NONAN GaitPrint: An IMU gait database of healthy young adults

Author:

Wiles Tyler M.ORCID,Mangalam Madhur,Sommerfeld Joel H.,Kim Seung Kyeom,Brink Kolby J.ORCID,Charles Anaelle Emeline,Grunkemeyer Alli,Kalaitzi Manifrenti MarilenaORCID,Mastorakis Spyridon,Stergiou Nick,Likens Aaron D.

Abstract

AbstractAn ongoing thrust of research focused on human gait pertains to identifying individuals based on gait patterns. However, no existing gait database supports modeling efforts to assess gait patterns unique to individuals. Hence, we introduce the Nonlinear Analysis Core (NONAN) GaitPrint database containing whole body kinematics and foot placement during self-paced overground walking on a 200-meter looping indoor track. Noraxon Ultium MotionTM inertial measurement unit (IMU) sensors sampled the motion of 35 healthy young adults (19–35 years old; 18 men and 17 women; mean ± 1 s.d. age: 24.6 ± 2.7 years; height: 1.73 ± 0.78 m; body mass: 72.44 ± 15.04 kg) over 18 4-min trials across two days. Continuous variables include acceleration, velocity, position, and the acceleration, velocity, position, orientation, and rotational velocity of each corresponding body segment, and the angle of each respective joint. The discrete variables include an exhaustive set of gait parameters derived from the spatiotemporal dynamics of foot placement. We technically validate our data using continuous relative phase, Lyapunov exponent, and Hurst exponent—nonlinear metrics quantifying different aspects of healthy human gait.

Funder

National Science Foundation

U.S. Department of Health & Human Services | National Institutes of Health

ODNI | Intelligence Advanced Research Projects Activity

Publisher

Springer Science and Business Media LLC

Subject

Library and Information Sciences,Statistics, Probability and Uncertainty,Computer Science Applications,Education,Information Systems,Statistics and Probability

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