Establishing Normative Measurements and Ratios for Rotator Cuff Muscles in a Military Population Using Diagnostic Ultrasound
Powell, J. E.; Loftsgaarden, M. R.; Smith, M. S.; Southwell, A.; Abboud Chalhoub, C.; Roberts, K.; Boeth, R. R.; Wise, S. R.; Yuan, X.
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IntroductionRotator cuff (RTC) muscle size is predictive of shoulder function and potential pathology following injuries. Ultrasound (US) can differentiate normative from pathologic RTC musculature, and inform the diagnosis of shoulder pathology and treatment selection for more efficient, patient-centered care. This studys objective was to establish normative sonographic measurements and ratios for RTC musculature within a military population. MethodsIn this cross-sectional observational study at three military treatment facilities, military beneficiaries underwent a standardized US scanning protocol to measure the upper trapezius (UT), supraspinatus (SS), infraspinatus (IS), and teres minor (TM) muscle dimensions. Ratios of these dimensions were calculated, compared to adjacent muscles. Results128 participants (52 female; 88.2% active duty, mean age: 32.9 years; 231 shoulders) were enrolled, excluding shoulders with a history of significant injury or surgery. Mean and standard deviation (SD) for UT and SS thickness (mm) were 8.8 {+/-} 2.2 and 22.2 {+/-} 4.1, respectively. Mean and SD for SS, IS, and TM cross-sectional area (CSA; cm2) were 6.48 {+/-} 1.82, 8.65 {+/-} 2.79, and 4.19 {+/-} 1.45, respectively. Ratios (mean {+/-} SD) for UT:SS thickness, SS:IS CSA, and IS:TM CSA were as follows: 0.41 {+/-} 0.13, 0.77 {+/-} 0.19, 2.17 {+/-} 0.73. Subgroup analyses demonstrated significantly larger dominant-sided RTC muscle dimensions for biological males than females (p < 0.01), but corresponding ratios were not significantly different. ConclusionThis is the largest US study to date to examine RTC musculature, establishing normative sonographic measurements and ratios in a military population. Future research should determine if RTC muscle ratios are more predictive than absolute dimensions of shoulder pathology in symptomatic personnel, to guide clinical decision-making and optimize warfighter readiness. Key MessagesO_LIUS offers a cost-effective, efficient, and validated alternative to MRI for assessing RTC muscle size, which can be predictive of shoulder function and pathology. C_LIO_LIThis study established normative sonographic measurements and ratios for RTC muscle dimensions in an active, healthy, military population, providing a robust reference that accounts for demographic differences, such as biological sex, which can affect absolute muscle size. C_LIO_LIBy introducing muscle dimension ratios as a diagnostic tool, this study enhances the potential for personalized assessment of shoulder health, which can enable more timely, accurate diagnosis and patient-centered treatment plans, ultimately optimizing warfighter readiness. C_LIO_LIFurther research is needed to determine the predictive value of RTC muscle ratios for specific shoulder pathologies (e.g., RTC tendon tear, denervation), compared to absolute RTC muscle dimensions alone. C_LI
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