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    The impact of ligament tears on joint contact mechanics in progressive collapsing foot deformity: A finite element study

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    The Impact of Ligament Tears on ...
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    Author
    Malakoutikhah, Hamed
    Madenci, Erdogan
    Latt, Leonard Daniel
    Affiliation
    Department of Aerospace and Mechanical Engineering, University of Arizona
    Department of Orthopaedic Surgery, University of Arizona
    Issue Date
    2022-04
    Keywords
    Adult acquired flatfoot deformity
    Joint contact area
    Joint contact pressure
    Joint degeneration
    Osteoarthritis
    Pes planus
    
    Metadata
    Show full item record
    Publisher
    Elsevier BV
    Citation
    Malakoutikhah, H., Madenci, E., & Latt, L. D. (2022). The impact of ligament tears on joint contact mechanics in progressive collapsing foot deformity: A finite element study. Clinical Biomechanics.
    Journal
    Clinical Biomechanics
    Rights
    © 2022 Elsevier Ltd. All rights reserved.
    Collection Information
    This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.
    Abstract
    Background: Patients with longstanding progressive collapsing foot deformity often develop osteoarthritis of the ankle, midfoot, or hindfoot joints, which can be symptomatic or lead to fixed deformities that complicate treatment. The development of deformity is likely caused by ligament degeneration and tears. However, the effect of individual ligament tears on changes in joint contact mechanics has not been investigated. Methods: A validated finite element model of the foot was used to compare joint contact areas, forces, and pressures between the intact and collapsed foot, and to evaluate the effect of individual ligament tears on joint contact mechanics. Findings: Collapsing the foot resulted in an increase in contact pressure in the subtalar, calcaneocuboid, tibiotalar, medial naviculocuneiform, and first tarsometatarsal joints but a decrease in contact pressure in the talonavicular joint. Rupture of the spring ligament was the main contributor to increased calcaneocuboid and subtalar joint contact pressures and decreased medial naviculocuneiform and first tarsometatarsal joint contact pressures, as well as talonavicular subluxation. Deltoid ligament rupture was the primary source of increased contact pressure in the medial naviculocuneiform, first tarsometatarsal, and tibiotalar joints. Interpretation: Degenerative tearing of the ligaments in flatfoot deformity leads to increased joint contact pressures, primarily in the calcaneocuboid, subtalar, and tibiotalar joints, which has been implicated in the development of osteoarthritis in these joints. An improved understanding of the relationship between ligament tears and joint contact pressures could provide support for the use of ligament reconstructions to prevent the development of arthrosis.
    Note
    12 month embargo; available online: 18 March 2022
    ISSN
    0268-0033
    DOI
    10.1016/j.clinbiomech.2022.105630
    Version
    Final accepted manuscript
    ae974a485f413a2113503eed53cd6c53
    10.1016/j.clinbiomech.2022.105630
    Scopus Count
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    UA Faculty Publications

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