Preview

Clinical and experimental thyroidology

Advanced search

Ultrosound diagnostics of thyroid disorders

https://doi.org/10.14341/ket20117419-26

Abstract

С момента своего появления в 40-х годах прошлого века ультразвуковое исследование (УЗИ) заняло важное место в диагностике заболеваний щитовидной железы (ЩЖ). Преимуществами УЗИ являются его доступность, хорошая визуализация ЩЖ за счет ее поверхностного расположения, хорошая воспроизводимость результатов и безопасность для пациента. Это очень быстро развивающийся и совершенствующийся метод диагностики. Помимо стандартного исследования в В-режиме, которое позволяет получить уже привычное двумерное серошкальное изображение органа, в арсенале врачей быстро появляются новые дополнительные методики, такие как допплеровские методы исследования, дающие возможность оценивать кровоток в паренхиме ЩЖ (цветовое допплеровское картирование, импульсная допплерометрия), получение трехмерных (3D) и четырехмерных (4D) изображений, эластография.

About the Author

Yu Sytch

kand. med. nauk, assistent kafedry endokrinologii lechebnogo fakul'teta GBOU VPO Pervyy MGMU im. I.M. Sechenova Minzdravsotsrazvitiya Rossii


References

1. Дедов И.И., Мельниченко Г.А., Фадеев В.В. и др. Клинические рекомендации Российской ассоциации эндокринологов (РАЭ) по диагностике и лечению узлового зоба. Пробл. эндокринол. 2005; 5: 40–42.

2. Зайратьянц О.В. Эпидемиологическая и этиологическая структура узлового зоба по данным аутопсий. Арх. пат. 2004;66 (6): 24–28.

3. Федотов Н.Ю., Воробьев С.Л., Черников Р.А. и др. Тонкоигольная аспирационная биопсия в диагностике заболеваний щитовидной железы, корреляция между заключениями цитолога и гистолога, технические аспекты. Клин. и экспер. тиреоидол. 2009; 5 (4): 28–32.

4. AACE/AME task force on thyroid nodules: American association of clinical endocrinologists medical guidelines for clinical practice for the diagnosis and menagenent of thyroid nodules. Endocr. Pract. 2006; 12 (1): 63–102.

5. Albores-Saavedra J., Henson D.E., Glazer E., Schwartz A.M. Changing patterns in the incidence and survival of thyroid cancer with follicular phenotype—papillary, follicular, and anaplastic: a morphological and epidemioological study. Endocr. Pathol. 2007;18 (1): 1–7.

6. Alexander E.K. Approach to the patient with a cytologically indeterminate thyroid nodule. J. Clin. Endocrinol. Metab. 2008; 93: 4175–4182.

7. American Association of Clinical Endocrinologists, Associazione Medici Endocrinologi, and European Thyroid Association Medical Guidelines for Clinical Practice for the Diagnosis and Management of Thyroid Nodules. Endocr. Pract. 2010; 16 (1): 1–43.

8. Asteria C., Giovanardi A., Pizzocaro A. et al. US elastography in the differential diagnosis of benign and malignant thyroid nodules. Thyroid 2008; 18: 523–531.

9. Belfiore A., La Rosa G.L. Fine-needle aspiration biopsy of the thyroid. Endocrinol. Metab. Clin. N. Am. 2001; 30 (2): 361–400.

10. Bhatia K.S., Rasalkar D.P., Lee Y.P. et al. Cystic change in thyroid nodules: A confounding factor for real-time qualitative thyroid ultrasound elastography. Clin. Radiol. 2011; 66 (9): 799–807.

11. Bogazzi F., Bartalena L., Brogioni S. et al. Color flow Doppler sonography rapidly differentiates type I and type II amiodarone-induced thyrotoxicosis. Thyroid 1997; 7: 541–545.

12. Bogazzi F., Martino E., Dell’Unto E. et al. Thyroid color flow dopplersonography and radioiodine uptake in 55 consecutive patients with amiodarone-induced thyrotoxicosis. J. Endocrinol. Invest. 2003; 26 (7): 635–640.

13. Bojunga J., Herrmann E., Meyer G. et al. Real-time elastography for the differentiation of benign and malignant thyroid nodules: a meta-analysis. Thyroid 2010; 20 (10): 1145–1150.

14. Bonzanini M., Amadori P., Morelli L. et al. Subclassification of the “grey zone” of thyroid cytology; a retrospective descriptive study with clinical, cytological, and histological correlation. J. Thyroid. Res. 2011; 2011: 251680.

15. Cappelli C., Castellano M., Pirola I. et al. The predictive value of ultrasound findings in the management of thyroid nodules. Int. J. Med. (QJM) 2007; 100 (1): 29–35.

16. Chernyavsky V.S., Shanker B.A., Davidov T. et al. Is One Benign Fine Needle Aspiration Enough? Ann. Surg. Oncol. 2011; Oct. 4 (предварительная электронная публикация).

17. Cooper D.S., Doherty G.M., Haugen B.R. et al. Revised American Thyroid Association Management Guidelines for Patients with Thyroid Nodules and Differentiated Thyroid Cancer. Thyroid 2009; 19 (11): 1167–1214.

18. Eaton S.E., Euinton H.A., Newman C.M. et al. Clinical experience of amiodarone-induced thyrotoxicosis over a 3-year period: role of colour-flow Doppler sonography. Clin. Endocrinol. (Oxf.) 2002;56 (1): 33–38.

19. Erdogan M.F., Anil C., Cesur M. et al. Color flow Doppler sonography for the etiologic diagnosis of hyperthyroidism. Thyroid 2007;17 (3): 223–228.

20. European Federation of Cytology Societies. EFCS; 2007–2009. Fadda G. SIAPEC consensus review [written February 27, 2009; cited June 2009]. Электронный адрес публикации: www.efes.eu.

21. Fatourechi M.M., Hay I.D., McIver B. et al. Invasive fibrous thyroiditis (Riedelthyroiditis): the Mayo Clinic experience, 1976–2008. Thyroid 2011; 21 (7): 765–772.

22. Frates M.C., Benson C.B., Doubilet P.M. et al. Can color Dopplersonography aid in the prediction of malignancy of thyroid nodules? J. Ultrasound Med. 2003; 22 (2): 127–131.

23. Frates M.C., Benson C.B., Doubilet P.M. et al. Prevalence and distribution of carcinoma in patients with solitary and multiple thyroid nodules on sonography. J. Clin. Endocrinol. Metab. 2006; 91: 3411–3417.

24. Frates M.C., Benson C.B., Charboneau J.W. et al. Management of thyroid nodules detected at US: Sosiety of Radiologists in Ultrasound consensus conference statement. Radiology 2005; 237: 794–800.

25. Frey H. Real-time elastography: a new ultrasound procedure for reconstruction of tissue elasticity. Radiologe 2003; 43 (10): 850–855.

26. Friedrich-Rust M., Romenski O., Meyer G. et al. Acoustic Radiation Force Impulse-Imaging for the evaluation of the thyroid gland: A limited patient feasibility study. Ultrasonics 2011; Jul. 7 (пред- варительная электронная публикация).

27. Fukunari N. More accurate and sensitive diagnosis for thyroid tumors with elastography – detection and differential diagnosis of thyroid cancer. MEDIX suppl. 2007: 16–19. Электронный адрес публикации: www.hitachi-medical.co.jp/medix/pdf_sup/ sup_05.

28. Gandolfi P.P., Frisina A., Raffa M. et al. The incidence of thyroid carcinoma in multinodular goiter: retrospective analysis. Acta Biomed. 2004; 75: 114–117.

29. Guth S., Heune U., Abere J. et al. Very high prevalence of thyroid nodules detected by high frequency (13 MHz) ultrasound examination. Eur. J. Clin. Invest. 2009; 39: 699–706.

30. Iared W., Shigueoka D.C., Cristуfoli J.C. et al. Use of color Doppler ultrasonography for the prediction of malignancy in follicular thyroidneoplasms: systematic review and meta-analysis. J. Ultrasound Med. 2010; 29 (3) :419–25.

31. Itoh A., Ueno E., Tohno E. et al. Breast disease: clinical application of US elastography for diagnosis. Radiology 2006; 239: 341–350.

32. Kunz A., Blank W., Braun B. De Quervain’ssubacute thyroiditis – colour Doppler sonography findings. Ultraschall. Med. 2005;26 (2): 102–106.

33. Lippolis P.V., Tognini S., Materazzi G. et al. Iselastography actually useful in the presurgical selection of thyroid nodules with indeterminate cytology? J. Clin. Endocrinol. Metab. 2011; 96 (11): E1826–1830.

34. Loy M., Perra E., Melis A. et al. Color-flow Doppler sonography in the differential diagnosis and management of amiodarone-induced thyrotoxicosis. Acta Radiol. 2007; 48 (2): 628–634.

35. Macedo T.A., Chammas M.C., Jorge P.T. et al. Differentiation between the two types of amiodarone-associated thyrotoxicosis using duplex and amplitude Doppler sonography. Acta Radiol. 2007; 48 (4): 412–421.

36. Magri F., Chytiris S., Capelli V. Shear wave elastography in the diagnosis of thyroid nodules: feasibility in the case of coexistent chronic autoimmune Hashimoto’s thyroiditis. Clin. Endocrinol. (Oxf.) 2011 Jul 9. doi: 10.1111/j.1365-2265.2011.04170.x. (предварительная электронная публикация).

37. Monpeyssen H., Correas J.-M. , Tramalloni J. et al. Correlations between shearwaveelastography of thyroid nodules and cytological data: study about 157 patients. Congress: ECR 2011, poster C-1236.

38. Moon H.J., Kwak J.Y., Kim M.J. et al. Can vascularity at power Doppler US help predict thyroid malignancy? Radiology 2010;255 (1): 260–269.

39. Nam-Coong I.S., Kim H.Y., Gong G. et al. Ultrasonography-guided fine needle aspiration biopsy of thyroid incidentalomas: correlation with pathological findings. Clin. Endocrinol. (Oxf.) 2004; 60: 21–28.

40. Nishihara E., Amino N., Ohye H. et al. Extent of hypoechogenic area in the thyroid is related with thyroid dysfunction after subacute thyroiditis. J. Endocrinol. Invest. 2009; 32 (1): 33–36.

41. Omori N., Omori K., Takano K. Association of the ultrasonographic findings of subacute thyroiditis with thyroid pain and laboratory findings. Endocr. J. 2008; 55 (3): 583–588.

42. Ophir J., Garra B., Kallel F. et al. Elastographic imaging. Ultrasound Med. Biol. 2000; 26 (1): S23–S29.

43. Pacini F. Management of differentiated thyroid cancer of the follicular epithelium. Ann. Med. 2011 Jun 13 [Epub ahead of print].

44. Pedersen O.M., Aardal N.P., Larssen T.B. et al. The value of ultrasonography in predicting autoimmune thyroid disease. Thyroid 2000; 10 (3): 251–259.

45. Raab S.S., Vrbin C.M., Grzybicki D.M. et al. Errors in thyroid gland fine-needle aspiration. Am. J. Clin. Pathol. 2006; 125: 873–882.

46. Rago T., Scutari M., Santini F. et al. Real-time elastosonography: useful tool for refining the presurgical diagnosis in thyroid nodules with indeterminate or nondiagnostic cytology. J. Clin. Endocrinol. Metab. 2010; 95 (12): 5274–5280.

47. Rago T., Santini F., Scutari M. et al. US Elastography in Thyroid Nodules. //J. Clin. Endocrinol. Metab. 2007; 92 (8): 2917–2922.

48. Ralls P.W., Mayekawa D.S., Lee K.P. et al. Color-flow Doppler sonography in Graves disease: “throid inferno”. Am. J. Roentgenol. 1988; 150: 781–784.

49. Salman R., Monpeyssen H., Desarnaud S. et al. Ultrasound, elastography, and fluorodeoxyglucose positron emission tomography/computed tomography imaging in Riedel’s thyroiditis: report of two cases. Thyroid 2011; 21 (7): 799–804.

50. Sebag F., Vaillant-Lombard J., Berbis J. et al. Shear wave elastography: a new ultrasound imaging mode for the differential diagnosis of benign and malignant thyroid nodules. J. Clin. Endocrinol. Metab. 2010; 95: 5281–5288.

51. Slapa R.Z. et al. Advantages and disadvantages of 3D ultrasound of thyroid nodules including slice volume rendering. Thyroid Res. 2011; 4: 1–12.

52. Sung H.P., Soo J.K., Eun-Kyung K. Interobserver agreement in assessing the sonographic and elastographic features of malignant thyroid nodules. Am. J. Roentgenol. 2009; 193: W416–W423 (электронная публикация).

53. Tranquart F., Bleuzen A., Pierre-Renoult P. et al. Elastosonography of thyroid lesions. J. Radiol. 2008; 89: 35–39.

54. Trimboli P., Sorrenti S. Low value of color flow-doppler in predicting malignancy of thyroid follicular neoplasms. Diagn. Cytopathol. 2009; 37 (5): 391–392.

55. Turnbridge W.M., Evered D.C., Hall R. et al. The spectrum of thyroid disease in a community: Wickham survey. Clin. Endocrinol. (Oxf.) 1977; 7: 481–493.

56. Wong R., Cheung W., Stockigt J.R., Topliss D.J. Heterogeneity of amiodarone-induced thyrotoxicosis: evaluation of colour-flow Doppler sonography in predicting therapeutic response. Intern. Med. J. 2003; 33 (9–10): 420–426.

57. Xie P., Xiao Y., Liu F. Real-time ultrasound elastography in the diagnosis and differential diagnosis of subacute thyroiditis. J. Clin. Ultrasound 2011; Jun. 14. doi: 10.1002/jcu.20850 (электронная публикация).


Review

For citations:


  Ultrosound diagnostics of thyroid disorders. Clinical and experimental thyroidology. 2011;7(4):19-26. (In Russ.) https://doi.org/10.14341/ket20117419-26

Views: 472


ISSN 1995-5472 (Print)
ISSN 2310-3787 (Online)