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Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes

BACKGROUND: The incidence of ACL injuries continues to rise secondary to an increase in sport participation. Evidence supports the use of force plate testing to quantify kinetics during rehabilitation after injury and recovery; however, there is limited current research regarding if jump kinetics ca...

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Autores principales: Pontillo, Marisa, Hines, Shawn M, Sennett, Brian J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: NASMI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7872458/
https://www.ncbi.nlm.nih.gov/pubmed/33604145
http://dx.doi.org/10.26603/001c.18819
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author Pontillo, Marisa
Hines, Shawn M
Sennett, Brian J
author_facet Pontillo, Marisa
Hines, Shawn M
Sennett, Brian J
author_sort Pontillo, Marisa
collection PubMed
description BACKGROUND: The incidence of ACL injuries continues to rise secondary to an increase in sport participation. Evidence supports the use of force plate testing to quantify kinetics during rehabilitation after injury and recovery; however, there is limited current research regarding if jump kinetics can identify athletes who are at higher risk for injury. Altered kinetics could potentially lead to abnormal force dissipation and resultant injury. PURPOSE: The purpose of this investigation was to identify whether the force-time variables from vertical jumps could predict ACL injuries in collegiate athletes. STUDY DESIGN: Retrospective cohort. METHODS: Vertical jump testing is performed by all healthy varsity collegiate athletes at several intervals throughout the athletic year at a Division I institution using a commercially available force plate system with dedicated software. Athletes who sustained an ACL injury between 1/1/15 and 6/1/19 were identified (n=16) and compared to healthy athletes who participated in the same sports (n = 262). ACL injuries were considered for this study if they occurred no more than 10 weeks after a jump test. The outcome variables were load, explode, and drive, operationally defined as the average eccentric rate of force development, average relative concentric force, and concentric relative impulse, respectively, which the system normalized to T scores. Mann-Whitney U tests were used to assess group differences for load, explode, drive, and the ratio between the variables. Logistic regression was used to determine if the battery of variables could predict whether or not an athlete would sustain an ACL injury. The p-value was set to 0.10 for the Mann-Whitney U tests, and 0.05 for the logistic regression. RESULTS: Significant differences between the ACL and healthy groups were seen for explode (p=0.08), drive (p=0.06), load:explode ratio (p=0.06), and explode:drive ratio (p=0.03). Explode and drive, when entered into the regression equation, showed the ability to predict injury, [Formula: see text] = 6.8, df = 2, p=0.03. CONCLUSIONS: The vertical jump force plate variables were able to identify athletes who sustained an ACL injury within 66 days of testing. Athletes who sustained an ACL injury demonstrated altered kinetics and less ability to transmit forces during the vertical jump. LEVEL OF EVIDENCE: 3.
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spelling pubmed-78724582021-02-17 Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes Pontillo, Marisa Hines, Shawn M Sennett, Brian J Int J Sports Phys Ther Original Research BACKGROUND: The incidence of ACL injuries continues to rise secondary to an increase in sport participation. Evidence supports the use of force plate testing to quantify kinetics during rehabilitation after injury and recovery; however, there is limited current research regarding if jump kinetics can identify athletes who are at higher risk for injury. Altered kinetics could potentially lead to abnormal force dissipation and resultant injury. PURPOSE: The purpose of this investigation was to identify whether the force-time variables from vertical jumps could predict ACL injuries in collegiate athletes. STUDY DESIGN: Retrospective cohort. METHODS: Vertical jump testing is performed by all healthy varsity collegiate athletes at several intervals throughout the athletic year at a Division I institution using a commercially available force plate system with dedicated software. Athletes who sustained an ACL injury between 1/1/15 and 6/1/19 were identified (n=16) and compared to healthy athletes who participated in the same sports (n = 262). ACL injuries were considered for this study if they occurred no more than 10 weeks after a jump test. The outcome variables were load, explode, and drive, operationally defined as the average eccentric rate of force development, average relative concentric force, and concentric relative impulse, respectively, which the system normalized to T scores. Mann-Whitney U tests were used to assess group differences for load, explode, drive, and the ratio between the variables. Logistic regression was used to determine if the battery of variables could predict whether or not an athlete would sustain an ACL injury. The p-value was set to 0.10 for the Mann-Whitney U tests, and 0.05 for the logistic regression. RESULTS: Significant differences between the ACL and healthy groups were seen for explode (p=0.08), drive (p=0.06), load:explode ratio (p=0.06), and explode:drive ratio (p=0.03). Explode and drive, when entered into the regression equation, showed the ability to predict injury, [Formula: see text] = 6.8, df = 2, p=0.03. CONCLUSIONS: The vertical jump force plate variables were able to identify athletes who sustained an ACL injury within 66 days of testing. Athletes who sustained an ACL injury demonstrated altered kinetics and less ability to transmit forces during the vertical jump. LEVEL OF EVIDENCE: 3. NASMI 2021-02-01 /pmc/articles/PMC7872458/ /pubmed/33604145 http://dx.doi.org/10.26603/001c.18819 Text en https://creativecommons.org/licenses/by-nc-sa/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike License (4.0) (https://creativecommons.org/licenses/by-nc-sa/4.0/) which permits non-commercial use, distribution, and reproduction in any medium, provided the original author and source are credited. If you remix, transform, or build upon this work, you must distribute your contributions under the same license as the original.
spellingShingle Original Research
Pontillo, Marisa
Hines, Shawn M
Sennett, Brian J
Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes
title Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes
title_full Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes
title_fullStr Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes
title_full_unstemmed Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes
title_short Prediction of ACL Injuries from Vertical Jump Kinetics in Division 1 Collegiate Athletes
title_sort prediction of acl injuries from vertical jump kinetics in division 1 collegiate athletes
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7872458/
https://www.ncbi.nlm.nih.gov/pubmed/33604145
http://dx.doi.org/10.26603/001c.18819
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