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Compensation strategy of shoulder synergist muscles is not stereotypical in patients with rotator cuff repair.

Jun UmeharaMasahide YagiYasuyuki UedaShusuke NojiriKotono KobayashiTakashi TachibanaKatsuya NobuharaNoriaki Ichihashi
Published in: Journal of orthopaedic research : official publication of the Orthopaedic Research Society (2023)
Rotator cuff tear is a common shoulder injury that causes shoulder dysfunction and pain. Although surgical repair is the primary treatment for rotator cuff tear, it is well recognized that impaired force exertion of muscles connecting to the involved tendon and subsequent complemental change in the force exertion of synergist muscles persist even after repair. This study aimed to identify the compensation strategy of shoulder abductors by examining how synergist muscles respond to supraspinatus muscle force deficit in patients with rotator cuff repair. Muscle shear modulus, an index of muscle force, was assessed for supraspinatus, infraspinatus, upper trapezius, and middle deltoid muscles in repaired and contralateral control shoulders of 15 patients with unilateral tendon repair of the supraspinatus muscle using ultrasound shear wave elastography while the patients passively or actively held their arm in shoulder abduction. In the repaired shoulder, the shear modulus of the supraspinatus muscle declined, whereas that of other synergist muscles did not differ relative to that of the control. To find the association between the affected supraspinatus and each of the synergist muscles, a regression analysis was used to assess the shear moduli at the population level. However, no association was observed between them. At the individual level, there was a tendency of variation among patients with regard to a specific muscle whose shear modulus complementarily increased. These results suggest that the compensation strategy for supraspinatus muscle force deficit varies among individuals, being non-stereotypical in patients with rotator cuff injury. This article is protected by copyright. All rights reserved.
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