Department of Excercise & Cognitive Rehabilitation, National Rehabilitation Center Research Institute, Seoul, South Korea.
J Med Syst. 2010 Oct;34(5):959-66. doi: 10.1007/s10916-009-9311-8. Epub 2009 Jun 16.
A portable and wireless activity monitoring system was developed for the estimation of temporal gait parameters. The new system was built using three-axis accelerometers to automatically detect walking steps with various walking speeds. The accuracy of walking step-peak detection algorithm was assessed by using a running machine with variable speeds. To assess the consistency of gait parameter analysis system, estimated parameters, such as heel-contact and toe-off time based on accelerometers and footswitches were compared for consecutive 20 steps from 19 individual healthy subjects. Accelerometers and footswitches had high consistency in the temporal gait parameters. The stance, swing, single-limb support, and double-limb support time of gait cycle revealed ICCs values of 0.95, 0.93, 0.86, and 0.75 on the right and 0.96, 0.86, 0.93, 0.84 on the left, respectively. And the walking step-peak detection accuracy was 99.15% (±0.007) for the proposed method compared to 87.48% (±0.033) for a pedometer. Therefore, the proposed activity monitoring system proved to be a reliable and useful tool for identification of temporal gait parameters and walking pattern classification.
一种便携式无线活动监测系统被开发出来,用于估计时间步态参数。新系统使用三轴加速度计构建,可自动检测各种行走速度下的行走步数。使用具有可变速度的跑步机评估了行走步峰值检测算法的准确性。为了评估步态参数分析系统的一致性,将基于加速度计和脚踏开关的脚跟接触和脚趾离地时间等估计参数与 19 名健康个体的连续 20 步进行比较。加速度计和脚踏开关在时间步态参数方面具有高度的一致性。步态周期的站立、摆动、单腿支撑和双腿支撑时间的 ICC 值分别为 0.95、0.93、0.86 和 0.75(右侧)和 0.96、0.86、0.93、0.84(左侧)。与计步器的 87.48%(±0.033)相比,所提出的方法的行走步峰值检测准确率为 99.15%(±0.007)。因此,所提出的活动监测系统被证明是一种可靠且有用的工具,可用于识别时间步态参数和行走模式分类。