Modeling a rotator cuff tear: Individualized shoulder muscle forces influence glenohumeral joint contact force predictions.

Clin Biomech (Bristol)

Department of Mechanical and Aerospace Engineering, North Carolina State University, Engineering Building 3, Campus Box 7910, 911 Oval Drive, Raleigh, NC 27695-7910, USA.

Published: December 2018

AI Article Synopsis

  • Rotator cuff tears in older adults affect muscle forces and force distribution in the shoulder joint, potentially leading to decreased functional performance and increased risk of joint damage.
  • In a study of 14 older individuals, those with rotator cuff tears displayed lower peak joint contact forces in tasks like pulling and axilla washing compared to matched controls.
  • The findings indicate that individualized muscle force data is crucial for accurately predicting joint contact forces, suggesting that rotator cuff tears might lead to instability in the shoulder joint.

Article Abstract

Background: Rotator cuff tears in older individuals may result in decreased muscle forces and changes to force distribution across the glenohumeral joint. Reduced muscle forces may impact functional task performance, altering glenohumeral joint contact forces, potentially contributing to instability or joint damage risk. Our objective was to evaluate the influence of rotator cuff muscle force distribution on glenohumeral joint contact force during functional pull and axilla wash tasks using individualized computational models.

Methods: Fourteen older individuals (age 63.4 yrs. (SD 1.8)) were studied; 7 with rotator cuff tear, 7 matched controls. Muscle volume measurements were used to scale a nominal upper limb model's muscle forces to develop individualized models and perform dynamic simulations of movement tracking participant-derived kinematics. Peak resultant glenohumeral joint contact force, and direction and magnitude of force components were compared between groups using ANCOVA.

Findings: Results show individualized muscle force distributions for rotator cuff tear participants had reduced peak resultant joint contact force for pull and axilla wash (P ≤ 0.0456), with smaller compressive components of peak resultant force for pull (P = 0.0248). Peak forces for pull were within the glenoid. For axilla wash, peak joint contact was directed near/outside the glenoid rim for three participants; predictions required individualized muscle forces since nominal muscle forces did not affect joint force location.

Interpretation: Older adults with rotator cuff tear had smaller peak resultant and compressive forces, possibly indicating increased instability or secondary joint damage risk. Outcomes suggest predicted joint contact force following rotator cuff tear is sensitive to including individualized muscle forces.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6252115PMC
http://dx.doi.org/10.1016/j.clinbiomech.2018.10.004DOI Listing

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