| [1] |
Hannah H, Charlotte G, Nigel KA,et al. Prevalence of rotator cuff tendon tears and symptoms in a Chingford general population cohort, and the resultant impact on UK health services: a cross-sectional observational study[J]. BMJ Open,2022, 12(9):e059175.
|
| [2] |
Giri A, Freeman TH, Kim P, et al. Obesity and sex influence fatty infiltration of the rotator cuff: the Rotator Cuff outcomes Workgroup (ROW) and Multicenter Orthopaedic Outcomes Network (MOON) cohorts[J]. J Shoulder Elbow Surg,2022, 31(4):726-735.
|
| [3] |
Daisuke M, Azuma K, Ke YW, et al. Histologic and ultrastructural degeneration of rotator cuff tendons in elderly patients with glenohumeral arthritis and cuff tear arthropathy[J]. BMC Surg,2025,25(1):281.
|
| [4] |
Laia RS, Sana S, Staffan H,et al. EPAC1 enhances brown fat growth and beige adipogenesis[J]. Nat Cell Biol,2024,26(1):113-123.
|
| [5] |
Wu HT, Liu Q, Lin JH. Fatty infiltration predicts retear and functional impairment following rotator cuff repair: systematic review and meta-analysis[J]. J Orthop Surg Res,2025, 20(1):303.
|
| [6] |
Amil S, Derek LJ, Marcus H,et al. Fibroadipogenic progenitor cell response peaks prior to progressive fatty infiltration after rotator cuff tendon tear[J]. J Orthop Res,2022,40(12):2743-2753.
|
| [7] |
Michael RD, Hannah C, Gurbani K,et al. Rotator Cuff Tear Size Regulates Fibroadipogenic Progenitor Number and Gene Expression Profile in the Supraspinatus Independent of Patient Age[J]. Am J Sports Med,2022, 50(1):208-215.
|
| [8] |
Lin Xz, Wang P, Wang W, et al. Suppressed Akt/GSK-3β/β-catenin signaling contributes to excessive adipogenesis of fibro-adipogenic progenitors after rotator cuff tears[J]. Cell Death Discov, 2023, 9(1):312.
|
| [9] |
Otsuka T, Kan HM, Mengsteab PY, et al. Fibroblast growth factor 8b (FGF-8b) enhances myogenesis and inhibits adipogenesis in rotator cuff muscle cell populations in vitro[J]. Proc Natl Acad Sci U S A, 2024, 121(1):e2314585121.
|
| [10] |
Katherine LM, Ashley K, Jim KL,et al. The Independent Effect of Nerve Injury and Tendon Injury on Rotator Cuff Fatty Infiltration[J]. Am J Sports Med,2025, 53(14):3498-3505.
|
| [11] |
Se YL, Dong MK, Sae HK. Outcomes After Rotator Cuff Repair With Transverse Scapular Ligament Release in Patients With Severe Fatty Degeneration of the Infraspinatus[J].Am J Sports Med,2023,51(14):3810-3816.
|
| [12] |
Néstor RS, Jeremy L, Michener Lori A,et al. International physical therapists consensus on clinical descriptors for diagnosing rotator cuff related shoulder pain: A Delphi study[J]. Braz J Phys Ther,2022,26(2):100395.
|
| [13] |
Yuki Y, Atsushi Y. Relationship between humeral head translation, spur formations, and the locations of tendon tears in massive rotator cuff tears[J]. BMC Res Notes,2025, 18(1):39.
|
| [14] |
Jeroen JR, Syert LN, Matthijs PS, et al. The value of radiographic markers in the diagnostic work-up of rotator cuff tears, an arthroscopic correlated study[J]. Skeletal Radiol, 2020, 49(1):55-64.
|
| [15] |
Ali SF, Alexander L, David N,et al. Diagnostic Accuracy of Ultrasonography for Rotator Cuff Tears: A Systematic Review and Meta-analysis[J]. Orthop J Sports Med, 2021, 9(10):23259671211035106.
|
| [16] |
Goutallier D, Postel JM, Bernageau J, et al. Fatty muscle degeneration in cuff ruptures. Pre- and postoperative evaluation by CT scan[J]. Clin Orthop Relat Res, 1994, (304):78-83.
|
| [17] |
Lee E , Choi JA, Joo HH, et al. Fatty degeneration of the rotator cuff muscles on pre- and postoperative CT arthrography (CTA): is the Goutallier grading system reliable?[J]. Skeletal Radiol, 2013,42(9):1259-1267.
|
| [18] |
Fuchs B, Weishaupt D, Zanetti M , et al. Fatty degeneration of the muscles of the rotator cuff: assessment by computed tomography versus magnetic resonance imaging[J]. J Shoulder Elbow Surg, 1999, 8(6):599-605.
|
| [19] |
Michael JK, Gabriel JR, Stephen CH, et al. A positive tangent sign predicts the repairability of rotator cuff tears[J]. J Shoulder Elbow Surg, 2014, 23(6):1023-1027.
|
| [20] |
Georg CF, Benjamin F, Adrian AM,et al. Assessment of the Rotator Cuff Muscles: State-of-the-Art MRI and Clinical Implications[J]. Radiology, 2025, 315(2):e242131.
|
| [21] |
Atsushi A, Nobuyuki Y, Kazuma S,et al. Quantitative evaluation of fatty change in rotator cuff muscles using the Otsu thresholding method[J]. J Shoulder Elbow Surg, 2026, 35(1):200-208.
|
| [22] |
Lee D, Hong KT, Lee W, et al. Threshold-based quantification of fatty degeneration in the supraspinatus muscle on MRI as an alternative method to Goutallier classification and single-voxel MR spectroscopy[J]. BMC Musculoskelet Disord, 2020, 21(1):362.
|
| [23] |
Davis DL, Almardawi R, Henn 3rd RF, et al. Correlation of quantitative versus semiquantitative measures of supraspinatus intramuscular fatty infiltration to shoulder range of motion and strength: a pilot study[J]. Curr Probl Diagn Radiol, 2020, 49(6):466-472.
|
| [24] |
Bettina H, Christoph G, Georg CF,et al. Natural History of Quantitative Fatty Infiltration and 3D Muscle Volume After Nonoperative Treatment of Symptomatic Rotator Cuff Tears: A Prospective MRI Study of 79 Patients[J]. J Bone Joint Surg Am, 2024, 106(8):690-699.
|
| [25] |
Shiro K, Ko C, Tatsunari A,et al. Associations between fatty infiltration of rotator cuff muscles and tear size or location of rotator cuff tendon[J]. Front Surg, 2024, 11:1416921.
|
| [26] |
Su CK, Seung JY, Je HJ,et al. The impact of supraspinatus tear on subscapularis muscle atrophy and fatty infiltration[J]. Clin Shoulder Elbow, 2024,27(4):437-446.
|
| [27] |
Ailsa W, Simon BM. Fatty infiltration in the intact supraspinatus tendon;a normal physiological response with increasing age and female gender[J]. Shoulder Elbow, 2022,14(5):510-514.
|
| [28] |
Natalie KK, Nicole JH, Stephanie EW. Treatment Options for Massive Irreparable Rotator Cuff Tears[J]. Curr Rev Musculoskelet Med,2021,14(5):304-315.
|
| [29] |
Jonas P, Marco CR, Bastian S,et al. Management of Irreparable Posterosuperior Rotator Cuff Tears-A Current Concepts Review and Proposed Treatment Algorithm by the AGA Shoulder Committee[J]. J Pers Med, 2023,13(2):191.
|
| [30] |
Kim JH, Min YK, Jang YC,et al. Serial Changes of Fatty Degeneration and Clinical Outcomes after Repair of Medium-Sized Rotator Cuff Tears[J]. Clin Orthop Surg, 2024,16(1):95-104.
|
| [31] |
Keisuke M, Hiroyuki S, Norimasa T,et al. Fatty Degeneration of the Rotator Cuff Muscles Improves in Shoulders with Successful Arthroscopic Rotator Cuff Repair: A Prospective Study Using Quantitative T2 Mapping Techniques, with 2-Year Follow-up[J]. JB JS Open Access, 2024,9(1):e23.00083.
|
| [32] |
Edward B, Aboubacar W, Favian S,et al. Muscle Health & Fatty Infiltration with Advanced Rotator Cuff Pathology[J]. Curr Rev Musculoskelet Med,2025, 18(4):160-172.
|
| [33] |
Mauro CP, Cládis LS, Pedro CM, et al. Critical Predictors of the Outcomes of Rotator Cuff Arthroscopic Repair[J]. Rev Bras Ortop (Sao Paulo),2025, 60(1):s00451802963.
|
| [34] |
Philipp K, Jethin J, Stefan K,et al. 3D Muscle Volume and 3D Fat Fraction After Successful and Failed Arthroscopic Rotator Cuff Repair at 5-Year Follow-up[J]. Am J Sports Med, 2025, 53(3):571-582.
|
| [35] |
Mosich GM, Husman R, Shah P, et al. Nonfibro-adipogenic pericytes from human embryonic stem cells attenuate degeneration of the chronically injured mouse muscle[J]. JCI Insight, 2019,4(24):e125334.
|
| [36] |
Sharma AK, Levian B,Shah P,et al. Aged Mice Demonstrate Greater Muscle Degeneration of Chronically Injured Rotator Cuff[J]. J Orthop Res,2020,38(2):320-328.
|
| [37] |
Wu B, Zhang T, Chen HB, et al. Exosomes derived from bone marrow mesenchymal stem cell preconditioned by low-intensity pulsed ultrasound stimulation promote bone-tendon interface fibrocartilage regeneration and ameliorate rotator cuff fatty infiltration[J]. J Orthop Translat, 2024, 48:89-106.
|
| [38] |
Fu CC, Huang AH, Leesa MG,et al. Cellular and molecular modulation of rotator cuff muscle pathophysiology[J]. J Orthop Res, 2021, 39(11):2310-2322.
|
| [39] |
Brian K, Ziba G, Marnee JM,et al. Developing a three-dimensional convolutional neural network for automated full-volume multi-tissue segmentation of the shoulder with comparisons to Goutallier classification and partial volume muscle quality analysis[J].J Shoulder Elbow Surg, 2025, 34(9):2224-2238.
|
| [40] |
Asma S, Kristine I, Ignacio V,et al. Trustworthy deep learning for the automated quantification of the fatty infiltration of the rotator cuff muscles using magnetic resonance imaging[J]. JSES Int, 2025, 9(6):1999-2007.
|