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Surface Pressures in Lower Extremity Splints: A Biomechanical Study

BACKGROUND: Though ubiquitously used in orthopaedic trauma, lower extremity splints may have associated iatrogenic risk of morbidity. Although clinicians pad bony prominences to minimize skin pressure, the effect of joint position on skin pressure and, more specifically, changing joint position, is...

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Autores principales: Walley, Kempland C., Farrar, Nicholas, Shams, Kameron, Anastasio, Albert T., Gong, Davin, Mell, Kristopher, Holmes, James R., Walton, David M., Talusan, Paul G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014985/
https://www.ncbi.nlm.nih.gov/pubmed/36937805
http://dx.doi.org/10.1177/24730114231160115
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author Walley, Kempland C.
Farrar, Nicholas
Shams, Kameron
Anastasio, Albert T.
Gong, Davin
Mell, Kristopher
Holmes, James R.
Walton, David M.
Talusan, Paul G.
author_facet Walley, Kempland C.
Farrar, Nicholas
Shams, Kameron
Anastasio, Albert T.
Gong, Davin
Mell, Kristopher
Holmes, James R.
Walton, David M.
Talusan, Paul G.
author_sort Walley, Kempland C.
collection PubMed
description BACKGROUND: Though ubiquitously used in orthopaedic trauma, lower extremity splints may have associated iatrogenic risk of morbidity. Although clinicians pad bony prominences to minimize skin pressure, the effect of joint position on skin pressure and, more specifically, changing joint position, is understudied. The purpose of this biomechanical study is to determine the effect of various short-leg splint application techniques on anterior ankle surface pressure in the development of iatrogenic skin pressure ulcers. METHODS: Various constructs of lower extremity, short-leg splints were applied to 3 healthy subjects (6 limbs total) with an underlying pressure transducer (Tekscan I-Scan system) on the skin surface centered on the tibialis anterior tendon at the level of the ankle. All subjects underwent anterior ankle surface pressure assessment when padding was applied in maximum plantar flexion and neutral position for conventional short-leg splints application in clinically relevant patient scenarios. Percentage change from initial contact pressure centered on the tibialis anterior with cast padding were calculated. RESULTS: The percentage change in anterior ankle contact pressure when padding was applied in maximum plantar flexion (PF) and then definitively placed in neutral was increased at least 2-fold without the addition of plaster in lower extremity short-leg splints. Removing anterior ankle padding following final splint application in neutral reduced contact forces at the anterior ankle 46% and 59% in splints applied in maximum PF and neutral ankle position, respectively. CONCLUSION: The present study is the first of its kind to underscore and quantify clinically relevant technical pearls that can be useful in reducing risk of iatrogenic risk of skin breakdown at the anterior ankle when placing short-leg splints, mainly, that it is imperative to apply padding in the intended final splint position and to remove anterior ankle padding following splint application when able. LEVEL OF EVIDENCE: Level IV, biomechanical study with clear hypothesis.
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spelling pubmed-100149852023-03-16 Surface Pressures in Lower Extremity Splints: A Biomechanical Study Walley, Kempland C. Farrar, Nicholas Shams, Kameron Anastasio, Albert T. Gong, Davin Mell, Kristopher Holmes, James R. Walton, David M. Talusan, Paul G. Foot Ankle Orthop Article BACKGROUND: Though ubiquitously used in orthopaedic trauma, lower extremity splints may have associated iatrogenic risk of morbidity. Although clinicians pad bony prominences to minimize skin pressure, the effect of joint position on skin pressure and, more specifically, changing joint position, is understudied. The purpose of this biomechanical study is to determine the effect of various short-leg splint application techniques on anterior ankle surface pressure in the development of iatrogenic skin pressure ulcers. METHODS: Various constructs of lower extremity, short-leg splints were applied to 3 healthy subjects (6 limbs total) with an underlying pressure transducer (Tekscan I-Scan system) on the skin surface centered on the tibialis anterior tendon at the level of the ankle. All subjects underwent anterior ankle surface pressure assessment when padding was applied in maximum plantar flexion and neutral position for conventional short-leg splints application in clinically relevant patient scenarios. Percentage change from initial contact pressure centered on the tibialis anterior with cast padding were calculated. RESULTS: The percentage change in anterior ankle contact pressure when padding was applied in maximum plantar flexion (PF) and then definitively placed in neutral was increased at least 2-fold without the addition of plaster in lower extremity short-leg splints. Removing anterior ankle padding following final splint application in neutral reduced contact forces at the anterior ankle 46% and 59% in splints applied in maximum PF and neutral ankle position, respectively. CONCLUSION: The present study is the first of its kind to underscore and quantify clinically relevant technical pearls that can be useful in reducing risk of iatrogenic risk of skin breakdown at the anterior ankle when placing short-leg splints, mainly, that it is imperative to apply padding in the intended final splint position and to remove anterior ankle padding following splint application when able. LEVEL OF EVIDENCE: Level IV, biomechanical study with clear hypothesis. SAGE Publications 2023-03-13 /pmc/articles/PMC10014985/ /pubmed/36937805 http://dx.doi.org/10.1177/24730114231160115 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Article
Walley, Kempland C.
Farrar, Nicholas
Shams, Kameron
Anastasio, Albert T.
Gong, Davin
Mell, Kristopher
Holmes, James R.
Walton, David M.
Talusan, Paul G.
Surface Pressures in Lower Extremity Splints: A Biomechanical Study
title Surface Pressures in Lower Extremity Splints: A Biomechanical Study
title_full Surface Pressures in Lower Extremity Splints: A Biomechanical Study
title_fullStr Surface Pressures in Lower Extremity Splints: A Biomechanical Study
title_full_unstemmed Surface Pressures in Lower Extremity Splints: A Biomechanical Study
title_short Surface Pressures in Lower Extremity Splints: A Biomechanical Study
title_sort surface pressures in lower extremity splints: a biomechanical study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014985/
https://www.ncbi.nlm.nih.gov/pubmed/36937805
http://dx.doi.org/10.1177/24730114231160115
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