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The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts

CONTEXT: The overhand pitch is one of the fastest known human motions and places enormous forces and torques on the upper extremity. Shoulder and elbow pain and injury are common in high-level pitchers. A large body of research has been conducted to understand the pitching motion. EVIDENCE ACQUISITI...

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Autores principales: Chalmers, Peter N., Wimmer, Markus A., Verma, Nikhil N., Cole, Brian J., Romeo, Anthony A., Cvetanovich, Gregory L., Pearl, Michael L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5435152/
https://www.ncbi.nlm.nih.gov/pubmed/28107113
http://dx.doi.org/10.1177/1941738116686545
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author Chalmers, Peter N.
Wimmer, Markus A.
Verma, Nikhil N.
Cole, Brian J.
Romeo, Anthony A.
Cvetanovich, Gregory L.
Pearl, Michael L.
Chalmers, Peter N.
Wimmer, Markus A.
Verma, Nikhil N.
Cole, Brian J.
Romeo, Anthony A.
Cvetanovich, Gregory L.
Pearl, Michael L.
author_facet Chalmers, Peter N.
Wimmer, Markus A.
Verma, Nikhil N.
Cole, Brian J.
Romeo, Anthony A.
Cvetanovich, Gregory L.
Pearl, Michael L.
Chalmers, Peter N.
Wimmer, Markus A.
Verma, Nikhil N.
Cole, Brian J.
Romeo, Anthony A.
Cvetanovich, Gregory L.
Pearl, Michael L.
author_sort Chalmers, Peter N.
collection PubMed
description CONTEXT: The overhand pitch is one of the fastest known human motions and places enormous forces and torques on the upper extremity. Shoulder and elbow pain and injury are common in high-level pitchers. A large body of research has been conducted to understand the pitching motion. EVIDENCE ACQUISITION: A comprehensive review of the literature was performed to gain a full understanding of all currently available biomechanical and clinical evidence surrounding pitching motion analysis. These motion analysis studies use video motion analysis, electromyography, electromagnetic sensors, and markered motion analysis. This review includes studies performed between 1983 and 2016. STUDY DESIGN: Clinical review. LEVEL OF EVIDENCE: Level 5. RESULTS: The pitching motion is a kinetic chain, in which the force generated by the large muscles of the lower extremity and trunk during the wind-up and stride phases are transferred to the ball through the shoulder and elbow during the cocking and acceleration phases. Numerous kinematic factors have been identified that increase shoulder and elbow torques, which are linked to increased risk for injury. CONCLUSION: Altered knee flexion at ball release, early trunk rotation, loss of shoulder rotational range of motion, increased elbow flexion at ball release, high pitch velocity, and increased pitcher fatigue may increase shoulder and elbow torques and risk for injury.
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spelling pubmed-54351522018-01-01 The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts Chalmers, Peter N. Wimmer, Markus A. Verma, Nikhil N. Cole, Brian J. Romeo, Anthony A. Cvetanovich, Gregory L. Pearl, Michael L. Chalmers, Peter N. Wimmer, Markus A. Verma, Nikhil N. Cole, Brian J. Romeo, Anthony A. Cvetanovich, Gregory L. Pearl, Michael L. Sports Health Focus Topic: Baseball CONTEXT: The overhand pitch is one of the fastest known human motions and places enormous forces and torques on the upper extremity. Shoulder and elbow pain and injury are common in high-level pitchers. A large body of research has been conducted to understand the pitching motion. EVIDENCE ACQUISITION: A comprehensive review of the literature was performed to gain a full understanding of all currently available biomechanical and clinical evidence surrounding pitching motion analysis. These motion analysis studies use video motion analysis, electromyography, electromagnetic sensors, and markered motion analysis. This review includes studies performed between 1983 and 2016. STUDY DESIGN: Clinical review. LEVEL OF EVIDENCE: Level 5. RESULTS: The pitching motion is a kinetic chain, in which the force generated by the large muscles of the lower extremity and trunk during the wind-up and stride phases are transferred to the ball through the shoulder and elbow during the cocking and acceleration phases. Numerous kinematic factors have been identified that increase shoulder and elbow torques, which are linked to increased risk for injury. CONCLUSION: Altered knee flexion at ball release, early trunk rotation, loss of shoulder rotational range of motion, increased elbow flexion at ball release, high pitch velocity, and increased pitcher fatigue may increase shoulder and elbow torques and risk for injury. SAGE Publications 2017-01-01 /pmc/articles/PMC5435152/ /pubmed/28107113 http://dx.doi.org/10.1177/1941738116686545 Text en © 2017 The Author(s)
spellingShingle Focus Topic: Baseball
Chalmers, Peter N.
Wimmer, Markus A.
Verma, Nikhil N.
Cole, Brian J.
Romeo, Anthony A.
Cvetanovich, Gregory L.
Pearl, Michael L.
Chalmers, Peter N.
Wimmer, Markus A.
Verma, Nikhil N.
Cole, Brian J.
Romeo, Anthony A.
Cvetanovich, Gregory L.
Pearl, Michael L.
The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts
title The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts
title_full The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts
title_fullStr The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts
title_full_unstemmed The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts
title_short The Relationship Between Pitching Mechanics and Injury: A Review of Current Concepts
title_sort relationship between pitching mechanics and injury: a review of current concepts
topic Focus Topic: Baseball
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5435152/
https://www.ncbi.nlm.nih.gov/pubmed/28107113
http://dx.doi.org/10.1177/1941738116686545
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