Mun Kyung-Ryoul, Lim Su Bin, Guo Zhao, Yu Haoyong
Imaging Media Research Center, Korea Institute of Science and Technology, Seoul, 136791, Republic of Korea.
Department of Biomedical Engineering, National University of Singapore, 9 Engineering Drive 1, Singapore, 117575, Republic of Singapore.
Med Biol Eng Comput. 2017 Feb;55(2):315-326. doi: 10.1007/s11517-016-1515-8. Epub 2016 May 18.
Body weight support (BWS) promotes better functional outcomes for neurologically challenged patients. Despite the established effectiveness of BWS in gait rehabilitation, the findings on biomechanical effects of BWS training still remain contradictory. Therefore, the aim of this study is to comprehensively investigate the effects of BWS. Using a newly developed robotic walker which can facilitate pelvic motions with an active BWS unit, we compared gait parameters of ten healthy subjects during a 10-m walk with incremental levels of body weight unloading, ranging from 0 to 40 % at 10 % intervals. Significant changes in joint angles and gait temporospatial parameters were observed. In addition, the results of an EMG signal study showed that the intensity of muscle activation was significantly reduced with increasing BWS levels. The reduction was found at the ankle, knee, and hip joints in the sagittal plane as well as at the hip joint in the frontal plane. The results of this study provide an important indication of increased lateral body balance and greater stabilization in sagittal and frontal plane during gait. Our findings provide a better understanding of the biomechanical effects of BWS during gait, which will help guide the gait rehabilitation strategies.
体重支持(BWS)可促进神经功能受损患者获得更好的功能恢复。尽管BWS在步态康复中的有效性已得到证实,但关于BWS训练的生物力学效应的研究结果仍存在矛盾。因此,本研究的目的是全面调查BWS的影响。我们使用一种新开发的机器人步行器,它可以通过一个主动的BWS装置促进骨盆运动,比较了10名健康受试者在10米步行过程中,体重卸载水平逐步增加(从0到40%,间隔为10%)时的步态参数。观察到关节角度和步态时空参数有显著变化。此外,肌电图信号研究结果表明,随着BWS水平的增加,肌肉激活强度显著降低。在矢状面的踝关节、膝关节和髋关节以及额状面的髋关节均发现了这种降低。本研究结果为步态过程中身体侧方平衡增加以及矢状面和额状面更大程度的稳定提供了重要指示。我们的研究结果有助于更好地理解BWS在步态中的生物力学效应,这将有助于指导步态康复策略。