Computational Sensitivity Analysis to Identify Muscles That Can Mechanically Contribute to Shoulder Deformity Following Brachial Plexus Birth Palsy

被引:16
作者
Crouch, Dustin L.
Plate, Johannes F.
Li, Zhongyu [1 ]
Saul, Katherine R.
机构
[1] Wake Forest Sch Med, Dept Orthopaed Surg, Winston Salem, NC 27157 USA
来源
JOURNAL OF HAND SURGERY-AMERICAN VOLUME | 2014年 / 39卷 / 02期
关键词
Biomechanics; brachial plexus; deformity; shoulder; simulation; ELBOW FLEXION CONTRACTURE; LATISSIMUS-DORSI TRANSFER; GLENOHUMERAL JOINT; OSSEOUS DEFORMITY; UPPER EXTREMITY; CHILDREN; SUBSCAPULARIS; BIOMECHANICS; SECONDARY; SIMULATION;
D O I
10.1016/j.jhsa.2013.10.027
中图分类号
R826.8 [整形外科学]; R782.2 [口腔颌面部整形外科学]; R726.2 [小儿整形外科学]; R62 [整形外科学(修复外科学)];
学科分类号
摘要
Purpose Two mechanisms, strength imbalance or impaired longitudinal muscle growth, potentially cause osseous and postural shoulder deformity in children with brachial plexus birth palsy. Our objective was to determine which muscles, via either deformity mechanism, were mechanically capable of producing forces that could promote shoulder deformity. Methods In an upper limb computational musculoskeletal model, we simulated strength imbalance by allowing each muscle crossing the shoulder to produce 30% of its maximum force. To simulate impaired longitudinal muscle growth, the functional length of each muscle crossing the shoulder was reduced by 30%. We performed a sensitivity analysis to identify muscles that, through either simulated deformity mechanism, increased the posteriorly directed, compressive glenohumeral joint force consistent with osseous deformity or reduced the shoulder external rotation or abduction range of motion consistent with postural deformity. Results Most of the increase in the posterior glenohumeral joint force by the strength imbalance mechanism was caused by the subscapularis, latissimus dorsi, and infraspinatus. Posterior glenohumeral joint force increased the most owing to impaired growth of the infraspinatus, subscapularis, and long head of biceps. Through the strength imbalance mechanism, the subscapularis, anterior deltoid, and pectoralis major muscles reduced external shoulder rotation by 28 degrees, 17 degrees, and 10 degrees, respectively. Shoulder motion was reduced by 40 degrees to 56 degrees owing to impaired growth of the anterior deltoid, subscapularis, and long head of triceps. Conclusions The infraspinatus, subscapularis, latissimus dorsi, long head of biceps, anterior deltoid, pectoralis major, and long head of triceps were identified in this computational study as being the most capable of producing shoulder forces that may contribute to shoulder deformity following brachial plexus birth palsy. Clinical relevance The muscles mechanically capable of producing deforming shoulder forces should be the focus of experimental studies investigating the musculoskeletal consequences of brachial plexus birth palsy and are potentially critical targets for treating shoulder deformity. (Copyright (C) 2014 by the American Society for Surgery of the Hand. All rights reserved.)
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页码:303 / 311
页数:9
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