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Tytuł pozycji:

Test-Retest Reliability of a Conventional Gait Model for Registering Joint Angles during Initial Contact and Toe-Off in Healthy Subjects.

Tytuł:
Test-Retest Reliability of a Conventional Gait Model for Registering Joint Angles during Initial Contact and Toe-Off in Healthy Subjects.
Autorzy:
Molina-Rueda F; Motion Analysis, Ergonomics, Biomechanics and Motor Control Laboratory (LAMBECOM), Department of Physical Therapy, Occupational Therapy, Rehabilitation and Physical Medicine, Faculty of Health Sciences, Rey Juan Carlos University, 28922 Madrid, Spain.
Fernández-González P; Motion Analysis, Ergonomics, Biomechanics and Motor Control Laboratory (LAMBECOM), Department of Physical Therapy, Occupational Therapy, Rehabilitation and Physical Medicine, Faculty of Health Sciences, Rey Juan Carlos University, 28922 Madrid, Spain.; International Doctorate School, Rey Juan Carlos University, 28933 Madrid, Spain.
Cuesta-Gómez A; Motion Analysis, Ergonomics, Biomechanics and Motor Control Laboratory (LAMBECOM), Department of Physical Therapy, Occupational Therapy, Rehabilitation and Physical Medicine, Faculty of Health Sciences, Rey Juan Carlos University, 28922 Madrid, Spain.
Koutsou A; Department of Information Systems Engineering, University San Pablo CEU, Boadilla del Monte, 28668 Madrid, Spain.
Carratalá-Tejada M; Motion Analysis, Ergonomics, Biomechanics and Motor Control Laboratory (LAMBECOM), Department of Physical Therapy, Occupational Therapy, Rehabilitation and Physical Medicine, Faculty of Health Sciences, Rey Juan Carlos University, 28922 Madrid, Spain.
Miangolarra-Page JC; Motion Analysis, Ergonomics, Biomechanics and Motor Control Laboratory (LAMBECOM), Department of Physical Therapy, Occupational Therapy, Rehabilitation and Physical Medicine, Faculty of Health Sciences, Rey Juan Carlos University, 28922 Madrid, Spain.; Physical Medicine and Rehabilitation Service of the University Hospital of Fuenlabrada, 28942 Madrid, Spain.
Źródło:
International journal of environmental research and public health [Int J Environ Res Public Health] 2021 Feb 02; Vol. 18 (3). Date of Electronic Publication: 2021 Feb 02.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Original Publication: Basel : MDPI, c2004-
MeSH Terms:
Gait*
Toes*
Biomechanical Phenomena ; Healthy Volunteers ; Humans ; Reproducibility of Results
References:
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Contributed Indexing:
Keywords: biomechanics; gait analysis; movement assessment; optical motion capture; reliability
Entry Date(s):
Date Created: 20210205 Date Completed: 20210325 Latest Revision: 20210325
Update Code:
20240104
PubMed Central ID:
PMC7908319
DOI:
10.3390/ijerph18031343
PMID:
33540795
Czasopismo naukowe
The aim of this study was to evaluate the test-retest reliability of a conventional gait model (CGM), the Plug-in Gait model, to calculate the angles of the hip, knee, and ankle during initial contact (IC) and toe-off (TO). Gait analysis was performed using the Vicon Motion System ® (Oxford Metrics, Oxford, UK). The study group consisted of 50 healthy subjects. To evaluate the test-retest reliability, the intraclass correlation coefficient (ICC), the standard error of measurement (SEM), the minimal detectable change (MDC), and the Bland-Altman analysis with 95% limits of agreement were calculated. The ICC for the joint angles of the hip, knee, and ankle was higher than 0.80. However, the ankle angle at IC had an ICC lower than 0.80. The SEM was <5° for all parameters. The MDC was large (>5°) for the hip angle at IC. The Bland-Altman analysis indicated that the magnitude of divergence was between ±5° and ±9° at IC and around ±7° at TO. In conclusion, the ICC for the plug-in gait model was good for the hip, knee, and ankle angles during IC and TO. The plots revealed a disagreement between measurements that should be considered in patients' clinical assessments.

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