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Joint Angle, Range of Motion, Force, and Moment Assessment: Responses of the Lower Limb to Ankle Plantarflexion and Dorsiflexion
Author(s) -
Ukadike C. Ugbolue,
Chloe Robson,
Emma Donald,
K. Speirs,
Frédéric Dutheil,
Julien S. Baker,
Tilak Dias,
Yaodong Gu
Publication year - 2021
Publication title -
applied bionics and biomechanics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.397
H-Index - 23
eISSN - 1754-2103
pISSN - 1176-2322
DOI - 10.1155/2021/1232468
Subject(s) - ankle , range of motion , physical medicine and rehabilitation , joint (building) , knee joint , biomechanics , lower limb , ankle dorsiflexion , moment (physics) , medicine , physical therapy , orthodontics , structural engineering , anatomy , engineering , physics , surgery , classical mechanics
There is limited research on the biomechanical assessment of the lower limb joints in relation to dynamic movements that occur at the hip, knee, and ankle joints when performing dorsiflexion (DF) and plantarflexion (PF) among males and females. This study investigated the differences in joint angles (including range of motion (ROM)) and forces (including moments) between the left and right limbs at the ankle, knee, and hip joints during dynamic DF and PF movements in both males and females. Using a general linear model employing multivariate analysis in relation to the joint angle, ROM, force, and moment datasets, the results revealed significant main effects for gender, sidedness, phases, and foot position with respect to joint angles. Weak correlations were observed between measured biomechanical variables. These results provide insightful information for clinicians and biomechanists that relate to lower limb exercise interventions and modelling efficacy standpoints.

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