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Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes

OBJECTIVES: Vertical jump performance (height) is a more representative metric for knee function than horizontal hop performance (distance) in healthy individuals. It is not known what the biomechanical status of athletes after anterior cruciate ligament (ACL) reconstruction (ACLR) is at the time th...

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Autores principales: Kotsifaki, Argyro, Van Rossom, Sam, Whiteley, Rod, Korakakis, Vasileios, Bahr, Roald, Sideris, Vasileios, Jonkers, Ilse
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9016240/
https://www.ncbi.nlm.nih.gov/pubmed/35135826
http://dx.doi.org/10.1136/bjsports-2021-104692
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author Kotsifaki, Argyro
Van Rossom, Sam
Whiteley, Rod
Korakakis, Vasileios
Bahr, Roald
Sideris, Vasileios
Jonkers, Ilse
author_facet Kotsifaki, Argyro
Van Rossom, Sam
Whiteley, Rod
Korakakis, Vasileios
Bahr, Roald
Sideris, Vasileios
Jonkers, Ilse
author_sort Kotsifaki, Argyro
collection PubMed
description OBJECTIVES: Vertical jump performance (height) is a more representative metric for knee function than horizontal hop performance (distance) in healthy individuals. It is not known what the biomechanical status of athletes after anterior cruciate ligament (ACL) reconstruction (ACLR) is at the time they are cleared to return to sport (RTS) or whether vertical performance metrics better evaluate knee function. METHODS: Standard marker-based motion capture and electromyography (EMG) were collected from 26 male athletes cleared to RTS after ACLR and 22 control healthy subjects during single leg vertical jumps (SLJ) and single leg drop jumps (SLDJ). Performance outcomes, jump height and the Reactive Strength Index, were calculated. Sagittal plane kinematics, joint moments and joint work were obtained using inverse dynamics and lower limb muscle forces were computed using an EMG-constrained musculoskeletal model. Muscle contribution was calculated as a percentage of the impulse of all muscle forces in the model. Between-limb and between-group differences were explored using mixed models analyses. RESULTS: Jump performance, assessed by jump height and Reactive Strength Index, was significantly lower in the involved than the uninvolved limb and controls, with large effect sizes. For the ACLR group, jump height limb symmetry index was 83% and 77% during the SLJ and SLDJ, respectively. Work generation was significantly less in the involved knee compared to uninvolved limb and controls during the SLJ (p<0.001; d=1.19; p=0.003, d=0.91, respectively) and during the SLDJ (p<0.001; d=1.54; p=0.002, d=1.05, respectively). Hamstrings muscle contribution was greater in the involved compared to the uninvolved limb and controls, whereas soleus contribution was lower in the involved limb compared to controls. CONCLUSIONS: During vertical jumps, male athletes after ACLR at RTS still exhibit knee biomechanical deficits, despite symmetry in horizontal functional performance and strength tests. Vertical performance metrics like jump height and RSI can better identify interlimb asymmetries than the more commonly used hop distance and should be included in the testing battery for the RTS.
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spelling pubmed-90162402022-05-04 Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes Kotsifaki, Argyro Van Rossom, Sam Whiteley, Rod Korakakis, Vasileios Bahr, Roald Sideris, Vasileios Jonkers, Ilse Br J Sports Med Original Research OBJECTIVES: Vertical jump performance (height) is a more representative metric for knee function than horizontal hop performance (distance) in healthy individuals. It is not known what the biomechanical status of athletes after anterior cruciate ligament (ACL) reconstruction (ACLR) is at the time they are cleared to return to sport (RTS) or whether vertical performance metrics better evaluate knee function. METHODS: Standard marker-based motion capture and electromyography (EMG) were collected from 26 male athletes cleared to RTS after ACLR and 22 control healthy subjects during single leg vertical jumps (SLJ) and single leg drop jumps (SLDJ). Performance outcomes, jump height and the Reactive Strength Index, were calculated. Sagittal plane kinematics, joint moments and joint work were obtained using inverse dynamics and lower limb muscle forces were computed using an EMG-constrained musculoskeletal model. Muscle contribution was calculated as a percentage of the impulse of all muscle forces in the model. Between-limb and between-group differences were explored using mixed models analyses. RESULTS: Jump performance, assessed by jump height and Reactive Strength Index, was significantly lower in the involved than the uninvolved limb and controls, with large effect sizes. For the ACLR group, jump height limb symmetry index was 83% and 77% during the SLJ and SLDJ, respectively. Work generation was significantly less in the involved knee compared to uninvolved limb and controls during the SLJ (p<0.001; d=1.19; p=0.003, d=0.91, respectively) and during the SLDJ (p<0.001; d=1.54; p=0.002, d=1.05, respectively). Hamstrings muscle contribution was greater in the involved compared to the uninvolved limb and controls, whereas soleus contribution was lower in the involved limb compared to controls. CONCLUSIONS: During vertical jumps, male athletes after ACLR at RTS still exhibit knee biomechanical deficits, despite symmetry in horizontal functional performance and strength tests. Vertical performance metrics like jump height and RSI can better identify interlimb asymmetries than the more commonly used hop distance and should be included in the testing battery for the RTS. BMJ Publishing Group 2022-05 2022-02-08 /pmc/articles/PMC9016240/ /pubmed/35135826 http://dx.doi.org/10.1136/bjsports-2021-104692 Text en © Author(s) (or their employer(s)) 2022. Re-use permitted under CC BY. Published by BMJ. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed in accordance with the Creative Commons Attribution 4.0 Unported (CC BY 4.0) license, which permits others to copy, redistribute, remix, transform and build upon this work for any purpose, provided the original work is properly cited, a link to the licence is given, and indication of whether changes were made. See: https://creativecommons.org/licenses/by/4.0/.
spellingShingle Original Research
Kotsifaki, Argyro
Van Rossom, Sam
Whiteley, Rod
Korakakis, Vasileios
Bahr, Roald
Sideris, Vasileios
Jonkers, Ilse
Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes
title Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes
title_full Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes
title_fullStr Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes
title_full_unstemmed Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes
title_short Single leg vertical jump performance identifies knee function deficits at return to sport after ACL reconstruction in male athletes
title_sort single leg vertical jump performance identifies knee function deficits at return to sport after acl reconstruction in male athletes
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9016240/
https://www.ncbi.nlm.nih.gov/pubmed/35135826
http://dx.doi.org/10.1136/bjsports-2021-104692
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