机器人驱动的步态矫形器,是一种新兴的临床工具,有助于恢复运动技能丧失者的步态。但是,该康复方案期间的自主反应尚不清楚。该研究的目的是通过对一组20名健康受试者(11名男性,平均年龄25 +/- 3.8岁)的短期心率变异性进行频谱和符号分析,评估常规运动康复方案中的自主神经反应。 。该方案包括以下几个阶段:(1)坐姿; (2)站立姿势; (3)在主题仪器化期间暂停; (4和5)在部分体重支持下,机器人辅助跑步机的运动速度分别为1.5km / h和2.5km / h; (6)运动后站立恢复。结果显示,与坐姿相比,该方案在暂停阶段相比,心动过速明显降低。光谱分析未显示出整个方案中的任何明显的自主反应,而符号分析检测到了身体悬吊过程中交感调节的增加和步行过程中迷走神经调节的增加。这些结果可用于增进对接受机器人驱动步态矫形器跑步机训练的受试者康复的心血管影响的了解。

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