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Validation of Foot Placement Locations from Ankle Data of a Kinect v2 Sensor

机译:从Kinect v2传感器的脚踝数据验证脚的放置位置

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摘要

The Kinect v2 sensor may be a cheap and easy to use sensor to quantify gait in clinical settings, especially when applied in set-ups integrating multiple Kinect sensors to increase the measurement volume. Reliable estimates of foot placement locations are required to quantify spatial gait parameters. This study aimed to systematically evaluate the effects of distance from the sensor, side and step length on estimates of foot placement locations based on Kinect’s ankle body points. Subjects (n = 12) performed stepping trials at imposed foot placement locations distanced 2 m or 3 m from the Kinect sensor (distance), for left and right foot placement locations (side), and for five imposed step lengths. Body points’ time series of the lower extremities were recorded with a Kinect v2 sensor, placed frontoparallelly on the left side, and a gold-standard motion-registration system. Foot placement locations, step lengths, and stepping accuracies were compared between systems using repeated-measures ANOVAs, agreement statistics and two one-sided t-tests to test equivalence. For the right side at the 2 m distance from the sensor we found significant between-systems differences in foot placement locations and step lengths, and evidence for nonequivalence. This distance by side effect was likely caused by differences in body orientation relative to the Kinect sensor. It can be reduced by using Kinect’s higher-dimensional depth data to estimate foot placement locations directly from the foot’s point cloud and/or by using smaller inter-sensor distances in the case of a multi-Kinect v2 set-up to estimate foot placement locations at greater distances from the sensor.
机译:Kinect v2传感器可能是一种便宜且易于使用的传感器,可用于量化临床环境中的步态,尤其是在集成了多个Kinect传感器以增加测量体积的设置中使用时。需要对脚放置位置进行可靠的估算,以量化空间步态参数。这项研究的目的是根据Kinect的脚踝身体部位,系统地评估距传感器的距离,侧面和步长对脚放置位置的估计的影响。受试者(n = 12)在距Kinect传感器2m或3m的施加脚放置位置(距离),左右脚放置位置(侧面)以及5个施加的步长进行踏步试验。用Kinect v2传感器记录身体下肢的时间序列,该传感器正面平行地放置在左侧,并采用金标准的运动定位系统。使用重复测量方差分析,一致性统计和两个单侧t检验比较系统之间的脚放置位置,步长和步距准确性。在距传感器2 m处的右侧,我们发现系统之间的脚放置位置和步长存在显着差异,并且存在不相等的证据。副作用的距离很可能是由于相对于Kinect传感器的身体朝向不同而引起的。可以通过使用Kinect的高维深度数据直接从脚的点云估计脚的放置位置和/或在使用多Kinect v2设置来估计脚的放置位置的情况下,使用较小的传感器间距离来减少这种情况与传感器的距离更大。

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