| 1. |
Di Benedetto P, Mancuso F, Tosolini L, et al. Treatment options for massive rotator cuff tears: a narrative review[J/OL]. Acta Biomed, 2021, 2(S3): e2021026. doi: 10.23750/abm.v92iS3.11766.
|
| 2. |
Hinsley H, Ganderton C, Arden NK, 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/OL]. BMJ Open, 2022, 12(9): e059175. doi: 10.1136/bmjopen-2021-059175.
|
| 3. |
Ardebol J, Hwang S, Horinek JL, et al. A Step-by-step approach to arthroscopic repair of massive rotator cuff tears[J/OL]. Arthrosc Tech, 2023, 12(3): e377-e382. doi: 10.1016/j.eats.2022.11.019.
|
| 4. |
吳云軍, 王華軍, 鄭小飛. 肩袖修補術后再撕裂危險因素的研究進展[J/OL] . 中華老年骨科與康復電子雜志, 2019, 5(6) : 359-364. doi: 10.3877/cma.j.issn.2096-0263.2019.06.010.
|
| 5. |
Muniandy M, Niglis L, Claude Dosch J, et al. Postoperative rotator cuff integrity: can we consider type 3 Sugaya classification as retear?[J]. J Shoulder Elbow Surg, 2021, 30(1): 97-103.
|
| 6. |
Darbandi A, Credille K, Darbandi A, et al. Fatty infiltration, tear size, and retraction size are significant risk factors for retear after arthroscopic rotator cuff repair: a systematic review[J/OL]. Arthroscopy, 2025, 41(5): 1649-1666.e3. doi: 10.1016/j.arthro.2024.06.040.
|
| 7. |
MoorBK, BouaichaS, RothenfluhDA, et al. Is there an association between the individual anatomy of the scapula and the development of rotator cuff tears or osteoarthritis of the glenohumeral joint? A radiological study of the critical shoulder angle[J]. Bone Joint J, 2013, 95-B(7): 935-941.
|
| 8. |
郭斯翊, 朱以明, 魯誼, 等. 止點內移修復大型及巨大肩袖撕裂臨床與影像學隨訪研究[J]. 中國修復重建外科雜志, 2023, 37(4): 391-397.
|
| 9. |
Somerson JS, Hsu JE, Gorbaty JD, et al. Classifications in brief: Goutallier classification of fatty infiltration of the rotator cuff musculature[J]. Clin Orthop Relat Res, 2016, 474(5): 1328-1332.
|
| 10. |
Wu HT, Liu Q, Lin JH. Fatty infiltration predicts retear and functional impairment following rotator cuff repair: systematic review and meta-analysis[J/OL]. J Orthop Surg Res, 2025, 20(1): 303. doi: 10.1186/s13018-025-05702-6.
|
| 11. |
Zhou T, Han C, Weng X. Present situation and development prospects of the diagnosis and treatment of rotator cuff tears[J/OL]. Front Surg, 2023, 10: 857821. doi: 10.3389/fsurg.2023.857821.
|
| 12. |
Hu Y, Chen S, Zhang H, et al. Development and validation of a risk prediction model for re-tear after arthroscopic rotator cuff repair[J/OL]. Sci Rep, 2025, 15(1): 38778. doi: 10.1038/s41598-025-22670-3.
|
| 13. |
Bowen E, Waque A, Su F, et al. Muscle health & fatty infiltration with advanced rotator cuff pathology[J]. Curr Rev Musculoskelet Med, 2025, 18(4): 160-172.
|
| 14. |
Takeda Y, Fujii K, Suzue N, et al. A modified Patte classification system for rotator cuff tendon retraction to predict reparability and tendon healing in arthroscopic rotator cuff repair[J]. Knee Surg Sports Traumatol Arthrosc, 2024, 32(6): 1579-1590.
|
| 15. |
郭斯翊, 朱以明, 魯誼, 等. 大型及巨大肩袖撕裂修復的不可修復性與術后再撕裂的危險因素研究[J]. 中國運動醫學雜志, 2022, 41(9): 665-673.
|
| 16. |
Wang G, Liu C, Wang J, et al. Risk factors for healing failure after arthroscopic rotator cuff repair in small to medium-sized tears: a retrospective cohort study[J/OL]. Front Surg, 2024, 11: 1456540. doi: 10.3389/fsurg.2024.1456540.
|
| 17. |
Hamie QM, Huber FA, Grunder V, et al. Added value of combined acromiohumeral distance and critical shoulder angle measurements on conventional radiographs for the prediction of rotator cuff pathology[J/OL]. Eur J Radiol Open, 2022, 9: 100416. doi: 10.1016/j.ejro.2022.100416.
|
| 18. |
Kholinne E, Kwak JM, Sun Y, et al. The relationship between rotator cuff integrity and acromiohumeral distance following open and arthroscopic rotator cuff repair[J/OL]. SICOT J, 2021, 7: 23. doi: 10.1051/sicotj/2021012.
|
| 19. |
K?l?? E, Bing?l O, ?zdemir G, et al. The effect of reduced acromiohumeral distance and increased acromial thickness on the risk of rotator cuff tear[J]. Acta Orthop Traumatol Turc, 2023, 57(6): 348-351.
|
| 20. |
黃子帥, 王健. 關節鏡下肩袖撕裂修補后再撕裂的非手術性影響因素[J]. 中國組織工程研究, 2025, 29(27): 5914-5923.
|
| 21. |
于萬濤, 俞明晨. 肩袖損傷修復術后再撕裂的相關因素與預測[J]. 中國矯形外科雜志, 2024, 32(23): 2140-2145.
|
| 22. |
Schiefer M, Naliato E, Oliveira R, et al. MRI is a reliable method for measurement of critical shoulder angle and acromial index[J/OL]. Rev Bras Ortop (Sao Paulo), 2023, 58(5): e719-e726.
|
| 23. |
Gürp?nar T, Polat B, ?ark?? E, et al. The effect of critical shoulder angle on clinical scores and retear risk after rotator cuff tendon repair at short-term follow up[J/OL]. Sci Rep, 2019, 9(1): 12315. doi: 10.1038/s41598-019-48644-w.
|
| 24. |
Mandaleson A. Re-tears after rotator cuff repair: Current concepts review[J]. J Clin Orthop Trauma, 2021, 19: 168-174.
|
| 25. |
Kirsch JM, Nathani A, Robbins CB, et al. Is there an association between the “critical shoulder angle” and clinical outcome after rotator cuff repair?[J]. Orthop J Sports Med, 2017, 5(4): 2325967117702126. doi: 10.1177/2325967117702126.
|
| 26. |
Hong G, Kong X, Zhang L, et al. Changes in the lateral acromion angle in rotator cuff tear patients with acromioplasty[J]. Orthop Surg, 2024, 16(2): 471-480.
|
| 27. |
Hanciau FA, da Silva MA, Martins FS, et al. Association clinical-radiographic of the acromion índex and the lateral acromion angle[J]. Rev Bras Ortop, 2015, 47(6): 730-735.
|
| 28. |
Nyffeler RW, Werner CM, Sukthankar A, et al. Association of a large lateral extension of the acromion with rotator cuff tears[J]. J Bone Joint Surg (Am), 2006, 88(4): 800-805.
|
| 29. |
Miyazaki AN, Fregoneze M, Santos PD, et al. Radiographic study on the acromion index and its relationship with rotator cuff tears[J]. Rev Bras Ortop, 2015, 45(2): 151-154.
|
| 30. |
陳哲, 陳慶東, 季瑩瑤, 等. MRI影像學指標與肩峰下撞擊綜合征的相關性研究[J]. 中國醫院統計, 2014, 21(3): 161-163.
|
| 31. |
Melean P, Lichtenberg S, Montoya F, et al. The acromial index is not predictive for failed rotator cuff repair[J]. Int Orthop, 2013, 37(11): 2173-2179.
|
| 32. |
Ateschrang A, Eggensperger F, Ahrend MD, et al. Obesity causes poorer clinical results and higher re-tear rates in rotator cuff repair[J]. Arch Orthop Trauma Surg, 2018, 138(6): 835-842.
|
| 33. |
Weber S, Chahal J. Management of rotator cuff injuries[J/OL]. J Am Acad Orthop Surg, 2020, 28(5): e193-e201. doi: 10.5435/JAAOS-D-19-00463.
|
| 34. |
Herzberg SD, Zhao Z, Freeman TH, et al. Obesity is associated with muscle atrophy in rotator cuff tear[J/OL]. BMJ Open Sport Exerc Med, 2024, 10(2): e001993. doi: 10.1136/bmjsem-2024-001993.
|
| 35. |
Caughey WJ, Maher A, Leigh WB, et al. Impact of smoking on pain and function in rotator cuff repair: a prospective 5-year cohort follow-up of 1383 patients[J]. ANZ J Surg, 2021, 91(10): 2153-2158.
|
| 36. |
Schmidt CM, Chebli CM. All forms of tobacco products adversely affect rotator cuff healing: commentary on an article by Tae-Hwan Yoon, MD, PhD, et al. : “Heated Tobacco Products Have Detrimental Effects on Rotator Cuff Healing, Similar to Conventional Cigarettes”[J/OL]. J Bone Joint Surg (Am), 2024, 106(10): e23. doi: 10.2106/JBJS.24.00192.
|
| 37. |
Zabrzynski J, Gagat M, Paczesny L, et al. Correlation between smoking and neovascularization in biceps tendinopathy: a functional preoperative and immunohistochemical study[J/OL]. Ther Adv Chronic Dis, 2020, 11: 2040622320956418. doi: 10.1177/2040622320956418.
|
| 38. |
Jensen K, Nizamutdinov D, Guerrier M, et al. General mechanisms of nicotine-induced fibrogenesis[J]. FASEB J, 2012, 26(12): 4778-4787.
|
| 39. |
Tashjian RZ, Hollins AM, Kim HM, et al. Factors affecting healing rates after arthroscopic double-row rotator cuff repair[J]. Am J Sports Med, 2010, 38(12): 2435-2442.
|
| 40. |
Sabo MT, LeBlanc J, Hildebrand KA. Patient gender and rotator cuff surgery: are there differences in outcome?[J/OL]. BMC Musculoskelet Disord, 2021, 22(1): 838. doi: 10.1186/s12891-021-04701-y.
|
| 41. |
Harley JD, Ray LJ, Olson CP, et al. Rates of retear following rotator cuff repair are similar between men and women[J]. JSES Int, 2025, 9(3): 691-697.
|