-
1Academic Journal
Source: Наука и здравоохранение. :77-85
Subject Terms: қалқанша безінің резекциясы, диффузно-токсический зоб, эмболизация щитовидной артерии, тиреоидэктомия, тириоидэктомия, thyroid resection, thyroidectomy, диффузды токсикалық жемсау, Diffuse toxic goiter, резекция щитовидной железы, embolization of the thyroid artery, 3. Good health
-
2Academic Journal
Source: Байкальский медицинский журнал, Vol 3, Iss 2, Pp 39-44 (2024)
Subject Terms: многоузловой зоб, загрудинный зоб, цервикотомия, тиреотоксикоз, тиреоидэктомия, Medicine (General), R5-920
File Description: electronic resource
-
3Academic Journal
Source: Наука и здравоохранение. :182-192
Subject Terms: тиреотоксикоз, тиреоидэктомия, diffuse toxic goiter, гипопаратиреоз, hypoparathyroidism, диффузный токсический зоб, 3. Good health, көмейдің парезі, жайылмалы уытты жемсау, 8. Economic growth, thyroidectomy, парез гортани, thyrotoxicosis, laryngeal paresis
-
4Academic Journal
Authors: A. A. Alekseev, A. G. Yavorovskiy, E. N. Prazdnikov, A. M. Ovechkin, D. V. Dospekhov, V. S. Vakhromkin, E. A. Sozonova, E. V. Batulina, A. A. Maksimova, E. N. Zolotova, А. А. Алексеев, А. Г. Яворовский, Э. Н. Праздников, А. М. Овечкин, Д. В. Доспехов, В. С. Вахромкин, Е. А. Созонова, Е. В. Батулина, А. А. Максимова, Е. Н. Золотова
Source: Messenger of ANESTHESIOLOGY AND RESUSCITATION; Том 21, № 6 (2024); 32-41 ; Вестник анестезиологии и реаниматологии; Том 21, № 6 (2024); 32-41 ; 2541-8653 ; 2078-5658
Subject Terms: регионарная анестезия шеи, combined regional anesthesia, combined anesthesia, thyroidectomy, hemithyroidectomy, regional anesthesia of the neck, three-component block of neck, комбинированная регионарная анестезия, сочетанная анестезия, тиреоидэктомия, гемитиреоидэктомия
File Description: application/pdf
Relation: https://www.vair-journal.com/jour/article/view/1104/760; Алексеев А. А., Яворовский А. Г., Багдасаров П. С. и др. Способ проводниковой анальгезии/анестезии при операциях на передней поверхности шеи. Патент на изобретение RU 2 808 375 C1. – Приоритет 3 августа 2023.; Алексеев А. А., Яворовский А. Г., Багдасаров П. С. и др. Способ регионарной анестезии/анальгезии при операциях на щитовидной и паращитовидных железах. Патент на изобретение RU 2 818 449 C1. – Приоритет 23 августа 2023.; Алексеев М. А., Макарьин В. А., Кулешов О. В. и др. Особенности анестезиологического пособия при проведении операций с нейромониторингом возвратных гортанных нервов в тиреоидной хирургии // Вестник анестезиологии и реаниматологии. – 2017. – Т. 14, № 1. – С. 51–57. https://doi.org/10.21292/2078-5658-2017-14-1-51-57.; Бельцевич Д. Г., Ванушко В. Э., Румянцев П. О. и др. Российские клинические рекомендации по диагностике и лечению высокодифференцированного рака щитовидной железы у взрослых, 2017 г. // Эндокринная хирургия. – 2017. – Т. 11, № 1. – С. 6–27. https://doi.org/10.14341/serg201716-27.; Ветшев П. С., Карпова О. Ю., Салиба М. Б. «Ахиллесова пята» в хирургии щитовидной железы. Проблемы Эндокринологии. – 2007. – Т. 53, № 2. – С. 3–8. https://doi.org/10.14341/probl20075323-8.; Заридзе Д. Г., Стилиди И. С., Каприн А. Д., Максимович Д. М. Гипердиагностика рака щитовидной железы // Практическая онкология. – 2020. – Т. 21, № 4. – С. 312–326. https://doi.org/10.31917/2104312.; Крайник В. М., Козлов С. П., Дешко Ю. В. Влияние блокады шейного сплетения на состояние антиноцицептивной защиты при операциях на внутренних сонных артериях // Анестезиология и реаниматология. – 2012. – № 3. – С. 22–25. PMID: 22993918.; Неговский А. А., Шпажникова Т. И., Знаменский А. А., Замятин М. Н. Анестезиологическое обеспечение операций на щитовидной железе // Общая реаниматология. – 2008. – Т. 4, № 6. – С. 65. https://doi.org/10.15360/1813-9779-2008-6-65.; Овечкин А. М., Осипов С. А. Клиническая фармакология местных анестетиков // Регионарная анестезия и лечение боли. Тематический сб / под ред. А. М. Овечкина, С. И. Ситкина. Тверь: ООО Издательство Триада. – 2004. – С. 26–36.; Brown D. L. Atlas of regional anesthesia. Moscow, GEOTAR-Media, 2009, 464 p. ISBN 978-5-91713-001-9.; Cuvillon P., Nouvellon E., Ripar J. et al. A comparison of the pharmacodynamics and pharmacokinetics of bupivacaine, ropivacaine (with epinephrine) and their equal volume mixtures with lidocaine used for femoral and sciatic nerve blocks: a double-blind randomized study // Anesthesia & Analgesia. – 2009. – Vol. 108, № 2. – P. 641–649. https://doi.org/10.1213/ane.0b013e31819237f8.; Dvořák J., Šnajdr M., Šmrhová D. The tubercle of Zuckerkandl, the ligament of Berry – importance for thyroid surgery // Rozhl Chir. – 2021. – Vol. 100, № 3. – P. 105–109. https://doi.org/10.33699/PIS.2021.100.3.105-109.; Hammond C. S., Davenport P. W., Hutchison A. et al. Motor innervation of the cricopharyngeus muscle by the recurrent laryngeal nerve // Journal of applied physiology. – 1997. – Vol. 83. – № 1. – P. 89–94. https://doi.org/10.1152/jappl.1997.83.1.89.; Han C., Shao P., Li H. et al. Effects of unilateral intermediate cervical plexus block on the diaphragmatic function in patients undergoing unilateral thyroidectomy: a randomized controlled study // Journal of Pain Research. – 2022. – P. 2663–2672. https://doi.org/10.2147/JPR.S374739.; Harris M., Chung F. Complications of general anesthesia. // Clinics in Plastic Surgery. – 2013. – Vol. 40, № 4. – P. 503–513. https://doi.org/10.1016/j.cps.2013.07.001.; Herbland A., Cantini O., Reynier P. et al. The bilateral superficial cervical plexus block with 0.75% ropivacaine administered before or after surgery does not prevent postoperative pain after total thyroidectomy // Regional anesthesia and pain medicine. – 2006. – Vol. 31, № 1. – P. 34–39. https://doi.org/10.1016/j.rapm.2005.10.008.; Hsieh C. Y., Tan H., Huang H. F. et al. Optimization of intraoperative neural monitoring of the recurrent laryngeal nerve in thyroid surgery // Medicina (Kaunas, Lithuania). – 2022. – Vol. 58, № 4. – P. 495. https://doi.org/10.3390/medicina58040495.; Hu S., Shu T., Xu S. et al. Ultrasound-guided bilateral superficial cervical plexus block enhances the quality of recovery of uremia patients with secondary hyperparathyroidism following parathyroidectomy: a randomized controlled trial // BMC Anesthesiology. – 2021. – Vol. 21, № 1. – P. 1–9. https://doi.org/10.1186/s12871-021-01448-w.; Johnson A. P., Boscoe E., Cabrera-Muffly C. Local blocks and regional anesthesia in the head and neck // Otolaryngologic clinics of North America. – 2020. – Vol. 53, № 5. – P. 739–751. https://doi.org/10.1016/j.otc.2020.05.004.; Martusevicius R., Swiatek F., Joergensen L. G. et al. Ultrasound-guided locoregional anaesthesia for carotid endarterectomy: a prospective observational study // European journal of vascular and endovascular surgery: the official journal of the European Society for Vascular Surgery. – 2012. – Vol. 44, № 1. – P. 27–30. https://doi.org/10.1016/j.ejvs.2012.04.008.; Mayhew D., Sahgal N., Khirwadkar R. et al. Analgesic efficacy of bilateral superficial cervical plexus block for thyroid surgery: meta-analysis and systematic review // British journal of anaesthesia. – 2018. – Vol. 120, № 2. – P. 241–251. https://doi.org/10.4103/ija.ija_806_22.; Mulcahy M. J., Elalingam T., Jang K. et al. Bilateral cervical plexus block for anterior cervical spine surgery: study protocol for a randomised placebo-controlled trial // Trials. – 2021. – Vol. 22, № 1. – P. 424. https://doi.org/10.1186/s13063-021-05377-4.; Ozgun M., Hosten T., Solak M. Effect of bilateral superficial cervical plexus block on postoperative analgesic consumption in patients undergoing thyroid surgery // Cureus. – 2022. – Vol. 14, № 1. – e21212. https://doi.org/10.7759/cureus.21212.; Pandit J. J., Dutta D., Morris J. F. Spread of injectate with superficial cervical plexus block in humans: an anatomical study // British journal of anaesthesia. – 2003. – Vol. 91, № 5. – P. 733–735. https://doi.org/10.1093/bja/aeg250.; Pandit J. J., Satya-Krishna R., Gration P. Superficial or deep cervical plexus block for carotid endarterectomy: a systematic review of complications // British journal of anaesthesia. – 2007. – Vol. 99, № 2. – P. 159–169. https://doi.org/10.1093/bja/aem160.; Rössel T., Kersting S., Heller A. R. et al. Combination of high-resolution ultrasound-guided perivascular regional anesthesia of the internal carotid artery and intermediate cervical plexus block for carotid surgery // Ultrasound in medicine & biology. – 2013. – Vol. 39, № 6. – P. 981–986. https://doi.org/10.1016/j.ultrasmedbio.2013.01.002.; Shih M. L., Duh Q. Y., Hsieh C. B. et al. Bilateral superficial cervical plexus block combined with general anesthesia administered in thyroid operations // World journal of surgery. – 2010. – Vol. 34. – P. 2338–2343. https://doi.org/10.1007/s00268-010-0698-7.; Smith J. D., Mentz G., Leis A. M. et al. Use of neuromuscular blockade for neck dissection and association with iatrogenic nerve injury // BMC Anesthesiol. – 2023. – Vol. 23, № 1. – P. 254. https://doi.org/10.1186/s12871-023-02217-7.; Stoneham M. D., Doyle A. R., Knighton J. D. et al. Prospective, randomized comparison of deep or superficial cervical plexus block for carotid endarterectomy surgery // Anesthesiology. – 1998. – Vol. 89, № 4. – P. 907–912. https://doi.org/10.1097/00000542-199810000-00015.; Tang M., Yin S., Yang Z. et al. Horner syndrome after thyroid-related surgery: a review. // Langenbeck’s archives of surgery. – 2022. – Vol. 407, № 8. – P. 3201–3208. https://doi.org/10.1007/s00423-022-02636-z.; Wadie M., Adam S. I., Sasaki C. T. Development, anatomy, and physiology of the larynx. // Principles of deglutition: a multidisciplinary text for swallowing and its disorders. – 2013. – P. 175–197. https://doi.org/10.1007/978-1-4614-3794-9_13.; Wang Q., Li Z., Xu S. et al. Feasibility of ultrasound-guided capsule-sheath space block combined with anterior cervical cutaneous nerves block for thyroidectomy: an observational pilot study // BMC Anesthesiology. – 2015. – Vol. 1, № 1. – P. 4. https://doi.org/10.1186/1471-2253-15-4.
-
5Academic Journal
Authors: М. S. Tigrov, L. P. Yakovleva, М. А. Kropotov, S. S. Menshikova, М. С. Тигров, Л. П. Яковлева, М. А. Кропотов, С. С. Меньшикова
Source: Malignant tumours; Том 14, № 1 (2024); 39-46 ; Злокачественные опухоли; Том 14, № 1 (2024); 39-46 ; 2587-6813 ; 2224-5057
Subject Terms: щитовидная железа, тиреоидэктомия, лимфодиссекция, папиллярный рак, высокодифференцированный рак щитовидной железы, гипопаратиреоз, возвратный гортанный нерв, thyroidectomy, lymph node dissection, papillary cancer, highly differentiated thyroid cancer, hypoparathyroidism, recurrent laryngeal nerve
File Description: application/pdf
Relation: https://www.malignanttumors.org/jour/article/view/1292/926; Seib C.D., Sosa J.A. Evolving Understanding of the Epidemiology of Thyroid Cancer. Endocrinol Metab Clin North Am 2019;48(1):23–35. https://doi.org/10.1016/j.ecl.2018.10.002; Filetti S., Durante C., Hartl D., et al. Thyroid cancer: ESMO Clinical Practice Guidelines for diagnosis, treatment and follow-up†. Ann Oncol 2019;30(12):1856–1883. https://doi.org/10.1093/annonc/mdz400; Wrenn S.M., Wang T.S., Toumi A., et al. Practice patterns for surgical management of low-risk papillary thyroid cancer from 2014 to 2019: A CESQIP analysis. Am J Surg 2021;221(2):448–454. https://doi.org/10.1016/j.amjsurg.2020.07.032; Giuffrida D., Giuffrida R., Puliafito I., et al. Thyroidectomy as Treatment of Choice for Differentiated Thyroid Cancer. Int J Surg Oncol 2019;2019:2715260. https://doi.org/10.1155/2019/2715260; Pacini F., Elisei R., Capezzone M., et al. Contralateral papillary thyroid cancer is frequent at completion thyroidectomy with no difference in low- and high-risk patients. Thyroid 2001;11(9):877–81. https://doi.org/10.1089/105072501316973145; Клинические рекомендации. Дифференцированный рак щитовидной железы, 2020. Доступно по: https://cr.minzdrav.gov.ru/recomend/329_1.; Haymart M.R., Banerjee M., Reyes-Gastelum D., et al. Thyroid Ultrasound and the Increase in Diagnosis of Low-Risk Thyroid Cancer. J Clin Endocrinol Metab 2019;104(3):785–792. https://doi.org/10.1210/jc.2018-01933; Azizi G., Faust K., Ogden L., et al. 3-D Ultrasound and Thyroid Cancer Diagnosis: A Prospective Study. Ultrasound Med Biol 2021;47(5):1299–1309. https://doi.org/10.1016/j.ultrasmedbio.2021.01.010; Kim S.K., Woo J.W., Park I., et al. Computed Tomography-Detected Central Lymph Node Metastasis in Ultrasonography Node-Negative Papillary Thyroid Carcinoma: Is It Really Significant? Ann Surg Oncol 2017;24(2):442–449. https://doi.org/10.1245/s10434-016-5552-1; Zhao H., Li H. Meta-analysis of ultrasound for cervical lymph nodes in papillary thyroid cancer: Diagnosis of central and lateral compartment nodal metastases. Eur J Radiol 2019;112:14–21. https://doi.org/10.1016/j.ejrad.2019.01.006; van Velsen E.F. S., Stegenga M.T., van Kemenade F.J., et al. Evaluating the 2015 American Thyroid Association Risk Stratification System in High-Risk Papillary and Follicular Thyroid Cancer Patients. Thyroid 2019;29(8):1073–1079. https://doi.org/10.1089/thy.2019.0053; Roh J.-L., Kim J.-M., Park C.I. Central lymph node metastasis of unilateral papillary thyroid carcinoma: patterns and factors predictive of nodal metastasis, morbidity, and recurrence. Ann Surg Oncol 2011;18(8):2245–50. https://doi.org/10.1245/s10434-011-1600-z; Wu Y., Gu J., Shang J., et al. Central lymph node metastasis in cN0 papillary thyroid carcinoma. J BUON 2013;18(3):733–8. PMID: 24065492; Koo B.S., Choi E.C., Yoon Y.-H., et al. Predictive factors for ipsilateral or contralateral central lymph node metastasis in unilateral papillary thyroid carcinoma. Ann Surg 2009;249(5):840–4. https://doi.org/10.1097/SLA.0b013e3181a40919; Li Z., Qu X.-C., Cheng B. The characteristics of papillary thyroid cancer lymph node metastasis and the clinical significance of central region cervical lymph node dissection. Zhonghua Wai Ke Za Zhi 2008;46(18):1407–9. PMID: 19094514; Sadowski B.M., Snyder S.K., Lairmore T.C. Routine bilateral central lymph node clearance for papillary thyroid cancer. Surgery 2009;146(4):696–703. https://doi.org/10.1016/j.surg.2009.06.046; Dobrinja C., Troian M., Cipolat Mis T., et al. Rationality in prophylactic central neck dissection in clinically node-negative (cN0) papillary thyroid carcinoma: Is there anything more to say? A decade experience in a single-center. Int J Surg 2017;41 Suppl 1: S40-S47. https://doi.org/10.1016/j.ijsu.2017.01.113; Kim S.K., Woo J.-W., Lee J.H., et al. Prophylactic Central Neck Dissection Might Not Be Necessary in Papillary Thyroid Carcinoma: Analysis of 11,569 Cases from a Single Institution. J Am Coll Surg 2016;222(5):853–64. https://doi.org/10.1016/j.jamcollsurg.2016.02.001; Alvarado R., Sywak M.S., Delbridge L., Sidhu S.B. Central lymph node dissection as a secondary procedure for papillary thyroid cancer: Is there added morbidity? Surgery 2009;145(5):514–8. https://doi.org/10.1016/j.surg.2009.01.013; Shen W.T., Ogawa L., Ruan D., et al. Central neck lymph node dissection for papillary thyroid cancer: comparison of complication and recurrence rates in 295 initial dissections and reoperation. Arch Surg 2010;145(3):272–275. https://doi.org/10.1001/archsurg.2010.9; Hall C.M., LaSeur D.C., Snyder S.K., Lairmore T. Reoperative central lymph node dissection for incidental papillary thyroid cancer can be performed safely: A retrospective review. Int J Surg 2018;56:102–107. https://doi.org/10.1016/j.ijsu.2018.06.015; Nylén C., Eriksson F.B., Yang A., et al. Prophylactic central lymph node dissection informs the decision of radioactive iodine ablation in papillary thyroid cancer. Am J Surg 2021;221(5):886–892. https://doi.org/10.1016/j.amjsurg.2020.08.012; Shuchleib-Cung A., Garcia-Gordillo J.A., Ferreira-Hermosillo A., Mercado M. Risk factors for hypocalcemia after total thyroidectomy. Cir Cir 2022;90(6):765–769. https://doi.org/10.24875/CIRU.21000579; White M.L., Doherty G.M. Level VI lymph node dissection for papillary thyroid cancer. Minerva Chir 2007;62(5):383–93. PMID: 17947949; Spartalis E., Ntokos G., Georgiou K., et al. Intraoperative Indocyanine Green (ICG) Angiography for the Identification of the Parathyroid Glands: Current Evidence and Future Perspectives. In Vivo 2020;34(1):23–32. https://doi.org/10.21873/invivo.11741; Priyanka S., Sam S.T., Rebekah G., et al. The utility of indocyanine green (ICG) for the identification and assessment of viability of the parathyroid glands during thyroidectomy. Updates Surg 2022;74(1):97–105. https://doi.org/10.1007/s13304-021-01202-4; Макарьин В.А., Успенская А.А., Алексеев М.А. и соавт. Интраоперационный нейромониторинг при оперативных вмешательствах на щитовидной и околощитовидных железах: показания к проведению, методика выполнения. Эндокринная хирургия. 2016;10(2):5–17. https://doi.org/10.14341/serg201625-17; De Crea C., Raffaelli M., Sessa L., et al. Surgical approach to level VI in papillary thyroid carcinoma: an overview. Updates Surg 2017;69(2):205–209. https://doi.org/10.1007/s13304-017-0468-2.; https://www.malignanttumors.org/jour/article/view/1292
-
6Academic Journal
Authors: Kashperska, V.Ya.
Source: Mìžnarodnij Endokrinologìčnij Žurnal, Vol 11, Iss 5.69, Pp 135-139 (2015)
INTERNATIONAL JOURNAL OF ENDOCRINOLOGY; № 5.69 (2015); 135-139
Международный эндокринологический журнал-Mìžnarodnij endokrinologìčnij žurnal; № 5.69 (2015); 135-139
Міжнародний ендокринологічний журнал-Mìžnarodnij endokrinologìčnij žurnal; № 5.69 (2015); 135-139Subject Terms: багатовузловий зоб, тиреоїдектомія, кальцій, фосфор, вітамін D, multinodular goiter, calcium, thyroidectomy, phosphorus, vitamin D, многоузловой зоб, тиреоидэктомия, кальций, витамин D, RC648-665, Diseases of the endocrine glands. Clinical endocrinology, 3. Good health, 03 medical and health sciences, 0302 clinical medicine, 10. No inequality
File Description: application/pdf
Access URL: http://iej.zaslavsky.com.ua/article/download/75199/144213
https://doaj.org/article/50abe5327ca74b8b99496c53406e39c3
https://core.ac.uk/display/87762906
http://iej.zaslavsky.com.ua/article/download/75199/144213
http://iej.zaslavsky.com.ua/article/view/75199
http://iej.zaslavsky.com.ua/article/view/75199 -
7Academic Journal
Authors: Kashperska, V.Ya.
Source: Mìžnarodnij Endokrinologìčnij Žurnal, Vol 12, Iss 3.75, Pp 104-108 (2016)
INTERNATIONAL JOURNAL OF ENDOCRINOLOGY; № 3.75 (2016); 104-108
Международный эндокринологический журнал-Mìžnarodnij endokrinologìčnij žurnal; № 3.75 (2016); 104-108
Міжнародний ендокринологічний журнал-Mìžnarodnij endokrinologìčnij žurnal; № 3.75 (2016); 104-108Subject Terms: calcium, diffuse toxic goiter, дифузний токсичний зоб, тиреоїдектомія, кальцій, фосфор, паратгормон, вітамін D, vitamin D, RC648-665, thyroidectomy, parathyroid hormone, phosphorus, Diseases of the endocrine glands. Clinical endocrinology, 3. Good health, диффузный токсический зоб, тиреоидэктомия, кальций, витамин D, 03 medical and health sciences, 0302 clinical medicine
File Description: application/pdf
Access URL: http://iej.zaslavsky.com.ua/article/download/76652/72289
https://doaj.org/article/ef570ba8f12040509bf4859e7c7dbbaa
https://core.ac.uk/display/87781746
http://iej.zaslavsky.com.ua/article/download/76652/72289
http://iej.zaslavsky.com.ua/article/view/76652
http://iej.zaslavsky.com.ua/article/view/76652 -
8Academic Journal
Authors: Kashperska, V.Ya.
Source: Mìžnarodnij Endokrinologìčnij Žurnal, Vol 12, Iss 6.78, Pp 43-47 (2016)
INTERNATIONAL JOURNAL OF ENDOCRINOLOGY; № 6.78 (2016); 43-47
Международный эндокринологический журнал-Mìžnarodnij endokrinologìčnij žurnal; № 6.78 (2016); 43-47
Міжнародний ендокринологічний журнал-Mìžnarodnij endokrinologìčnij žurnal; № 6.78 (2016); 43-47Subject Terms: 03 medical and health sciences, calcium, 0302 clinical medicine, тиреоидэктомия, кальций, фосфор, паратгормон, витамин D, thyroidectomy, phosphorus, parathyroid hormone, vitamin D, тиреоїдектомія, кальцій, вітамін D, RC648-665, Diseases of the endocrine glands. Clinical endocrinology, 3. Good health
File Description: application/pdf
Access URL: http://iej.zaslavsky.com.ua/article/download/81861/116065
https://doaj.org/article/7e598229b7ac4499a5544a5471df35f5
http://iej.zaslavsky.com.ua/article/download/81861/116065
http://iej.zaslavsky.com.ua/article/view/81861
https://doaj.org/article/7e598229b7ac4499a5544a5471df35f5
https://core.ac.uk/display/87785387
http://iej.zaslavsky.com.ua/article/view/81861 -
9Academic Journal
Source: Mìžnarodnij Endokrinologìčnij Žurnal, Vol 13, Iss 3, Pp 167-171 (2017)
INTERNATIONAL JOURNAL OF ENDOCRINOLOGY; Том 13, № 3 (2017); 167-171
Международный эндокринологический журнал-Mìžnarodnij endokrinologìčnij žurnal; Том 13, № 3 (2017); 167-171
Міжнародний ендокринологічний журнал-Mìžnarodnij endokrinologìčnij žurnal; Том 13, № 3 (2017); 167-171Subject Terms: endometriosis, thyroidectomy, radioiodine therapy, relative hyperestrogenism, diffuse fibroadenomatosis of mammary glands, suppressive therapy with levothyroxine, RC648-665, Досліджено морфофункціональний стан молочних залоз, матки та яєчників за даними ультразвукового дослідження та вмістом гонадотропних і статевих гормонів у крові в жінок після тиреоїдектомії та радіойодтерапії на супресивній терапії препаратами левотирокс, Diseases of the endocrine glands. Clinical endocrinology, 3. Good health, 03 medical and health sciences, 0302 clinical medicine, тиреоидэктомия, радиойодтерапия, относительная гиперэстрогения, диффузный фиброаденоматоз молочных желез, эндометриоз, супрессивная терапия левотироксином
File Description: application/pdf
Access URL: http://iej.zaslavsky.com.ua/article/download/104114/100535
https://doaj.org/article/366cfbf1996b42298cc2e7846801ae5a
http://iej.zaslavsky.com.ua/article/view/104114
https://core.ac.uk/display/87799628
http://iej.zaslavsky.com.ua/article/download/104114/100535
http://iej.zaslavsky.com.ua/article/view/104114 -
10Academic Journal
Authors: Toleutaev, T.A., Omarov, N.B., Aimagambetov, M.Zh., Bulegenov, T.A., Akparov, T.L., Akhmetzhanova, D.O., Karibayev, K.T.
Source: Наука и здравоохранение. :103-110
Subject Terms: relapse, Диффузно-токсический зоб, эмболизация, қалқанша безінің резекциясы, resection of the thyroid gland, тиреоидэктомия, thyroidectomy, Диффузды-токсикалық зоб, Diffuse toxic goiter, embolization, рецидив, резекция щитовидной железы, 3. Good health
-
11Academic Journal
Authors: Reshetov, I.V., Romanko, Yu.S.
Source: Head and neck. Russian Journal. 11
Subject Terms: liposomes, neutrophil activation, HPV, lipid-based nanocarriers, photobiomodulation therapy, нейростимуляция, THz irradiation of tissues and cells, флуоресцентная диагностика, 3D printing of a jaw implant, cancer biomarkers, oropharyngeal cancer, биомаркеры рака, parietal cell transplantation, увеальная меланома, фотобиомодуляционная терапия, клеточная терапия, septoplasty, vaccine, nanopreparations, fluorescent diagnostics, transferrin, 5-ALA, facial artery, тиреоидэктомия, рак ротоглотки, DNA expression pathways and profiles, heart rate variability, COVID-19, polymer micelles, 3. Good health, септопластика, фотодинамическая терапия, DCSIGN, photodynamic therapy, laser radiation, thyroidectomy, peptides, methylene blue, 3D surface scanning, cell therapy, uveal melanoma, neurostimulation
-
12Academic Journal
Source: Оториноларингология. Восточная Европа. :122-129
Subject Terms: 03 medical and health sciences, postoperative paresis, 0302 clinical medicine, тиреоидэктомия, thyroidectomy, spirometry, послеоперационные парезы, спирометрия, 3. Good health
-
13Academic Journal
Source: Clinical Endocrinology and Endocrine Surgery. Клінічна ендокринологія та ендокринна хірургія; № 2 (2020); 43-49
Clinical Endocrinology and Endocrine Surgery; № 2 (2020); 43-49
Clinical Endocrinology and Endocrine Surgery. Клиническая эндокринология и эндокринная хирургия; № 2 (2020); 43-49Subject Terms: 616.441-002.2-097-089.035.1:616-056.2, 2. Zero hunger, 03 medical and health sciences, 0302 clinical medicine, тиреоїдит Хашимото, якість життя, тиреоїдектомія, Hashimoto's thyroiditis, quality of life, thyroidectomy, тиреоидит Хашимото, качество жизни, тиреоидэктомия, 3. Good health
File Description: application/pdf
-
14
-
15Academic Journal
Authors: E. V. Ryabchenko, Е. В. Рябченко
Source: Siberian journal of oncology; Том 22, № 4 (2023); 154-158 ; Сибирский онкологический журнал; Том 22, № 4 (2023); 154-158 ; 2312-3168 ; 1814-4861
Subject Terms: фолликулярная опухоль, autoimmune thyroiditis, fine needle aspiration biopsy, thyroidectomy, follicular tumor, аутоиммунный тиреодит, тонкоигольная аспирационная биопсия, тиреоидэктомия
File Description: application/pdf
Relation: https://www.siboncoj.ru/jour/article/view/2692/1151; Rhatigan R.M., Roque J.L., Bucher R.L. Mucoepidermoid carcinoma of the thyroid gland. Cancer. 1977; 39(1): 210–4. doi:10.1002/1097-0142-(197701)39:13.0.co;2-h.; Sim S.J., Ro J.Y., Ordonez N.G., Cleary K.R., Ayala A.G. Sclerosing mucoepidermoid carcinoma with eosinophilia of the thyroid: report of two patients, one with distant metastasis, and review of the literature. Hum Pathol. 1997; 28(9): 1091–6. doi:10.1016/s0046-8177(97)90064-2.; Chan J.K., Albores-Saavedra J., Battifora H., Carcangiu M.L., Rosai J. Sclerosing mucoepidermoid thyroid carcinoma with eosinophilia. A distinctive low-grade malignancy arising from the metaplastic follicles of Hashimoto’s thyroiditis. Am J Surg Pathol. 1991; 15(5): 438–48.; Hunt J.L., LiVolsi V.A., Barnes E.L. p63 expression in sclerosing mucoepidermoid carcinomas with eosinophilia arising in the thyroid. Mod Pathol 2004; 17: 526–9. doi:10.1038/modpathol.3800021.; Lai C.Y., Chao T.C., Lin J.D., Hsueh C. Sclerosing mucoepidermoid carcinoma with eosinophilia of thyroid gland in a male patient: a case report and literature review. Int J Clin Exp Pathol. 2015; 8(5): 5947–51.; Requena M., Percovich J.C., Sambo M.E., Andía V.M. Conservative Management of Sclerosing Mucoepidermoid Carcinoma with Eosinophilia of the Thyroid Gland: 12 Years Follow-Up after an Atypical Initial Therapy. Adv Diabetes Endocrinol 2017; 2(1): 2.; Pantola C., Kala S., Athar M., Thakur S. Sclerosing mucoepidermoid carcinoma with eosinophilia of the thyroid: A cytological dilemma. J Cytol. 2016; 33(1): 37–9. doi:10.4103/0970-9371.175511.; Ames E., Campbell M.J., Affy A., Krane J.F., Huang E.C. Sclerosing mucoepidermoid carcinoma with eosinophilia: Cytologic characterization of a rare distinct entity in the thyroid. Diagn Cytopathol. 2018; 46(7): 632–5. doi:10.1002/dc.23914.; Shehadeh N.J., Vernick J., Lonardo F., Madan Sh.K., Jacobs J.R., Yoo G.H., Kim H.E., Ensley J.F. Sclerosing mucoepidermoid carcinoma with eosinophilia of the thyroid: a case report and review of the literature. Am J Otolaryngol 2004; 25(1): 48–53. doi:10.1016/S0196-0709-(03)00096-6.; Sang-wook Son, Kye-ho Lee, Jai Hyuen Lee, Na-Hye Myong, Dong-soo Yoo. Mucoepidermoid Carcinoma with Distant Metastases to the Kidney, Adrenal Gland, Skull and Gluteus Maximus Muscle: a Case Report. Investig Magn Reson Imaging. 2016; 20(1): 66–70. doi:10.13104/imri.2016.20.1.66.; Toper M.H., Sarioglu S. Molecular Pathology of Salivary Gland Neoplasms: Diagnostic, Prognostic, and Predictive Perspective. Adv Anat Pathol. 2021; 28(2): 81–93. doi:10.1097/PAP.0000000000000291.; Healey W.V., Perzin K.H., Smith L. Mucoepidermoid carcinoma of salivary gland origin. Classifcation, clinical-pathologic correlation, and results of treatment. Cancer. 1970; 26(2): 368–88. doi:10.1002/1097-0142(197008)26:23.0.co;2-k.; Shafque K., Zhang P.J., Montone K.T., Song S., Livolsi V.A., Baloch Z. Pathologic grading of mucoepidermoid carcinomas of the salivary gland and its effect on clinicopathologic follow-up: an institutional experience. Hum Pathol. 2020; 98: 89–97. doi:10.1016/j.humpath.2020.02.001.; Hong D.S., Fakih M.G., Strickler J.H., Desai J., Durm G.A., Shapiro G.I., Falchook G.S., Price T.J., Sacher A., Denlinger C.S., Bang Y.J., Dy G.K., Krauss J.C., Kuboki Y., Kuo J.C., Coveler A.L., Park K., Kim T.W., Barlesi F., Munster P.N., Ramalingam S.S., Burns T.F., Meric-Bernstam F., Henary H., Ngang J., Ngarmchamnanrith G., Kim J., Houk B.E., Canon J., Lipford J.R., Friberg G., Lito P., Govindan R., Li B.T. KRASG12C Inhibition with Sotorasib in Advanced Solid Tumors. N Engl J Med. 2020; 383(13): 1207–17. doi:10.1056/NEJMoa1917239.; Loong H.H., Du N., Cheng C., Lin H., Guo J., Lin G., Li M., Jiang T., Shi Z., Cui Y., Jin X., Yao J., Xing Y., Yao M., Wang K., Mok T.S.K., Liu L. KRAS G12C mutations in Asia: a landscape analysis of 11,951 Chinese tumor samples. Transl Lung Cancer Res. 2020; 9(5): 1759–69. doi:10.21037/tlcr-20-455.; https://www.siboncoj.ru/jour/article/view/2692
-
16Academic Journal
Authors: Chernikov R.A., Sleptsov I.V., Gorskaya N.A., Semenov A.A., Makar'in V.A., Mladenovich M., Kiyaev A.V.
Source: Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care; Vol 13 (2023): Supplement; 202 ; Российский вестник детской хирургии, анестезиологии и реаниматологии; Vol 13 (2023): Supplement; 202 ; 2587-6554 ; 2219-4061 ; 10.17816/psaic.2023
Subject Terms: папиллярный рак щитовидной железы у детей, эндокринные опухоли, тиреоидэктомия
File Description: application/pdf
Availability: https://rps-journal.ru/jour/article/view/1757
-
17Academic Journal
Authors: E. V. Ryabchenko, Е. В. Рябченко
Source: Head and Neck Tumors (HNT); Том 12, № 4 (2022); 71-80 ; Опухоли головы и шеи; Том 12, № 4 (2022); 71-80 ; 2411-4634 ; 2222-1468 ; 10.17650/2222-1468-2022-12-4
Subject Terms: тиреоидэктомия, papillary cancer, autoimmune thyroiditis, hemithyroidectomy, thyroidectomy, папиллярный рак, аутоиммунный тиреоидит, гемитиреоидэктомия
File Description: application/pdf
Relation: https://ogsh.abvpress.ru/jour/article/view/846/560; Cho B.Y., Choi H.S., Park Y.J. et al. Changes in the clinicopathological characteristics and outcomes of thyroid cancer in Korea over the past four decades. Thyroid 2013;23(7):797–804. DOI:10.1089/thy.2012.0329; Davies L., Welch H.G. Increasing incidence of thyroid cancer in the United States, 1973–2002. JAMA 2006;295(18):2164–7. DOI:10.1001/jama.295.18.2164; Elisei R., Molinaro E., Agate L. et al. Are the clinical and pathological features of differentiated thyroid carcinoma really changed over the last 35 years? Study on 4187 patients from a single Italian institution to answer this question. J Clin Endocrinol Metab 2010;95(4):1516–27. DOI:10.1210/jc.2009-1536; McNally R.J., Blakey K., James P.W. et al. Increasing incidence of thyroid cancer in great Britain, 1976–2005: age-period-cohort analysis. Eur J Epidemiol 2012;27(8):615–22. DOI:10.1007/s10654-012-9710-x; Jeon M.J., Kim W.G., Choi Y.M. et al. Features predictive of distant metastasis in papillary thyroid microcarcinomas. Thyroid 2016;26(1):161–8. DOI:10.1089/thy.2015.0375; Kim S.K., Park I., Woo J.W. et al. Total thyroidectomy versus lobectomy in conventional papillary thyroid microcarcinoma: analysis of 8676 patients at a single institution. Surgery 2017;161(2):485–92. DOI:10.1016/j.surg.2016.07.037; Siddiqui S., White M.G., Antic T. et al. Clinical and pathologic predictors of lymph node metastasis and recurrence in papillary thyroid microcarcinoma. Thyroid 2016;26(6):807–15. DOI:10.1089/thy.2015.0429; Yu X.M., Wan Y., Sippel R.S., Chen H. Should all papillary thyroid microcarcinomas be aggressively treated? An analysis of 18 445 cases. Ann Surg 2011;254(4):653–60. DOI:10.1097/SLA.0b013e318230036d; Mercante G., Frasoldati A., Pedroni C. et al. Prognostic factors affecting neck lymph node recurrence and distant metastasis in papillary microcarcinoma of the thyroid: results of a study in 445 patients. Thyroid 2009;19(7):707–16. DOI:10.1089/thy.2008.0270; Pazaitou-Panayiotou K., Capezzone M., Pacini F. Clinical features and therapeutic implication of papillary thyroid microcarcinoma. Thyroid 2007;17(11):1085–92. DOI:10.1089/thy.2007.0005; Pisanu A., Saba A., Podda M. et al. Nodal metastasis and recurrence in papillary thyroid microcarcinoma. Endocrine 2015;48(2):575– 81. DOI:10.1007/s12020-014-0350-7; Pyo J.S., Sohn J.H., Kang G. Detection of tumor multifocality is important for prediction of tumor recurrence in papillary thyroid microcarcinoma: a retrospective study and meta-analysis. J Pathol Transl Med 2016;50(4):278–86. DOI:10.4132/jptm.2016.03.29; Ross D.S., Litofsky D., Ain K.B. et al. Recurrence after treatment of micropapillary thyroid cancer. Thyroid 2009;19(10):1043–8. DOI:10.1089/thy.2008.0407; Chow S.M., Law S.C., Chan J.K. et al. Papillary microcarcinoma of the thyroid-prognostic significance of lymph node metastasis and multifocality. Cancer 2003;98(1):31–40. DOI:10.1002/cncr.11442; Ahn H.S., Kim H.J., Welch H.G. Korea’s thyroid-cancer “epidemic”: screening and overdiagnosis. New Engl J Med 2014;371(19):1765–7. DOI:10.1056/NEJMp1409841; Ahn H.S., Welch H.G. South Korea’s thyroid-cancer “epidemic”: turning the tide. New Engl J Med 2015;373(24):2389–90. DOI:10.1056/NEJMc1507622; Ito Y., Miyauchi A., Kihara M. et al. Patient age is significantly related to the progression of papillary microcarcinoma of the thyroid under observation. Thyroid 2014;24(1):27–34. DOI:10.1089/thy.2013.0367; Lang B.H., Wong C.K. A cost-effectiveness comparison between early surgery and non-surgical approach for incidental papillary thyroid microcarcinoma. Eur J Endocrinol 2015;173(3):367–75. DOI:10.1530/EJE-15-0454; Kwak J.Y. Indications for fine needle aspiration in thyroid nodules. Endocrinol Metab 2013;28(2):81–5. DOI:10.3803/EnM.2013.28.2.81; Haugen B.R., Alexander E.K., Bible K.C. et al. American thyroid association management guidelines for adult patients with thyroid nodules and differentiated thyroid cancer. Thyroid 2016;26(1):1– 133. DOI:10.1089/thy.2015.0020; Lang B.H., Chan D.T., Chow F.C. et al. The association of discolored parathyroid glands and hypoparathyroidism following total thyroidectomy. World J Surg 2016;40(7):1611–7. DOI:10.1007/s00268-016-3462-9; Bollerslev J., Rejnmark L., Marcocci C. et al. European Society of Endocrinology. European Society of Endocrinology clinical guideline: treatment of chronic hypoparathyroidism in adults. Eur J Endocrinol 2015;173(2):G1–20. DOI:10.1530/EJE-15-0628; Bilimoria K.Y., Bentrem D.J., Ko C.Y. et al. Extent of surgery affects survival for papillary thyroid cancer. Ann Surg 2007;246(3):375–81, discussion 381–474. DOI:10.1097/SLA.0b013e31814697d9; Mazzaferri E.L., Kloos R.T. Clinical review 128: current approaches to primary therapy for papillary and follicular thyroid cancer. J Clin Endocrinol Metab 2001;86(4):1447–63. DOI:10.1210/jcem.86.4.7407; American Thyroid Association Guidelines Taskforce on Thyroid Nodules and Differentiated Thyroid Cancer. 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):1167–214. DOI:10.1089/thy.2009.0110; Nixon I.J., Ganly I., Patel S.G. et al. Thyroid lobectomy for treatment of well differentiated intrathyroid malignancy. Surgery 2012;151(4):571–9. DOI:10.1016/j.surg.2011.08.016; Barney B.M., Hitchcock Y.J., Sharma P. et al. Overall and cause-specific survival for patients undergoing lobectomy, near-total, or total thyroidectomy for differentiated thyroid cancer. Head Neck 2011;33(5):645–9. DOI:10.1002/hed.21504; Haigh P.I., Urbach D.R., Rotstein L.E. Extent of thyroidectomy is not a major determinant of survival in low- or high-risk papillary thyroid cancer. Ann Surg Oncol 2005;12(1):81–9. DOI:10.1007/s10434-004-1165-1; Kandil E., Krishnan B., Noureldine S.I. et al. Hemithyroidectomy: a meta-analysis of postoperative need for hormone replacement and complications. ORL J Otorhinolaryngol Its Relat Spec 2013;75(1):6–17. DOI:10.1159/000345498; Hauch A., Al-Qurayshi Z., Randolph G., Kandil E. Total thyroidectomy is associated with increased risk of complications for low- and high-volume surgeons. Ann Surg Oncol 2014;21(12):3844–52. DOI:10.1245/s10434-014-3846-8; Han J.M., Kim W.G., Kim T.Y. et al. Effects of low-dose and high-dose postoperative radioiodine therapy on the clinical outcome in patients with small differentiated thyroid cancer having microscopic extrathyroidal extension. Thyroid 2014;24(5):820–5. DOI:10.1089/thy.2013.0362; Jeon M.J., Kim W.G., Choi Y.M. et al. Recent changes in the clinical outcome of papillary thyroid carcinoma with cervical lymph node metastasis. J Clin Endocrinol Metab 2015;100(9):3470–7. DOI:10.1210/JC.2015-2084; https://ogsh.abvpress.ru/jour/article/view/846
-
18Conference
Subject Terms: щитовидная железа, лактация, α-глицерофосфатоксидаза, тиреоидэктомия, тиреотропная активность
Relation: https://zenodo.org/records/6354260; oai:zenodo.org:6354260; https://doi.org/10.5281/zenodo.6354260
-
19Academic Journal
Authors: Tseregorodtseva, Polina, Budylin, Gleb, Korneva, Nadezhda, Kim, Ilya, Shiriaev, Sviatoslav, Yakimov, Boris, Pachuashvili, Nano, Vorotnikov, Alexey, Shcherbakova, Anastasia, Willmon, Parker, Petrov, Vladimir A. (канд. техн. наук), Tuchin, Valery V., Mokrysheva, Natalia, Mahadevan-Jansen, Anita, Urusova, Liliya, Shirshin, Evgeny A.
Source: Scientific Reports [Еlectronic resource]. 2025. Vol. 15. P. 22097 (1-11)
Subject Terms: паращитовидные железы, спектроскопия диффузного отражения, ближняя инракрасная автофлуоресценция, оценка жизнеспособности и идентификация, тиреоидэктомия
File Description: application/pdf
Relation: Scientific Reports [Еlectronic resource]; koha:001268503; https://vital.lib.tsu.ru/vital/access/manager/Repository/koha:001268503
-
20Academic Journal
Authors: E. V. Ryabchenko, Е. В. Рябченко
Source: Siberian journal of oncology; Том 21, № 3 (2022); 168-173 ; Сибирский онкологический журнал; Том 21, № 3 (2022); 168-173 ; 2312-3168 ; 1814-4861 ; 10.21294/1814-4861-2022-21-3
Subject Terms: центральная лимфаденэктомия, calcitonin, procalcitonin, COVID-19, thyroidectomy, central lymphadenectomy, кальцитонин, прокальцитонин, тиреоидэктомия
File Description: application/pdf
Relation: https://www.siboncoj.ru/jour/article/view/2175/1000; Zhou P., Yang X.L., Wang X.G., Hu B., Zhang L., Zhang W., Si H.R., Zhu Y., Li B., Huang C.L., Chen H.D., Chen J., Luo Y., Guo H., Jiang R.D., Liu M.Q., Chen Y., Shen X.R., Wang X., Zheng X.S., Zhao K., Chen Q.J., Deng F., Liu L.L., Yan B., Zhan F.X., Wang Y.Y., Xiao G.F., Shi Z.L. A pneumonia outbreak associated with a new coronavirus of probable bat origin. Nature. 2020; 579(7798): 270–3. doi:10.1038/s41586-020-2012-7.; Coronaviridae Study Group of the International Committee on Taxonomy of Viruses. The species Severe acute respiratory syndrome-related coronavirus: classifying 2019-nCoV and naming it SARS-CoV-2. Nat Microbiol. 2020; 5(4): 536–44. doi:10.1038/s41564-020-0695-z.; Ahmed S., Jafri L., Hoodbhoy Z., Siddiqui I. Prognostic Value of Serum Procalcitonin in COVID-19 Patients: A Systematic Review. Indian J Crit Care Med. 2021; 25(1): 77–84. doi:10.5005/jp-journals-10071-23706.; Xu J.B., Xu C., Zhang R.B., Wu M., Pan C.K., Li X.J., Wang Q., Zeng F.F., Zhu S. Associations of procalcitonin, C-reaction protein and neutrophil-to-lymphocyte ratio with mortality in hospitalized COVID-19 patients in China. Sci Rep. 2020; 10(1): 15058. doi:10.1038/s41598- 020-72164-7.; Algeciras-Schimnich A., Preissner C.M., Theobald J.P., Finseth M.S., Grebe S.K. Procalcitonin: a marker for the diagnosis and follow-up of patients with medullary thyroid carcinoma. J Clin Endocrinol Metab. 2009; 94(3): 861–8. doi:10.1210/jc.2008-1862.; Karagiannis A.K., Girio-Fragkoulakis C., Nakouti T. Procalcitonin: A New Biomarker for Medullary Thyroid Cancer? A Systematic Review. Anticancer Res. 2016; 36(8): 3803–10.; Pacini F., Castagna M.G., Cipri C., Schlumberger M. Medullary thyroid carcinoma. Clin Oncol (R Coll Radiol). 2010; 22(6): 475–85. doi:10.1016/j.clon.2010.05.002.; Meijer J.A., le Cessie S., van den Hout W.B., Kievit J., Schoones J.W., Romijn J.A., Smit J.W. Calcitonin and carcinoembryonic antigen doubling times as prognostic factors in medullary thyroid carcinoma: a structured meta-analysis. Clin Endocrinol (Oxf). 2010; 72(4): 534–42. doi:10.1111/j.1365-2265.2009.03666.x.; Cabanillas M.E., Hu M.I., Jimenez C., Grubbs E.G., Cote G.J. Treating medullary thyroid cancer in the age of targeted therapy. Int J Endocr Oncol. 2014; 1(2): 203–16. doi:10.2217/ije.14.26.; Gianotti L., D'Agnano S., Pettiti G., Tassone F., Giraudo G., Lauro C., Lauria G., Del Bono V., Borretta G. Persistence of Elevated Procalcitonin in a Patient with Coronavirus Disease 2019 Uncovered a Diagnosis of Medullary Thyroid Carcinoma. AACE Clin Case Rep. 2021; 7(5): 288–92. doi:10.1016/j.aace.2021.05.001.; Lam S.D., Bordin N., Waman V.P., Scholes H.M., Ashford P., Sen N., van Dorp L., Rauer C., Dawson N.L., Pang C.S.M., Abbasian M., Sillitoe I., Edwards S.J.L., Fraternali F., Lees J.G., Santini J.M., Orengo C.A. SARS-CoV-2 spike protein predicted to form complexes with host receptor protein orthologues from a broad range of mammals. Sci Rep. 2020; 10(1): 16471. doi:10.1038/s41598-020-71936-5.; Han T., Kang J., Li G., Ge J., Gu J. Analysis of 2019-nCoV receptor ACE2 expression in diferent tissues and its signifcance study. Ann Transl Med. 2020; 8(17): 1077. doi:10.21037/atm-20-4281.; Lazartigues E., Qadir M.M.F., Mauvais-Jarvis F. Endocrine Signifcance of SARS-CoV-2’s Reliance on ACE2. Endocrinology. 2020; 161(9). doi:10.1210/endocr/bqaa108.; Rotondi M., Coperchini F., Ricci G., Denegri M., Croce L., Ngnitejeu S.T., Villani L., Magri F., Latrofa F., Chiovato L. Detection of SARS-COV-2 receptor ACE-2 mRNA in thyroid cells: a clue for COVID19-related subacute thyroiditis. J Endocrinol Invest. 2021; 44(5): 1085–90. doi:10.1007/s40618-020-01436-w.; Sigrist C.J., Bridge A., Le Mercier P. A potential role for integrins in host cell entry by SARS-CoV-2. Antiviral Res. 2020; 177. doi:10.1016/j. antiviral.2020.104759.; Davis P.J., Mousa S.A., Lin H.Y. Nongenomic Actions of Thyroid Hormone: The Integrin Component. Physiol Rev. 2021; 101(1): 319–52. doi:10.1152/physrev.00038.2019.; Schmohl K.A., Mueller A.M., Dohmann M., Spellerberg R., Urnauer S., Schwenk N., Ziegler S.I., Bartenstein P., Nelson P.J., Spitzweg C. Integrin αvβ3-Mediated Efects of Thyroid Hormones on Mesenchymal Stem Cells in Tumor Angiogenesis. Thyroid. 2019; 29(12): 1843–57. doi:10.1089/thy.2019.0413.; Davis P.J., Lin H.Y., Hercbergs A., Mousa S.A. Actions of L-thyroxine (T4) and Tetraiodothyroacetic Acid (Tetrac) on Gene Expression in Thyroid Cancer Cells. Genes (Basel). 2020; 11(7): 755. doi:10.3390/genes11070755.; Davis P.J., Lin H.Y., Hercbergs A., Keating K.A., Mousa S.A. Coronaviruses and Integrin αvβ3: Does Thyroid Hormone Modify the Relationship? Endocr Res. 2020; 45(3): 210–5. doi:10.1080/07435800.2020.1767127.; https://www.siboncoj.ru/jour/article/view/2175