Faculty of Health Sciences, Hokkaido University, Sapporo 060-0812, Japan.
Department of Rehabilitation, Health Sciences University of Hokkaido Hospital, Sapporo 002-8072, Japan.
Sensors (Basel). 2021 Apr 8;21(8):2619. doi: 10.3390/s21082619.
Recently, treadmills equipped with a lower-body positive-pressure (LBPP) device have been developed to provide precise body weight support (BWS) during walking. Since lower limbs are covered in a waist-high chamber of an LBPP treadmill, a conventional motion analysis using an optical method is impossible to evaluate gait kinematics on LBPP. We have developed a wearable-sensor-based three-dimensional motion analysis system, H-Gait. The purpose of the present study was to investigate the effects of BWS by a LBPP treadmill on gait kinematics using an H-Gait system. Twenty-five healthy subjects walked at 2.5 km/h on a LBPP treadmill under the following three conditions: (1) 0%BWS, (2) 25%BWS and (3) 50%BWS conditions. Acceleration and angular velocity from seven wearable sensors were used to analyze lower limb kinematics during walking. BWS significantly decreased peak angles of hip adduction, knee adduction and ankle dorsiflexion. In particular, the peak knee adduction angle at the 50%BWS significantly decreased compared to at the 25%BWS ( = 0.012) or 0%BWS ( < 0.001). The present study showed that H-Gait system can detect the changes in gait kinematics in response to BWS by a LBPP treadmill and provided a useful clinical application of the H-Gait system to walking exercises.
最近,开发了配备下肢正压(LBPP)装置的跑步机,以在行走时提供精确的体重支撑(BWS)。由于下肢被 LBPP 跑步机的腰部高腔覆盖,因此无法使用传统的光学方法进行运动分析来评估 LBPP 上的步态运动学。我们开发了一种基于可穿戴传感器的三维运动分析系统,H-Gait。本研究的目的是使用 H-Gait 系统研究 LBPP 跑步机的 BWS 对步态运动学的影响。25 名健康受试者在以下三种情况下以 2.5 公里/小时的速度在 LBPP 跑步机上行走:(1)0%BWS,(2)25%BWS 和(3)50%BWS。使用七个可穿戴传感器的加速度和角速度来分析行走时下肢的运动学。BWS 显著降低了髋关节内收、膝关节内收和踝关节背屈的峰值角度。特别是,在 50%BWS 时,膝关节内收角度的峰值明显低于 25%BWS( = 0.012)或 0%BWS( < 0.001)。本研究表明,H-Gait 系统可以检测到 LBPP 跑步机的 BWS 对步态运动学的变化,并为 H-Gait 系统在行走练习中的应用提供了有用的临床应用。