4.6 Article

Sample Entropy of Human Gait Center of Pressure Displacement: A Systematic Methodological Analysis

期刊

ENTROPY
卷 20, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/e20080579

关键词

sample entropy; treadmill walking; center of pressure displacement; dual-tasking

资金

  1. Natural Science and Engineering Research Council of Canada [RGPIN-314032]
  2. Canadian Institute of Health Research [CEH-134155]
  3. University of Manitoba Graduate Fellowship [UMGF-7765611]

向作者/读者索取更多资源

Sample entropy (SampEn) has been used to quantify the regularity or predictability of human gait signals. There are studies on the appropriate use of this measure for inter-stride spatio-temporal gait variables. However, the sensitivity of this measure to preprocessing of the signal and to variant values of template size (m), tolerance size (r), and sampling rate has not been studied when applied to whole gait signals. Whole gait signals are the entire time series data obtained from force or inertial sensors. This study systematically investigates the sensitivity of SampEn of the center of pressure displacement in the mediolateral direction (ML COP-D) to variant parameter values and two pre-processing methods. These two methods are filtering the high-frequency components and resampling the signals to have the same average number of data points per stride. The discriminatory ability of SampEn is studied by comparing treadmill walk only (WO) to dual-task (DT) condition. The results suggest that SampEn maintains the directional difference between two walking conditions across variant parameter values, showing a significant increase from WO to DT condition, especially when signals are low-pass filtered. Moreover, when gait speed is different between test conditions, signals should be low-pass filtered and resampled to have the same average number of data points per stride.

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