Literature DB >> 26979891

Estimation of foot trajectory during human walking by a wearable inertial measurement unit mounted to the foot.

Naoki Kitagawa1, Naomichi Ogihara2.   

Abstract

To establish a supportive technology for reducing the risk of falling in older people, it is essential to clarify gait characteristics in elderly individuals that are possibly linked to the risk of falling during actual daily activities. In this study, we developed a system to monitor human gait in an outdoor environment using an inertial measurement unit consisting of a tri-axial accelerometer and tri-axial gyroscope. Step-by-step foot trajectories were estimated from the sensor unit attached to the dorsum of the foot. Specifically, stride length and foot clearance were calculated by integrating the gravity-compensated translational acceleration over time during the swing phase. Zero vertical velocity and displacement corrections were applied to obtain the final trajectory, assuming the slope of the walking surface is negligible. Short, normal, and long stride-length walking of 10 healthy participants was simultaneously measured using the proposed system and a conventional motion capture system to evaluate the accuracy of the estimated foot trajectory. Mean accuracy and precision were approximately 20 ± 50 mm, for stride length, and 2 ± 7 mm for foot clearance, indicating that the swing phase trajectory of the sensor unit attached to the foot was reconstructed more accurately and precisely using the proposed system than with previously published methods owing to the flat floor assumption. Although some methodological limitations certainly apply, this system will serve as a useful tool to monitor human walking during daily activities.
Copyright © 2016 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Foot clearance; Gait analysis; Inertial sensor; Outdoor environment; Step length

Mesh:

Year:  2016        PMID: 26979891     DOI: 10.1016/j.gaitpost.2016.01.014

Source DB:  PubMed          Journal:  Gait Posture        ISSN: 0966-6362            Impact factor:   2.840


  19 in total

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2.  Validity and repeatability of inertial measurement units for measuring gait parameters.

Authors:  Edward P Washabaugh; Tarun Kalyanaraman; Peter G Adamczyk; Edward S Claflin; Chandramouli Krishnan
Journal:  Gait Posture       Date:  2017-04-12       Impact factor: 2.840

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Journal:  Sensors (Basel)       Date:  2021-04-30       Impact factor: 3.576

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Journal:  Sensors (Basel)       Date:  2018-02-24       Impact factor: 3.576

7.  Towards Mobile Gait Analysis: Concurrent Validity and Test-Retest Reliability of an Inertial Measurement System for the Assessment of Spatio-Temporal Gait Parameters.

Authors:  Felix Kluge; Heiko Gaßner; Julius Hannink; Cristian Pasluosta; Jochen Klucken; Björn M Eskofier
Journal:  Sensors (Basel)       Date:  2017-06-28       Impact factor: 3.576

8.  The validity of an accelerometer-based method for estimating fluidity in the sit-to-walk task in a community setting.

Authors:  Tomoyuki Asakura; Yoshiyuki Miyazawa; Shigeru Usuda
Journal:  J Phys Ther Sci       Date:  2017-01-30

9.  Evaluating the Accuracy of Virtual Reality Trackers for Computing Spatiotemporal Gait Parameters.

Authors:  Michelangelo Guaitolini; Fitsum E Petros; Antonio Prado; Angelo M Sabatini; Sunil K Agrawal
Journal:  Sensors (Basel)       Date:  2021-05-11       Impact factor: 3.576

10.  Quantification of muscles activations and joints range of motions during oil palm fresh fruit bunch harvesting and loose fruit collection.

Authors:  Yu Xuan Teo; Yon Sin Chan; Darwin Gouwanda; Alpha Agape Gopalai; Surya Girinatha Nurzaman; Subbiah Thannirmalai
Journal:  Sci Rep       Date:  2021-07-22       Impact factor: 4.379

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