Experience of Using of the Additional Submillimeter Mode 3D-FSE (3D-PD-FS-WI) in MRI of Complete and Partial Tears of the Shoulder Supraspinatus Tendon (Clinical Case)
https://doi.org/10.52560/2713-0118-2024-4-67-78
Abstract
A clinical example is presented that demonstrates the capabilities of an additional magnetic resonance 3D-FSE (3D-PD-FS-WI) of complete and partial ruptures of the supraspinatus tendon of the shoulder. The article provides an MRI protocol that allows for successful diagnosis of these rupture types.
Aim. Demonstration of the diagnostic capabilities of the additional submillimeter isotropic mode 3D-FSE (3D-PD-FS-WI) in the MRI diagnosis of complete and partial tears of the supraspinatus tendon.
Clinical case. A clinical case of the successful use of submillimeter isotropic 3D-FSE mode (3D-PD-FS-WI) in a patient with a rupture of the supraspinatus tendon is demonstrated.
Conclusion. The 3D-FSE (3D-PD-FS-WI) mode demonstrated: excellent detailing of the rupture zone, the ability to assess pathology in any plane using a 3D cursor and more suitable «showing» of pathology in the desired plane.
About the Authors
A. P. IvankovRussian Federation
Ivankov Aleksandr Petrovich, radiologist, PhD, junior researcher, Department of radiology NCO of neurosurgery; A radiologist of radiology department
1, Bortsov Revolutsii st., Irkutsk, 664003, +7 (3952) 29-03-36; 118, Baykalskaya st., Irkutsk, 664046, +7 (3952) 70-37-63
P. V. Seliverstov
Russian Federation
Seliverstov Pavel Vladimirovich, radiologist, M.D. Med. Sciences, Senior Researcher of Laboratory Radiology NCO of neurosurgery
1, Bortsov Revolutsii st., Irkutsk, 664003,
+7 (3952) 29-03-36
D. V. Menshova
Russian Federation
Menshova Darya Vasil’yevna, traumatologist, junior researcher at the Scientific Clinical Department of Traumatology
1, Bortsov Revolutsii st., Irkutsk, 664003, Russia.
+7 (3952) 29-03-36
References
1. Brizhan’ L. К., Davydov D. V., Dokolin S. Yu., Kerimov A. A., Naida D. A., Perekhodov S. N., Tyulkevich B. V. Features of the treatment of fullthickness rotator cuff tendon rupture in military personnel. Voenno-medicinskij J. 2021;10(1):25-31. (In Russ.). https://doi.org/10.52424/00269050_2021_342_10_25
2. Dokolin S. Yu., Kuz’mina V. I., Marchenko I. V., Belykh O. A., Naida D. A. Arthroscopic Repair of Large and Massive Rotator Cuff Tears: Clinical Outcomes and Postoperative MRI Findings. Travmatologiya i ortopediya Rossii. 2017;23(3):53-68 (In Russ.). https://doi.org/ 10.21823/2311-2905-2017-23-3-53-68
3. Logvinov A. N., Ilʼin D. O., Kadantsev P. M., Makarieva O. V., Burtsev M. E., Ryazantsev M. S., Magnitskaya N. E., Frolov A. V., Korolev A. V. Features of Partial Rotator Cuff Tears Diagnostics. Travmatologiya i ortopediya Rossii. 2019;25(2):143-149 (In Russ.). https:// doi.org/10.21823/2311-2905-2019-25-2-143-149
4. Logvinov A. N., Makarieva O. V., Ilʼin D. O., Kadantsev P. M., Zaripov A. R., Frolov A. V., Magnitskaya N. E., Ryazantsev M. S., Burtsev M. E., Korolev A. V. Magnetic Resonance Imaging Identification of Rotator Cuff Pathology: Inter-rater Realibilty. Travmatologiya i ortopediya Rossii. 2020;26(4):102-111 (In Russ.). https://doi.org/10.21823/2311-2905-2020-26-4-102-111
5. Ponomarenko N. S., Monastyrev V. V., Kuklin I. A. Latissimus Dorsi Transposition in Supraspinatus Tendon Retraction (Patte III) and Thomazeau Grade 3 Fatty Degeneration (Clinical Case). Acta biomedica scientifica. 2019;4(6):117- 122 (In Russ.). https://doi.org/10.29413/ABS.2019-4.6.18
6. Slaikovskiy E. N., Ponomarenko N. S., Kuklin I. A. Rotator cuff tendon ruptures (literature review). Acta biomedica scientifica. 2023;8(5):150-156 (In Russ.). https://doi.org/10.29413/ABS.2023-8.5.16
7. Trufanov G. Е. MRI. The joints of upper extremity: guide for doctors.М.: GEOTAR-Media, 2018. 544 p. (In Russ.). ISBN 978-5-9704-4513-6.
8. Chuang H., Hong Ch., Hsu K., Kuan F., Chen Y. Association of Coracoacromial Ligament Degeneration With Rotator Cuff Tear Patterns and Retear Rate. The Orthop. J. of Sports Med. 2023;11(6):1-10. https://doi.org/10.1177/23259671231175873
9. Daniels S., Gyftopoulos S. 3D MRI of the Shoulder. Musculoskel. Radiol. 2021;25:480-487. https://doi.org/10.105 5/s-0041-1728813
10. Lee S. H., Lee J., Oh K., Yoon J., Seo A. Automated 3-dimensional MRI segmentation for the posterosuperior rotator cuff tear lesion using deep learning algorithm. Plos One. 2023;18(5):1-15. https://doi. org/10.1177/23259671231175873
11. Riem L., Feng X., Cousins M., DuCharme O., Leitch E. B. A Deep Learning Algorithm for Automatic 3D Segmentation of Rotator Cuff Muscle and Fat from Clinical MRI Scans. Radiology: Artificial Intelligence. 2023;5(2):1-6. https://doi.org/10.1148/ryai.220132
12. Samim M., Walsh P., Gyftopoulos S., Meislin R., Beltran L. S. Postoperative MRI of Massive Rotator Cuff Tears. AJR. 2018;211(1):146-154. https://doi.org/10.2214/AJR.17.19281
Supplementary files
Review
For citations:
Ivankov A.P., Seliverstov P.V., Menshova D.V. Experience of Using of the Additional Submillimeter Mode 3D-FSE (3D-PD-FS-WI) in MRI of Complete and Partial Tears of the Shoulder Supraspinatus Tendon (Clinical Case). Radiology - Practice. 2024;(4):67-78. (In Russ.) https://doi.org/10.52560/2713-0118-2024-4-67-78