机器人辅助倾斜台的心肺反应及其组成。

Myeong Sun Kim, Ha Yeon Kim, Gyulee Park, Tae-Lim Kim, Joon-Ho Shin
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摘要

在中风、脊髓损伤和帕金森氏病等神经系统疾病的早期康复阶段,心肺功能尤为重要。本研究旨在证明机器人辅助和倾斜台运动如何影响心肺功能。在这项研究中,10名健康的年轻人根据机器人辅助模式(开/关)、倾斜台角度(20°/60°)和功能性电刺激(FES)模式(开/关)进行了六种条件组合。四种情况下,机器人辅助模式(开/关)和倾斜角度(20°/60°)组合关闭FES模式,两种情况下,机器人辅助模式和倾斜角度(20°/60°)打开FES模式。比较各组的心肺效果(摄氧量[VO2]、摄氧量峰值[VO2peak]、代谢能成本[MET]、心率压积[RPP]、心率[HR]、最大心率[%HRmax]、分钟通气量[VE])。因此,在角度和FES模式效应中,VO2、VO2peak、MET、RPP、HR和%HRmax与VE不同,主要受角度影响。此外,在机器人辅助模式和角度效应下,当FES关闭时,VO2、METs和VE值主要受机器人辅助模式的影响,而其他值主要受角度影响。与先前报道的结果相比,我们可以预期机器人辅助的倾斜台训练可以导致心肺功能的改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cardiopulmonary Response to Robot-Assisted Tilt Table With Regard to Its Components.

Cardiopulmonary function is exceptionally critical during the early stages of rehabilitation after neurological disorders such as stroke, spinal cord injury and Parkinson's disease. This study aimed to demonstrate how robot-assisted and tilt table exercises affect cardiopulmonary function. In this study, ten healthy young adults performed six combinations of conditions according to robot-assisted mode (on/off), angle of tilt table (20°/60°), and functional electrical stimulation (FES) mode (on/off). Four conditions had FES mode off with combinations of robot-assisted mode (on/off) and tilt angle (20°/60°) and two conditions had robot-assisted mode and FES on with tilt angle (20°/60°). Cardiopulmonary effects (oxygen uptake [VO2], peak oxygen uptake [VO2peak], metabolic energy cost [MET], rate pressure product [RPP], heart rate [HR], maximum heart rate [%HRmax], and minute ventilation [VE]) were compared in each condition. As a result, in the angle and FES mode effect, VO2, VO2peak, MET, RPP, HR, and %HRmax, unlike that for VE, showed major effects in angle. In addition, in the robot-assisted mode and angle effect, when the FES was switched off, VO2, METs, and VE values showed major effects in the robot-assisted mode, whereas all other values showed major effects in angle. Compared to earlier reported findings, we can expect that robot-assisted tilt table training can lead to changes in the cardiopulmonary function.

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