Dyphi Research Institute, Dyphi Inc., Daejeon 34068, Korea.
Department of Internal Medicine, Seoul National University Hospital, Seoul 03080, Korea.
Sensors (Basel). 2021 Jan 8;21(2):414. doi: 10.3390/s21020414.
Acquiring gait parameters from usual walking is important to predict clinical outcomes including life expectancy, risk of fall, and neurocognitive performance in older people. We developed a novel gait analysis tool that is small, less-intrusive and is based on two-dimensional light detection and ranging (2D-LiDAR) technology. Using an object-tracking algorithm, we conducted a validation study of the spatiotemporal tracking of ankle locations of young, healthy participants ( = 4) by comparing our tool and a stereo camera with the motion capture system as a gold standard modality. We also assessed parameters including step length, step width, cadence, and gait speed. The 2D-LiDAR system showed a much better accuracy than that of a stereo camera system, where mean absolute errors were 46.2 ± 17.8 mm and 116.3 ± 69.6 mm, respectively. Gait parameters from the 2D-LiDAR system were in good agreement with those from the motion capture system (r = 0.955 for step length, r = 0.911 for cadence). Simultaneous tracking of multiple targets by the 2D-LiDAR system was also demonstrated. The novel system might be useful in space and resource constrained clinical practice for older adults.
从日常步行中获取步态参数对于预测老年人的临床结果(包括预期寿命、跌倒风险和神经认知表现)非常重要。我们开发了一种新的步态分析工具,该工具体积小、侵入性小,基于二维激光检测和测距(2D-LiDAR)技术。我们使用目标跟踪算法,通过将我们的工具与立体相机与运动捕捉系统(黄金标准模式)进行比较,对年轻健康参与者(n = 4)的踝关节位置的时空跟踪进行了验证研究。我们还评估了步长、步宽、步频和步态速度等参数。2D-LiDAR 系统的准确性明显优于立体相机系统,平均绝对误差分别为 46.2 ± 17.8mm 和 116.3 ± 69.6mm。2D-LiDAR 系统的步态参数与运动捕捉系统非常吻合(步长的 r 值为 0.955,步频的 r 值为 0.911)。2D-LiDAR 系统还可以同时跟踪多个目标。该新型系统可能在空间和资源有限的临床实践中对老年人有用。