Elasticity of the Coracoacromial Ligament in Shoulders with Rotator Cuff Tears: Measurement with Ultrasound Elastography
- 1 Department of Orthopedic Surgery, Graduate School of Medicine, Akita University, Akita, Japan
- 2 Department of Orthopedic Surgery, Johto Orthopedic Clinic, Akita, Japan
- 3 Department of Orthopedic Surgery, Yokote Municipal Hospital, Yokote, Japan
- 4 Department of Orthopedic Surgery, Graduate School of Medicine, Akita University, Akita, Japan
- 5 Department of Orthopedic Surgery, Graduate School of Medicine, Akita University, Akita, Japan
- 6 Department of Orthopedic Surgery, Graduate School of Medicine, Akita University, Akita, Japan
- 7 Department of Orthopedic Surgery, Graduate School of Medicine, Akita University, Akita, Japan
Abstract
Background : The symptoms of rotator cuff tear vary and may even be absent. Thus, the symptoms cannot be explained solely by the presence of rotator cuff tear, and other factors are thought to be involved. Because the rotator cuff comes in contact with the coracoacromial ligament, the elasticity of the ligament may be a factor of the symptoms. The pur pose of this study was to clarify the elasticity of the coracoacromial ligament in live shoulders with rotator cuff tears. Methods : Forty-one shoulders in 24 persons were enrolled in this study. The average age was 52 years old (range, 15 - 84 years old). We investigated the presence of rotator cuff tear and measured the elasticity of the coracoacromial liga ment by ultrasound elastography (EUB-7500, HITACHI, Japan). Ultrasound elastography was a useful method to quan tify the strain of soft tissue when pressure was added. The strain ratio (the ratio of strain of the coracoacromial ligament to that of the rotator cuff) was used as the index of the elasticity of coracoacromial ligament. Thus, the higher the strain ratio was, the softer the ligament was. Results : The strain ratio of the coracoacromial ligaments without rotator cuff tear showed a negative correlation to the age (r = ﹣ 0.825, P < 0.01). The strain ratio of the ligaments with rotator cuff tear (23.75 ± 15.05, 69.6 years old) was higher than that of the older ligaments without cuff tear (12.62 ± 7.94, 64.6 years old) (P = 0.0486). In shoulders with rotator cuff tear, the strain ratio of the ligaments with pain (14.37 ± 10.15, 66.7 years old) was lower than that of ligaments without pain (33.12 ± 13.59, 69.1 years old) (P = 0.0221). Conclusions : The coracoacromial ligament became stiffened with aging but softened with the existence of rotator cuff tear. The liga ments with symptomatic cuff tear are more stiffened than the ligaments with asymptomatic cuff tear.
- H. I. Andersson, G. Ejlertsson, I. Leden and C. Rosenberg, “Chronic Pain in a Geographically Defined General Population: Studies of Differences in Age, Gender, Social Class, and Pain Localization,” The Clinical Journal of Pain, Vol. 9, No. 3, 1993, pp. 174-182. doi:10.1097/00002508-199309000-00004
- E. M. Badley and A. Tennant, “Changing Profile of Joint Disorders with Age: Findings from a Postal Survey of the Population of Calderdale, West Yorkshire, United Kingdom,” Annals of the Rheumatic Diseases, Vol. 51, No. 3, 1992, pp. 366-371. doi:10.1136/ard.51.3.366
- M. Urwin, D. Symmons, T. Allison, T. Brammah, H. Busby, M. Roxby, A. Simmons and G. Williams, “Estimating the Burden of Musculoskeletal Disorders in the Community: The Comparative Prevalence of Symptoms at Different Anatomical Sites, and the Relation to Social Problem,” Annals of the Rheumatic Diseases, Vol. 57, No. 11, 1998, pp. 649-655. doi:10.1136/ard.57.11.649
- A. Yamamoto, K. Takagishi, T. Osawa, T. Yanagawa, D. Nakajima, H. Shitara and T. Kobayashi, “Prevalence and Risk Factors of a Rotator Cuff Tear in the General Population,” Journal of Shoulder and Elbow Surgery, Vol. 19, No. 1, 2010, pp. 116-120. doi:10.1136/ard.57.11.649
- H. Kijima, H. Minagawa, Y. Saijo, H. Sano, T. Tomioka, N. Yamamoto, Y. Shimada, K. Okada and E. Itoi, “Degenerated Coracoacromial Ligament in Shoulders with Rotator Cuff Tears Shows Higher Elastic Modulus: Measurement Using Scanning Acoustic Microscopy,” Journal of Orthopaedic Science, Vol. 14, No. 1, 2009, pp. 62-67. doi:10.1007/s00776-008-1283-x
- A. Lorenz, H. Ermert, H. J. Sommerfeld, M. GarciaSchürmann, T. Senge and S. Philippou, “Ultrasound Elastography of the Prostate: A New Technique for Tumor Detection,” Ultraschall in der Medizin, Vol. 21, No. 1, 2000, pp. 8-15. doi:10.1055/s-2000-8926
- D. Cochlin, R. H. Ganatra and D. F. R. Griffiths, “Elastography in the Detection of Prostatic Cancer,” Clinical Radiology, Vol. 57, No. 11, 2002, pp. 1014-1020. doi:10.1053/crad.2002.0989
- J. Bercoff, S. Chaffai, M. Tanter, L. Sandrin, S. Catheline, M. Fink, J. L. Gennisson and M. Meunier, “In Vivo Breast Tumor Detection Using Transient Elastography,” Ultrasound in Medicine & Biology, Vol. 29, No. 10, 2003, pp. 1387-1396. doi:10.1016/S0301-5629(03)00978-5
- A. Thomas, T. Fischer, H. Frey, R. Ohlinger, S. Grunwald, J. U. Blohmer, K. J. Winzer, S. Weber, G. Kristiansen, B. Ebert and S. Kümmel, “Real-Time Elastography; an Advanced Method of Ultrasound: First Results in 108 Patients with Breast Lesions,” Ultrasound in Obstetrics & Gynecology, Vol. 28, No. 3, 2006, pp. 335-340. doi:10.1002/uog.2823