Yorozu Ayanori, Moriguchi Toshiki, Takahashi Masaki
School of Science for Open and Environmental Systems, Graduate School of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.
Research & Development Division, Murata Machinery, Ltd., 136 Takeda-Mukaishiro-cho, Fushimi-ku, Kyoto 612-8686, Japan.
Sensors (Basel). 2015 Sep 4;15(9):22451-72. doi: 10.3390/s150922451.
Falling is a common problem in the growing elderly population, and fall-risk assessment systems are needed for community-based fall prevention programs. In particular, the timed up and go test (TUG) is the clinical test most often used to evaluate elderly individual ambulatory ability in many clinical institutions or local communities. This study presents an improved leg tracking method using a laser range sensor (LRS) for a gait measurement system to evaluate the motor function in walk tests, such as the TUG. The system tracks both legs and measures the trajectory of both legs. However, both legs might be close to each other, and one leg might be hidden from the sensor. This is especially the case during the turning motion in the TUG, where the time that a leg is hidden from the LRS is longer than that during straight walking and the moving direction rapidly changes. These situations are likely to lead to false tracking and deteriorate the measurement accuracy of the leg positions. To solve these problems, a novel data association considering gait phase and a Catmull-Rom spline-based interpolation during the occlusion are proposed. From the experimental results with young people, we confirm that the proposed methods can reduce the chances of false tracking. In addition, we verify the measurement accuracy of the leg trajectory compared to a three-dimensional motion analysis system (VICON).
跌倒在不断增加的老年人群中是一个常见问题,基于社区的跌倒预防项目需要跌倒风险评估系统。特别是,定时起立行走测试(TUG)是许多临床机构或当地社区中最常用于评估老年人个体步行能力的临床测试。本研究提出了一种用于步态测量系统的改进型腿部跟踪方法,该方法使用激光测距传感器(LRS)来评估步行测试(如TUG)中的运动功能。该系统跟踪双腿并测量双腿的轨迹。然而,双腿可能彼此靠近,并且一条腿可能会被传感器遮挡。在TUG的转身动作中尤其如此,此时一条腿被LRS遮挡的时间比直线行走时更长,并且移动方向迅速变化。这些情况可能会导致错误跟踪并降低腿部位置的测量精度。为了解决这些问题,提出了一种在遮挡期间考虑步态阶段的新型数据关联方法以及基于Catmull-Rom样条的插值方法。通过对年轻人的实验结果,我们证实所提出的方法可以减少错误跟踪的几率。此外,与三维运动分析系统(VICON)相比,我们验证了腿部轨迹的测量精度。