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1Academic Journal
Authors: Нонна Марковна Шибельгут, Наталья Анатольевна Батина, Вадим Гельевич Мозес, Елена Владимировна Рудаева, Светлана Ивановна Елгина, Кира Борисовна Мозес
Source: Мать и дитя в Кузбассе, Vol 26, Iss 1, Pp 92-95 (2025)
Subject Terms: беременность, плацента, врастание плаценты, предлежание плаценты, ультразвуковая диагностика, Pediatrics, RJ1-570, Gynecology and obstetrics, RG1-991
File Description: electronic resource
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2Academic Journal
Authors: А. С. Александрович
Source: Žurnal Grodnenskogo Gosudarstvennogo Medicinskogo Universiteta, Vol 22, Iss 6, Pp 572-578 (2025)
Subject Terms: эндотелий, функция эндотелия, напряжение сдвига, плечевая артерия, лучевая диагностика, ультразвуковая диагностика, Medicine
File Description: electronic resource
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3Academic Journal
Source: Мать и дитя в Кузбассе, Vol 26, Iss 1, Pp 92-95 (2025)
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4Academic Journal
Authors: P. V. Glavnov, S. V. Serebryakova, S. A. Varzin, П. В. Главнов, С. В. Серебрякова, С. А. Варзин
Source: Diagnostic radiology and radiotherapy; Том 16, № 3 (2025); 109-114 ; Лучевая диагностика и терапия; Том 16, № 3 (2025); 109-114 ; 2079-5343
Subject Terms: магистральные подкожные вены, CEAP (2020) classification, ultrasound diagnosis, large saphenous vein, small saphenous vein, vein diameter, varicose veins, mains, классификация CEAP (2020 г.), ультразвуковая диагностика, большая подкожная вена, малая подкожная вена, диаметр вен, варикозная болезнь
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Relation: https://radiag.bmoc-spb.ru/jour/article/view/1150/709; Rabe E., Pannier F. Epidemiology of chronic venous disorders // International Angiology. 2018. Vol. 37. P. 181–254. doi:10.23736/S0392-9590.18.04001-7.; Lurie F., Passman M. Clinical practice guidelines for chronic venous disease // Journal of Vascular Surgery. 2020. Vol. 71. P. 220–261. doi:10.1016/j.jvs.2019.12.075.; Nicolaides A.N. Ultrasound diagnosis of venous insufficiency // International Angiology. 2019. Vol. 38. P. 105–127. doi:10.23736/S0392-9590.19.04133-3.; Mendoza E. Pathophysiology and management of venous ulcers // Phlebology. 2017. Vol. 32. P. 478–485. doi:10.1177/0268355516687865.; Савельев В.С. Ультразвуковые критерии диагностики варикозной болезни // Флебология. 2021. Т. 15, № 2. С. 45–52.; Gloviczki P., Comerota A.J., Dalsing M.C., Eklof B.G., Gillespie D.L., Gloviczki M.L., Lohr J.M., McLafferty R.B., Meissner M.H., Murad M.H., Padberg F.T., Pappas P.J., Passman M.A., Raffetto J.D., Vasquez M.A., Wakefield T.W.; Society for Vascular Surgery; American Venous Forum. The care of patients with varicose veins and associated chronic venous diseases: clinical practice guidelines of the Society for Vascular Surgery and the American Venous Forum // J. Vasc. Surg. 2011. May; Vol. 53 (5 Suppl.). Р. 2S-48S. doi:10.1016/j.jvs.2011.01.079. PMID: 21536172.; Nicolaides A.N. et al. Management of chronic venous disorders of the lower limbs: guidelines according to scientific evidence // International Angiology. 2020. Vol. 39, No. 3. P. 175–240. doi:10.23736/S0392–9590.20.04389-6.; Mansilha A. et al. Hemodynamic and clinical impact of ultrasound-derived venous reflux parameters // Journal of Vascular Surgery: Venous and Lymphatic Disorders. 2022. Vol. 10, No. 1. P. 125–132. doi:10.1016/j.jvsv.2021.06.019.; Lurie F. et al. The 2022 update of the CEAP classification system and reporting standards // Journal of Vascular Surgery: Venous and Lymphatic Disorders. 2023. Vol. 11, No. 1. P. 5–9. doi:10.1016/j.jvsv.2022.09.004.; Rabe E. et al. Indications for compression therapy in venous and lymphatic disease: consensus document // Phlebology. 2021. Vol. 36, No. 3. P. 163–184. doi:10.1177/0268355520963946.; Kistner R.L. et al. Update on the surgical treatment of venous reflux disease // Journal of Vascular Surgery: Venous and Lymphatic Disorders. 2021. Vol. 9, No. 1. P. 37–46. doi:10.1016/j.jvsv.2020.06.014.; Cavezzi A. Duplex ultrasound in chronic venous insufficiency // European Journal of Vascular and Endovascular Surgery. 2019. Vol. 58. P. 123–134. doi:10.1016/j.ejvs.2019.02.022.; Raffetto J.D. Venous wall remodeling in chronic venous disease // Journal of Vascular Surgery. 2020. Vol. 72. P. 726–735. doi:10.1016/j.jvs.2019.11.050.; Lee B.B. The role of small saphenous vein in chronic venous disorders // Phlebology. 2022. Vol. 37. P. 5–14. doi:10.1177/02683555211035500.; Кириенко А.И., Богачев В.Ю., Гаврилов С.Г. Современные подходы к лечению хронической венозной недостаточности // Анналы хирургии. 2020. № 3. С. 34–41.; Panpikoon T., Metheekul P., Treesit T., Bua-Ngam C., Sriprachyakul A., Pichitpichatkul K. Diameter-reflux relationship of the saphenous vein in the C0–C3 patients of chronic venous disease // Phlebology. 2022. Jul; Vol. 37, No. 6. Р. 439–444. doi:10.1177/02683555221088105.; Liu H., Li L., Wei W., Tang Y., Liu L., Xiao C. Correlation between popliteal vein functional diameter and the severity of chronic venous disease // Phlebology. 2025. Jul; Vol. 40, No. 6. Р. 415–419. doi:10.1177/02683555241310531.; Yang Q., Zhao Y., Chen X., Tang P., Li L., Zhao J., Han Y., Wu D., An L., Zhang B., Zhou X., Liu L., Chi Y.W. Association between vein diameters, reflux characteristics, and clinical severity in patients with chronic venous insufficiency in Northwest China // J. Vasc. Surg. Venous Lymphat Disord. 2021. Mar; Vol. 9, No. 2. Р. 401–408.e1. doi:10.1016/j.jvsv.2020.07.006. Epub 2020 Jul 28. PMID: 327309.; Главнов П.В., Серебрякова С.В., Варзин С.А. Клинические и ультразвуковые корреляции при варикозной болезни // Вестник Санкт-Петербургского университета. Медицина. 2025. № 20. С. 70–80. https://doi.org/10.21638/spbu11.2025.106.
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5Academic Journal
Authors: N. V. Shavrina, S. V. Novikov, P. A. Yartsev, L. T. Khamidova, M. M. Rogal, K. V. Staleva, B. T. Tsuleiskiri, A. S. Аrutyunyan, Н. В. Шаврина, С. В. Новиков, П. А. Ярцев, Л. Т. Хамидова, М. М. Рогаль, К. В. Сталева, Б. Т. Цулеискири, А. С. Арутюнян
Source: Russian Sklifosovsky Journal "Emergency Medical Care"; Том 14, № 3 (2025); 563-570 ; Журнал им. Н.В. Склифосовского «Неотложная медицинская помощь»; Том 14, № 3 (2025); 563-570 ; 2541-8017 ; 2223-9022
Subject Terms: квалификация специалиста ультразвуковой диагностики, ultrasonic diagnostics, computed tomography, blood supply disorders of intestinal wall, qualification of sonographers, ультразвуковая диагностика, компьютерная томография, нарушения кровоснабжения кишечной стенки
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Relation: https://www.jnmp.ru/jour/article/view/2212/1645; Inoue A, Nitta N, Ota S, Takaki K, Imai Y, Misaki S, et al.MR Imagingbased Evaluation of Mesenteric Ischemia Caused by Strangulated Small Bowel Obstruction and Mesenteric Venous Occlusion: An Experimental Study Using Rabbits. Magn Reson Med Sci. 2020;19(2):125–134. PMID: 31061268 https://doi.org/10.2463/mrms.mp.2019-0010; Wadman M, Syk I, Elmståhl S. Survival after operations for ischaemic bowel disease. Eur J Surg. 2000;166(11):872–877. PMID: 11097154 https://doi.org/10.1080/110241500447263; Kanasaki S, Furukawa A, Fumoto K, Hamanaka Y, Ota S, Hirose T, et al. Acute mesenteric ischemia: multidetector CT findings and endovascular management. Radiographics. 2018; 38(3):945–961. PMID: 29757725 https://doi.org/10.1148/rg.2018170163; Bala M, Catena F, Kashuk J, De Simone B, Gomes CA, Weber D, et al. Acute mesenteric ischemia: updated guidelines of the World Society of Emergency Surgery. World J Emerg Surg. 2022;17(1):54. PMID: 36261857 https://doi.org/10.1186/s13017-022-00443-x; Björck M, Koelemay M, Acosta S, Bastos Goncalves F, Kölbel T, et al. Editor’s Choice – Management of the Diseases of Mesenteric Arteries and Veins: Clinical Practice Guidelines of the European Society of Vascular Surgery (ESVS). Eur J Vasc Endovasc Surg. 2017;53(4):460–510. PMID: 28359440 https://doi.org/10.1016/j.ejvs.2017.01.010; Mizushima T, Udagawa E, Hasegawa M, Tazuke Y, Okuyama H, Fernandez J, et al. Etiologies and treatments of chronic intestinal failure-short bowel syndrome (SBS) in Japanese adults: a real-world observational study. Surg Today. 2022;52(9):1350–1357. PMID: 35195767 https://doi.org/10.1007/s00595-022-02469-9; Acosta S, Bjorck M. Modern treatment of acute mesenteric ischaemia. Br J Surg. 2014;101(1):e100–e108. PMID: 24254428 https://doi.org/10.1002/bjs.9330; Шаврина Н.В. Ультразвуковая диагностика нарушения кровообращения стенки кишки при острой тонкокишечной непроходимости: автореферат дисс. … канд. мед. наук. Москва; 2024. URL: https://www.vishnevskogo.ru/download/dissertation_council/com_prot_ds_2/2024/ShavrinaNV-2024-avtoreferat.pdf [Дата обращения 31 марта 2025 г.]; Долгина Е.В. Опыт диагностики острой мезентериальной ишемии за границей и в Российской Федерации. StudArctic Forum. 2021;3(23):26–28. URL: https://saf.petrsu.ru/journal/article.php?id=6341 [Дата обращения 31 марта 2025 г.]; Старосельцева О.А., Нуднов Н.В., Радутная М.Л., Кирчин А.Н., Бондарь Е.Л., Бессонова Л.В. и др. Сложности лучевой диагностики острого мезентериального тромбоза у пациентов в хроническом критическом состоянии. Вестник рентгенологии и радиологии. 2021;102(4):217–226. https://doi.org/10.20862/0042-4676-2021-102-4-217-226; Сухаруков А.С. Оптимизация диагностики, прогнозирование риска развития и профилактика нарушений мезентериального кровообращения: автореферат дис. … канд. мед. наук. Москва; 2024. URL: https://old.med.ru/sites/default/files/docs/Suharukov_Avtoref.pdf [Дата обращения 31 марта 2025 г.]; https://www.jnmp.ru/jour/article/view/2212
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6Academic Journal
Authors: Шибельгут, Нонна Марковна, Батина, Наталья Анатольевна, Мозес, Вадим Гельевич, Рудаева, Елена Владимировна, Елгина, Светлана Ивановна, Мозес, Кира Борисовна
Source: Mother and Baby in Kuzbass; № 1 (2025): март; 92-95 ; Мать и Дитя в Кузбассе; № 1 (2025): март; 92-95 ; 2542-0968 ; 1991-010X
Subject Terms: pregnancy, placenta, placenta accrete, placenta previa, ultrasound diagnostics, беременность, плацента, врастание плаценты, предлежание плаценты, ультразвуковая диагностика
File Description: text/html; application/pdf
Relation: http://mednauki.ru/index.php/MD/article/view/1206/2056; http://mednauki.ru/index.php/MD/article/view/1206/2072; http://mednauki.ru/index.php/MD/article/downloadSuppFile/1206/1879; http://mednauki.ru/index.php/MD/article/view/1206
Availability: http://mednauki.ru/index.php/MD/article/view/1206
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7Academic Journal
Authors: A. B. Sugak, S. I. Babatova, E. A. Filippova, Yu. L. Podurovskaya, M. I. Pykov, Z. N. Batdalova, А. Б. Сугак, С. И. Бабатова, Е. А. Филиппова, Ю. Л. Подуровская, М. И. Пыков, З. Н. Батдалова
Source: Diagnostic radiology and radiotherapy; Том 16, № 1 (2025); 85-94 ; Лучевая диагностика и терапия; Том 16, № 1 (2025); 85-94 ; 2079-5343
Subject Terms: ультразвуковая диагностика, calyx-pelvic system dilation, children, classification, ultrasound, расширение чашечно-лоханочной системы, дети, классификация
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Relation: https://radiag.bmoc-spb.ru/jour/article/view/1069/679; Павлова В.С., Крючко Д.С., Подуровская Ю.Л., Пекарева Н.А. Врожденные пороки развития почек и мочевыводящих путей: анализ современных принципов диагностики и прогностически значимых маркеров поражения почечной ткани // Неонатология: новости, мнения, обучение. 2018. Т. 6, № 2. С. 78–86. https://doi.org/10.24411/2308-2402-2018-00020.; Sairam S., Al-Habib A., Sasson S., Thilaganathan B. Natural history of fetal hydronephrosis diagnosed on mid-trimester ultrasound // Ultrasound Obstet. Gynecol. 2001. Vol. 17, Nо. 3. P. 191–196. https://doi.org/10.1046/j.1469-0705.2001.00333.x.; Ismaili K., Hall M., Donner C. et al. Results of systematic screening for minor degrees of fetal renal pelvis dilatation in an unselected population // Am. J. Obstet. Gynecol. 2003. Vol. 188, Nо. 1. P. 242–246. https://doi.org/10.1067/mob.2003.81.; Левитская М.В., Меновщикова Л.Б., Голоденко Н.В. и др. Диагностический алгоритм у младенцев с антенатально выявленной пиелоэктазией // Детская хирургия. 2012. № 1. С. 7–11.; Herthelius M. Antenatally detected urinary tract dilatation: long-term outcome // Pediatric Nephrology. 2023. Vol. 38. P. 3221–3227. https://doi.org/10.1007/s00467-023-05907-z.; Сугак А.Б., Бабатова С.И., Филиппова Е.А. и др. Расширение чашечно-лоханочной системы у детей: классификации, тактика лечения // Неонатология: новости, мнения, обучение. 2022. Т. 10, № 3. С. 33–43. https://doi.org/10.33029/2308-2402–2022-10-3-33-43.; Nguyen H.T., Benson C.B., Bromley B. et al. Multidisciplinary consensus on the classification of prenatal and postnatal urinary tract dilation (UTD classification system) // J. Pediatr. Urol. 2014. Vol. 10, N 6. P. 982–999. https://doi.org/10.1016/j.jpurol.2014.10.002; Riccabona M., Avni F.E., Blickman J.G. et al. Imaging recommendations in paediatric uroradiology: minutes of the ESPR workgroup session on urinary tract infection, fetal hydronephrosis, urinary tract ultrasongraphy and voiding cystourethrography, Barcelona, Spain, June 2007 // Pediatr Radiol. 2008. Vol. 38, Nо. 2. P. 138–145. https://doi.org/10.1007/s00247-007-0695-7.; Hodhod A., Capolicchio J.P., Jednak R. et al. Evaluation of urinary tract dilation classification system for grading postnatal hydronephrosis // J. Urol. 2016. Vol. 195, Nо. 3. P. 725–730. https://doi.org/10.1016/j.juro.2015.10.089.; Braga L.H., McGrath M., Farrokhyar F. et al. Association of initial society for fetal urology grades and urinary tract dilatation risk groups with clinical outcomes in patients with isolated prenatal hydronephrosis // J. Urol. 2017. Vol. 197 (3 Pt 2). P. 831–837. https://doi.org/10.1016/j.juro.2016.08.099.; Nelson C.P., Lee R.S., Trout A.T. et al. The association of postnatal urinary tract dilation risk score with clinical outcomes // J. Pediatr. Urol. 2019. Vol. 15, Nо. 4. P. 341. e1–341.e6. https://doi.org/10.1016/j.jpurol.2019.05.001.; Melo F.F., Vasconcelos M.A., Mak R.H. et al. Postnatal urinary tract dilatation classification: improvement of the accuracy in predicting kidney injury // Pediatric Nephrology. 2022. Vol. 37. P. 613–623. https://doi.org/10.1007/s00467-021-05254-x.; Hwang J.J., Kim P.H., Yoon H.M. et al. Application of the postnatal urinary tract dilation classification system to predict the need for surgical intervention among neonates and young infants // Ultrasonography. 2023. Vol. 42, Nо. 1. P. 136–146. https://doi.org/10.14366/usg.22035.; Nguyen H.T., Phelps A., Coley B. et al. 2021 update on the urinary tract dilation (UTD) classification system: clarifications, review of the literature, and practical suggestions // Pediatr. Radiol. 2022. Vol. 52, Nо. 4. P. 740–751. https://doi.org/10.1007/s00247-021-05263-w.; Han M., Kim H.G., Lee J-D. et al. Conversion and reliability of two urological grading systems in infants: the Society for Fetal Urology and the urinary tract dilation classification system // Pediat. Radiol. 2017. Vol. 47, Nо. 1. P. 65–73. https://doi.org/10.1007/s00247-016-3721-9.; Onen A. An alternative grading system to refine the criteria for severity of hydronephrosis and optimal treatment guidelines in neonates with primary UPJ-type hydronephrosis // J. Pediatr. Urol. 2007. Vol. 3, Nо. 3. P. 200–205. https://doi:org/10.1016/j.jpurol.2006.08.002.; Kadioglu A. Renal measurements, including length, parenchymal thickness, and medullary pyramid thickness, in healthy children: what are the normative ultrasound values? // Am. J. Roentgenol. 2010. Vol. 194. P. 509–515. https://doi.org/10.2214/AJR.09.2986.; Jequier S., Rousseau O. Sonographic measurements of the normal bladder wall in children // Am. J. Roentgenol. 1987. Vol. 149. P. 563–566.
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8Academic Journal
Authors: I. A. Pikalo, V. V. Podkamenev, O. A. Karabinskaya, D. V. Marchenko, N. V. Akudovich, N. I. Mikhailov, I. S. Sharapov, И. А. Пикало, В. В. Подкаменев, О. А. Карабинская, Д. В. Марченко, Н. В. Акудович, Н. И. Михайлов, И. С. Шарапов
Source: Medical Visualization; Принято в печать ; Медицинская визуализация; Принято в печать ; 2408-9516 ; 1607-0763
Subject Terms: ультразвуковая диагностика, children, hemoperitoneum, ultrasound diagnostics, дети, гемоперитонеум
File Description: application/pdf
Relation: https://medvis.vidar.ru/jour/article/view/1492/915; https://medvis.vidar.ru/jour/article/downloadSuppFile/1492/2442; https://medvis.vidar.ru/jour/article/downloadSuppFile/1492/2443; Stottlemyre R.L., Notrica D.M., Cohen A.S. et al. Hemodilution in pediatric trauma: Defining the expected hemoglobin changes in patients with liver and/or spleen injury: An ATOMAC+ secondary analysis. J. Pediatr. Surg. 2023; 58 (2): 325–329. http://doi.org/10.1016/j.jpedsurg.2022.10.044; Stefanopol I.A., Danila D.M., Voda-Chelmu C. et al. Non-operative Management – The First Option in the Treatment of Blunt Liver and Spleen Trauma in Pediatric Patients. Chirurgia (Bucur). 2024; 119 (1): 65–75. http://doi.org/10.21614/chirurgia.2024.v.119.i.1.p.65; Basnet S., Pradhan A., Bade S. et al. Hemoperitoneum among Pediatric Abdominal Trauma Patients Visiting in Emergency Department of a Tertiary Care Centre: A Descriptive Cross-sectional study. J. Nepal Med. Assoc. 2023; 61 (257): 59–63. http://doi.org/10.31729/jnma.7520; Hassankhani A., Amoukhteh M., Jannatdoust P. et al. A systematic review and meta-analysis of incidental findings in computed tomography scans for pediatric trauma patients. Clin. Imaging. 2023; 103: 109981. http://doi.org/10.1016/j.clinimag.2023.109981; Cioffi S.P., Cimbanassi S., Chiara O. Blunt abdominal trauma: watch and wait. Curr. Opin. Crit. Care. 2023; 29 (6): 674–681. http://doi.org/10.1097/MCC.0000000000001095.; Hauptmann M., Byrnes G., Cardis E. et al. Brain cancer after radiation exposure from CT examinations of children and young adults: results from the EPI-CT cohort study. Lancet Oncol. 2023; 24 (1): 45–53. http://doi.org/10.1016/S1470-2045(22)00655-6; Bosch de Basea Gomez M., Thierry-Chef I., Harbron R. et al. Risk of hematological malignancies from CT radiation exposure in children, adolescents and young adults. Nat. Med. 2023; 29 (12): 3111–3119. http://doi.org/10.1038/s41591-023-02620-0; Ploussi A., Brountzos E., Rammos S. et al. Radiation Exposure in Pediatric Interventional Procedures. Cardiovasc. Intervent. Radiol. 2021; 44 (6): 857–865. http://doi.org/10.1007/s00270-020-02752-7.; Fornari M.J., Lawson S.L. Pediatric Blunt Abdominal Trauma and Point-of-Care Ultrasound. Pediatr. Emerg. Care. 2021; 37 (12): 624–629. http://doi.org/10.1097/PEC.0000000000002573; Breunig M., Chelf C., Kashiwagi D. Point-of-Care Ultrasound Psychomotor Learning Curves: A Systematic Review of the Literature. J. Ultrasound Med. 2024; Online ahead of print. http://doi.org/10.1002/jum.16477; Nti B.K., Benzoni N., Starr R. et al. Serial Trauma Abdominal Ultrasound in Children (STAUNCH): A Pilot Study. Pediatr. Emerg. Care. 2024; Epub ahead of print. http://doi.org/10.1097/PEC.0000000000003208; Kim T.A., Kwon J., Kang B.H. Accuracy of Focused Assessment with Sonography for Trauma (FAST) in Blunt Abdominal Trauma. Emerg. Med. Int. 2022; 2022: 8290339. http://doi.org/10.1155/2022/8290339; Bouzid D., Tran-Dinh A., Lortat-Jacob B. et al.; Bichat stab wounds injury study group. Ultrasonography in thoracic and abdominal stab wound injury: results from the FETTHA study. Emerg. Med. J. 2023; 40 (12): 821–825. http://doi.org/10.1136/emermed-2023-213078; Leo M.M., Potter I.Y., Zahiri M. et al. Using Deep Learning to Detect the Presence and Location of Hemoperitoneum on the Focused Assessment with Sonography in Trauma (FAST) Examination in Adults. J. Digit. Imaging. 2023; 36 (5): 2035–2050. http://doi.org/10.1007/s10278-023-00845-6; Jensen L.R., Possfelt-Møller E., Nielsen A.E. et al. Accuracy of FAST in detecting intraabdominal bleeding in major trauma with pelvic and/or acetabular fractures: a retrospective cohort study. Eur. J. Orthop. Surg. Traumatol. 2024; 34 (3): 1479–1486. http://doi.org/10.1007/s00590-023-03813-6; Lin K.T., Lin Z.Y., Huang C.C. et al. Prehospital ultrasound scanning for abdominal free fluid detection in trauma patients: a systematic review and meta-analysis. BMC Emerg. Med. 2024; 24 (1): 7. http://doi.org/10.1186/s12873-023-00919-2; Анастасов А.Г., Щербинин А.В., Зубрилова Е.Г. Внутрибрюшное кровотечение/шок и особенности гомеостаза у детей с изолированной тупой травмой живота, разрывом селезенки. Военная и тактическая медицина, медицина неотложных состояний. 2022; 1 (3): 35–38. http://doi.org/10.55359/u0344-4105-0080-k; Katsura M., Fukuma S., Kuriyama A. et al. Association between contrast extravasation on computed tomography scans and pseudoaneurysm formation in pediatric blunt splenic and hepatic injury: A multi-institutional observational study. J. Pediatr. Surg. 2020; 55 (4): 681–687. http://doi.org/10.1016/j.jpedsurg.2019.07.005; Savoia P., Jayanthi S.K., Chammas M.C. Focused Assessment with Sonography for Trauma (FAST). J. Med. Ultrasound. 2023; 31 (2): 101–106. http://doi.org/10.4103/jmu.jmu_12_23; Alvear-Vasquez F., Vidal-Espinoza R., Gomez-Campos R. et al. Body surface area is a predictor of maturity status in school children and adolescents. BMC Pediatr. 2023; 23 (1): 410. http://doi.org/10.1186/s12887-023-04222-8; Knudson M.M., Lim Jr R.C., Oakes D.D., Jeffrey Jr R.B. Nonoperative management of blunt liver injuries in adults: the need for continued surveillance. J. Trauma. 1990; 30 (12): 1494–1500. http://doi.org/10.1097/00005373-199012000-00009; Цап Н.А., Комарова С.Ю., Огарков И.П., Чукреев В.И. Диагностическое и тактическое значение экстренной и динамической ультрасонографии при абдоминальной травме у детей. Вестник Уральской медицинской академической науки. 2010; 31 (3): 55–59.; Апарцин К.А., Беляева О.А., Григорьев Е.Г., Ольхова Е.Б., Пикало И.А., Подкаменев В.В., Розинов В.М. Травма селезенки. В кн.: Абдоминальные травмы у детей / Под ред. В.В. Подкаменева, В.М. Розинова, Е.Г. Григорьева, Ю.А. Козлова. М.: ГЭОТАР-Медиа, 2019: 72–120.; Горелик А.Л., Карасева О.В. Тактика хирурга при травме селезенки у детей. Opinion Leader. 2019; 20 (2): 52–57.; Baqué P., Iannelli A., Dausse F. et al. A new method to approach exact hemoperitoneum volume in a splenic trauma model using ultrasonography. Surg. Radiol. Anat. 2005; 27 (3): 249–253. http://doi.org/10.1007/s00276-004-0307-2; https://medvis.vidar.ru/jour/article/view/1492
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9Academic Journal
Source: Azerbaijan Medical Journal. :110-115
Subject Terms: потоки мочи из мочеточников, ультразвуковая диагностика, sidik axarından sidik axını, ultrasəs diaqnostikası, ultrasound diagnostics, dopplerography, допплерография, dopleroqrafiya, ureteral jet
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10Academic Journal
Source: Azerbaijan Medical Journal. :42-47
Subject Terms: абдоминальные органы, radiological diagnostics, ультразвуковая диагностика, ultrasound diagnostics, лучевая диагностика, abdominal orqanlar, abdominal organs, şüa diaqnostikası, combat trauma, боевая травма, ultrasəs müayinəsi, hərbi travma, 3. Good health
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11Academic Journal
Source: Наука и здравоохранение. :16-25
Subject Terms: 2. Zero hunger, ультразвуковая диагностика, ultrasound diagnostics, ультрадыбыстық диагностика, deep vein thrombosis (DVT), COVID-19, тромбоз глубоких вен (ТГВ), thromboembolism, терең вена тромбозы (ТВТ), тромбоэмболия, 3. Good health
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12Academic Journal
Authors: Rudenko, D.I., Pozdnyakov, A.V., Suslov, V.M.
Source: INTERNATIONAL NEUROLOGICAL JOURNAL; № 2.88 (2017); 84-92
МЕЖДУНАРОДНЫЙ НЕВРОЛОГИЧЕСКИЙ ЖУРНАЛ; № 2.88 (2017); 84-92
МІЖНАРОДНИЙ НЕВРОЛОГІЧНИЙ ЖУРНАЛ; № 2.88 (2017); 84-92Subject Terms: 03 medical and health sciences, 0302 clinical medicine, Duchenne muscular dystrophy, skeletal muscle, magnetic resonance spectroscopy, magnetic resonance imaging, computer tomography, ultrasound diagnostics, biomarkers, мышечная дистрофия Дюшенна, скелетные мышцы, магнитно-резонансная спектроскопия, магнитно-резонансная томография, компьютерная томография, ультразвуковая диагностика, биомаркеры, 16. Peace & justice, м'язова дистрофія Дюшенна, скелетні м'язи, магнітно-резонансна спектроскопія, магнітно-резонансна томографія, комп'ютерна томографія, ультразвукова діагностика, біомаркери
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13Academic Journal
Authors: Oparin, O.A., Korniienko, D.O.
Source: Zdorovʹe Rebenka, Vol 10, Iss 2.1.62.1, Pp 81-84 (2015)
CHILD`S HEALTH; № 2.1.62.1 (2015); 81-84
Здоровье ребенка-Zdorovʹe rebenka; № 2.1.62.1 (2015); 81-84
Здоров'я дитини-Zdorovʹe rebenka; № 2.1.62.1 (2015); 81-84Subject Terms: 2. Zero hunger, obesity, гастроэзофагеальная рефлюксная болезнь, ожирение, моторно-секреторные нарушения, ультразвуковая диагностика, gastroesophageal reflux disease, motor and secretory disorders, ultrasound diagnosis, Pediatrics, RJ1-570, 3. Good health, гастроезофагеальна рефлюксна хвороба, ожиріння, моторно-секреторні порушення, ультразвукова діагностика
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14Academic Journal
Source: Web of Semantics : Journal of Interdisciplinary Science; Vol. 2 No. 3 (2024): Web of Semantics : Journal of Interdisciplinary Science; 142-146 ; 2960-9550
Subject Terms: ультразвуковая диагностика, подкожно-жировая клетчатка, сердечно-сосудистые заболевания, метаболический синдром
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15Academic Journal
Authors: D. N. Martsinkevich, P. S. Prilutskiy, A. M. Dzyadzko, T. A. Sevruk, S. A. Tochilo, Д. Н. Марцинкевич, П. С. Прилуцкий, А. М. Дзядзько, Т. А. Севрук, С. А. Точило
Source: Transplantologiya. The Russian Journal of Transplantation; Том 16, № 2 (2024); 186-196 ; Трансплантология; Том 16, № 2 (2024); 186-196 ; 2542-0909 ; 2074-0506
Subject Terms: внесосудистая легочная жидкость, diagnostic ultrasound, extravascular lung water, ультразвуковая диагностика
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Relation: https://www.jtransplantologiya.ru/jour/article/view/885/863; https://www.jtransplantologiya.ru/jour/article/view/885/874; Martin GS, Eaton S, Mealer M, Moss M. Extravascular lung water in patients with severe sepsis: a prospective cohort study. Crit Care. 2005;9(2):R74–82. PMID: 15774053 https://doi.org/10.1186/cc3025; Ashbaugh DG, Bigelow DB, Petty TL, Levine BE. Acute respiratory distress in adults. Lancet. 1967;2(7511):319–23. PMID: 4143721 https://doi.org/10.1016/s0140-6736(67)90168-7; Ray P, Birolleau S, Lefort Y, Becquemin MH, Beigelman C, Isnard R, et al. Acute respiratory failure in the elderly: etiology, emergency diagnosis and prognosis. Crit Care. 2006;10(3):82. PMID: 16723034 https://doi.org/10.1186/cc4926; Phillips CR, Chesnutt MS, Smith SM. Extravascular lung water in sepsisassociated acute respiratory distress syndrome: indexing with predicted body weight improves correlation with severity of illness and survival. Crit Care Med. 2008;36(1):69–73. PMID: 18090369 https://doi.org/10.1097/01.CCM.0000295314.01232.BE; Ware LB, Matthay MA. Clinical practice. Acute pulmonary edema. Engl J Med. 2005;353(26):2788–96. PMID: 16382065 https://doi.org/10.1056/NEJMcp052699; Litton E, Morgan M. The PiCCO monitor: a review. Anaesth Intensive Care. 2012;40(3):393–409. PMID: 22577904 https://doi.org/10.1177/0310057X1204000304; Lichtenstein DA. BLUE-protocol and FALLS-protocol: two applications of lung ultrasound in the critically ill. Chest. 2015;147(6):1659–1670. PMID: 26033127 https://doi.org/10.1378/chest.14-1313; Singh Y, Tissot C, Fraga MV, Yousef N, Cortes RG, Lopez J, et al. International evidence-based guidelines on point of care ultrasound (POCUS) for critically ill neonates and childrenissued by the POCUS Working Group of the European Society of Paediatric and Neonatal Intensive Care (ESPNIC). Crit Care. 2020;24(1):65. PMID: 32093763 https://doi.org/10.1186/s13054-020-2787-9; Mayo PH, Copetti R, Feller-Kopman D, Mathis G, Maury E, Mongodi S, et al. Thoracic ultrasonography: a narrative review. Intensive Care Med. 2019;45(9):1200–1211. PMID: 31418060 https://doi.org/10.1007/s00134-01905725-8; Ultrasound guidelines: emergency, point-of-care and clinical ultrasound guidelines in medicine. Ann Emerg Med. 2017;69(5):e27–e54. PMID: 28442101 https://doi.org/10.1016/j.annemergmed.2016.08.457; Lichtenstein DA, Meziere GA. Relevance of lung ultrasound in the diagnosis of acute respiratory failure: the BLUE protocol. Chest. 2008;134(1):117–25. PMID: 18403664 https://doi.org/10.1378/chest.07-2800; Pirompanich P, Karakitsos D, Alharthy A, Gillman LM, Blaivas M, Buchanan BM, et al. Evaluating extravascular lung water in sepsis: three lung-ultrasound techniques compared against transpulmonary thermodilution. Indian J Crit Care Med. 2018;22(9):650– 655. PMID: 30294131 https://doi.org/10.4103/ijccm.IJCCM_256_18; Mayr U, Lukas M, Habenicht L, Wiessner J, Heilmaier M, Ulrich J, et al. B-lines scores derived from lung ultrasound provide accurate prediction of extravascular lung water index: an observational study in critically ill patients. J Intensive Care Med. 2022;37(1):21–31. PMID: 33148110 https://doi.org/10.1177/0885066620967655; Matthay MA, Arabi Y, Arroliga AC, Bernard G, Bersten AD, Brochard LJ, et al. A new global definition of acute respiratory distress syndrome. Am J Respir Crit Care Med. 2024;209(1):37–47. PMID: 37487152 https://doi.org/10.1164/rccm.202303-0558WS; Galstyan GM, Novikov VA, Troitskaya VV, Baryakh EA, Makhinya SA, Parovichnikova EN, et al. Lung ultrasonography for the diagnosis of pneumonia in pregnant women with blood system tumors. Ter Arkh. 2015;87(1):79–87. PMID: 25823274 https://doi.org/10.17116/terarkh2015871779-87; https://www.jtransplantologiya.ru/jour/article/view/885
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16Academic Journal
Authors: K. O. Semash, T. A. Dzhanbekov, T. Z. Gaybullaev, К. О. Сёмаш, Т. А. Джанбеков, Т. З. Гайбуллаев
Source: Transplantologiya. The Russian Journal of Transplantation; Том 16, № 2 (2024); 230-243 ; Трансплантология; Том 16, № 2 (2024); 230-243 ; 2542-0909 ; 2074-0506
Subject Terms: эндоваскулярная интервенция, vascular complications, splenic artery steal syndrome, doppler ultrasound, endovascular management, сосудистые осложнения, синдром обкрадывания, ультразвуковая диагностика
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Relation: https://www.jtransplantologiya.ru/jour/article/view/888/866; https://www.jtransplantologiya.ru/jour/article/view/888/876; Bastón Castiñeiras M, Benítez Linero I, Serrano Zarcero V, Fernández Castellano G, Suárez-Artacho G, López Romero JL. Hepatic artery thrombosis after orthotopic liver transplant: experience in the last 10 years. Transplant Proc. 2022;54(1):51–53. PMID: 34953596 https://doi.org/10.1016/j.transproceed.2021.11.006; Obed M, Othman MI, Siyam M, Hammoudi S, Jarrad A, Bashir A, et al. Early hepatic artery thrombosis after living donor liver transplant: a 13-year singlecenter experience in Jordan. Exp Clin Transplant. 2021;19(8):826 831. PMID: 33952180 https://doi.org/10.6002/ect.2020.0565; Cizman Z, Saad W. Transplant hepatic artery complications. Tech Vasc Interv Radiol. 2023;26(4):100923. PMID: 38123292 https://doi.org/10.1016/j.tvir.2023.100923; Сёмаш К.О., Джанбеков Т.А., Акбаров М.М. Сосудистые осложнения после трансплантации печени – современные методы диагностики и лечения. Обзор мировой литературы. Вестник трансплантологии и искусственных органов. 2023;25(4):46–72. https://doi.org/10.15825/1995-1191-2023-4-46-72; Khati I, Jacquier A, Cadour F, Bartoli A, Graber M, Hardwigsen J, et al. Endovascular therapies for hepatic artery stenosis post liver transplantation. CVIR Endovasc. 2022;5(1):63. PMID: 36478229 https://doi.org/10.1186/s42155-022-00338-7; Bommena S, Fallon MB, Rangan P, Hirsch K, Mehta S. Risk factors and management of hepatic artery stenosis post liver transplantation. Dig Liver Dis. 2022;54(8):1052–1059. PMID: 35331635 https://doi.org/10.1016/j.dld.2022.02.012; Pinto LEV, Coelho GR, Coutinho MMS, Torres OJM, Leal PC, Vieira CB, Garcia JHP. Risk factors associated with hepatic artery thrombosis: analysis of 1050 liver transplants. Arq Bras Cir Dig. 2021;33(4):e1556. PMID: 33503116 https://doi.org/10.1590/0102-672020200004e1556; Park J, Kim SH, Park SJ. Hepatic artery thrombosis following living donor liver transplantation: a 14-year experience at a single center. J Hepatobiliary Pancreat Sci. 2020;27(8):548–554. PMID: 32463945 https://doi.org/10.1002/jhbp.771; Pinto S, Reddy SN, Horrow MM, Ortiz J. Splenic artery syndrome after orthotopic liver transplantation: a review. Int J Surg. 2014;12(11):1228–1234. PMID: 25311773 https://doi.org/10.1016/j.ijsu.2014.09.012; Naidu SG, Alzubaidi SJ, Patel IJ, Iwuchukwu C, Zurcher KS, Malik DG, et al. Interventional radiology management of adult liver transplant complications. Radiographics. 2022;42(6):1705–1723. PMID: 36190864 https://doi.org/10.1148/rg.220011; Jiang J, Ji Y, Liang Y, Ou Y, Zhang L. Splenic artery embolization for splenic artery steal syndrome after living donor liver transplantation: a case report. Transplant Proc. 2022;54(10):2772–2778. PMID: 36376105 https://doi.org/10.1016/j.transproceed.2022.09.020; Usai S, Colasanti M, Meniconi RL, Ferretti S, Guglielmo N, Mariano G, et al. Splenic artery steal syndrome after liver transplantation – prophylaxis or treatment? A case report and literature review. Ann Hepatobiliary Pancreat Surg. 2022;26(4):386–394. PMID: 35909087 https://doi.org/10.14701/ahbps.22-004; DuBois B, Mobley D, Chick JFB, Srinivasa RN, Wilcox C, Weintraub J. Efficacy and safety of partial splenic embolization for hypersplenism in pre- and post-liver transplant patients: a 16-year comparative analysis. Clin Imaging. 2019;54:71–77. PMID: 30553121 https://doi.org/10.1016/j.clinimag.2018.11.012; Song JY, Shi BY, Zhu ZD, Zheng DH, Li G, Feng LK, et al. New strategies for prevention and treatment of splenic artery steal syndrome after liver transplantation. World J Gastroenterol. 2014;20(41):15367–15373. PMID: 25386086 https://doi.org/10.3748/wjg.v20.i41.15367; Wojcicki M, Pakosz-Golanowska M, Lubikowski J, Post M, Jarosz K, Milkiewicz P. Direct pressure measurement in the hepatic artery during liver transplantation: can it prevent the "steal" syndrome? Clin Transplant. 2012;26(2):223228. PMID: 21554400 https://doi.org/10.1111/j.1399-0012.2011.01478.x; Mogl MT, Nüssler NC, Presser SJ, Podrabsky P, Denecke T, Grieser C, et al. Evolving experience with prevention and treatment of splenic artery syndrome after orthotopic liver transplantation. Transpl Int. 2010;23(8):831–841. PMID: 20180930 https://doi.org/10.1111/j.1432-2277.2010.01062.x; Nüssler NC, Settmacher U, Haase R, Stange B, Heise M, Neuhaus P. Diagnosis and treatment of arterial steal syndromes in liver transplant recipients. Liver Transpl. 2003;9(6):596–602. PMID: 12783401 https://doi.org/10.1053/jlts.2003.50080; Cho-Lam Wong T, Fung JYY, Cui TYS, Sin SL, Ma KW, She BWH, et al. The risk of going small lowering GRWR and overcoming small-for-size syndrome in adult living donor liver transplantation. Ann Surg. 2021;274(6):e1260– e1268. PMID: 32209906 https://doi.org/10.1097/sla.0000000000003824; Domingues L, Diogo D, Donato P, da Silva FP, Martins R, Oliveira P, et al. Splenic artery syndrome after liver transplantation – predictive factors: experience of a center. Rev Port Cir. 2021;(50):43–49. https://doi.org/10.34635/rpc.896; Gautier S, Monakhov A, Tsiroulnikova O, Mironkov B, Voskanov M, Dzhanbekov T, et al. Time is of the essence: A single-center experience of hepatic arterial supply impairment management in pediatric liver transplant recipients. Pediatr Transplant. 2021;25(3):e13934. PMID: 33314615 https://doi.org/10.1111/petr.13934; Raschke RA, Reilly BM, Guidry JR, Fontana JR, Srinivas S. The weightbased heparin dosing nomogram compared with a “standard care” nomogram: a randomized controlled trial. Ann Intern Med. 1993;119(9):874–881. PMID: 8214998 https://doi.org/10.7326/00034819-119-9-199311010-00002; Готье С.В., Восканов М.А., Монахов А.Р., Сёмаш К.О. Роль эндоваскулярных и эндобилиарных методов в лечении осложнений после трансплантации печени. Вестник трансплантологии и искусственных органов. 2020;22(4):140–148. https://doi.org/10.15825/1995-1191-2020-4-140-148; Kasahara M, Sakamoto S, Fukuda A. Pediatric living-donor liver transplantation. Semin Pediatr Surg. 2017;26(4):224– 232. PMID: 28964478 https://doi.org/10.1053/j.sempedsurg.2017.07.008; Matsuda H, Yagi T, Sadamori H, Matsukawa H, Shinoura S, Murata H, et al. Complications of arterial reconstruction in living donor liver transplantation: a single-center experience. Surg Today. 2006;36(3):245–251. PMID: 16493534 https://doi.org/10.1007/s00595-0053131-3; Ma L, Lu Q, Luo Y. Vascular complications after adult living donor liver transplantation: evaluation with ultrasonography. World J Gastroenterol. 2016;22(4):1617–1626. PMID: 26819527 https://doi.org/10.3748/wjg.v22.i4.1617; Steinbrück K, Enne M, Fernandes R, Martinho JM, Balbi E, Agoglia L, et al. Vascular complications after living donor liver transplantation: a Brazilian, singlecenter experience. Transplant Proc. 2011;43(1):196–198. PMID: 21335187 https://doi.org/10.1016/j.transproceed.2010.12.007; Igus B, Boyvat F, Ozen O, Ayvazoglu Soy EH, Karakaya E, Haberal M. Role of interventional radiology in the management of early vascular complications after liver transplant. Exp Clin Transplant. 2022;20(12):1085–1093. PMID: 36718007 https://doi.org/10.6002/ect.2022.0244; Bulman JC, Weinstein JL, Moussa M, Ahmed M. Transsplenic arterial embolization for splenic artery steal following liver transplant. J Vasc Interv Radiol. 2021;32(3):474–475. PMID: 33640082 https://doi.org/10.1016/j.jvir.2020.11.013; Li W, Gao N, Pan YP, Ren XY. Diagnostic value of color doppler ultrasound and contrast-enhanced ultrasound in the artery steal syndrome after orthotopic liver transplantation. J Multidiscip Healthc. 2022;15:2563–2569. PMID: 36388625 https://doi.org/10.2147/JMDH.S386820; Monakhov A, Mironkov B, Tsiroulnikova O, Voskanov M, Dzhanbekov T, Semash K, et al. Interventional Radiology in Complication Management after Pediatric Liver Transplantation. Transplantation. 2018;102(S7). https://doi.org/10.1097/01.tp.0000542777.01469.8e; https://www.jtransplantologiya.ru/jour/article/view/888
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17Academic Journal
Authors: S. A. Polkovnikova, V. D. Zavadovskaya, A. K. Traudt, V. A. Fokin, A. V. Karavaev, M. V. Titov, С. А. Полковникова, В. Д. Завадовская, А. К. Траудт, В. А. Фокин, А. В. Караваев, М. В. Титов
Source: Diagnostic radiology and radiotherapy; Том 14, № 4 (2023); 45-51 ; Лучевая диагностика и терапия; Том 14, № 4 (2023); 45-51 ; 2079-5343
Subject Terms: ультразвуковая диагностика остеомиелита, metaepiphyseal osteomyelitis, ultrasound diagnosis of osteomyelitis, метаэпифизарный остеомиелит
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Relation: https://radiag.bmoc-spb.ru/jour/article/view/938/621; Momodu I.I., Savaliya V. Osteomyelitis Campbell University School of O.M. 2022. PMID: 30335283, Bookshelf ID: NBK532250.; Zhan C., Zhou B., Du J., Chen L. Clinical analysis of 17 cases of neonatal osteomyelitis: A retrospective study // Medicine (Baltimore). 2019. Jan. Vol. 98, No. 2. Р. e14129. doi:10.1097/MD.0000000000014129. PMID: 30633229.; Emiley P.J., Kendall J.L., Bellows J.W. Acute hematogenous osteomyelitis of the rib identified on bedside ultrasound // Journal of Emergency Medicine. 2014. Vol. 48, No. 1. Р. 15–17.; Paliwal A.K., Sahdev R., Deshwal A., Ram B. Role of ultrasound in the diagnosis of paediatric acute osteomyelitis // J. Ultrason. 2021. Vol. 21. Р. 34–40. doi:10.15557/JoU.2021.0005.; Luís M.S., Cardosa F., Reis F., Fraga A.S., Victor M., Santos J.G., CalhauP.Rev Paul. Rib osteomielitis: a rare complication of varicella // Pediatr. 2019. Jul 4; Vol. 37, No. 4. Р. 510–515. doi:10.1590/1984–0462/;2019;37;4;00009.; Aparicio-Casares H., Puente-Rico M.H., Tomé-Nestal C., Mayordomo-Colunga J., Garrido-García E., Suárez-Castañón C.M. A pediatric case of Bartonella henselae and Epstein Barr virus disease with bone and hepatosplenic involvement // Biol. Med. Hosp Infant Mex. 2021. Vol. 78, No. 5. Р. 467–473. doi:10.24875/BMHIM.20000295. PMID: 34571518.; Carmody O., Cawley D., Dodds M., Connolly P. Acute haematogenous osteomyelitis in children // Med J. 2014. Oct; Vol. 107, No. 9. Р. 269–270. PMID: 25417382.
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18Academic Journal
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19Academic Journal
Source: Zdorovʹe Rebenka, Vol 12, Iss 2.1, Pp 267-272 (2017)
CHILD`S HEALTH; Том 12, № 2.1 (2017); 267-272
Здоровье ребенка-Zdorovʹe rebenka; Том 12, № 2.1 (2017); 267-272
Здоров'я дитини-Zdorovʹe rebenka; Том 12, № 2.1 (2017); 267-272Subject Terms: gastroesophageal reflux disease, disorders of the motor secretory function, ultrasound diagnosis, non-invasive diagnosis, risk factors, prediction of the disease course, гастроезофагеальна рефлюксна хвороба, моторно-секреторні порушення, ультразвукова діагностика, неінвазивна діагностика, фактори ризику, прогнозування перебігу, гастроэзофагеальная рефлюксная болезнь, моторно-секреторные нарушения, ультразвуковая диагностика, неинвазивная диагностика, факторы риска, прогнозирование течения, Pediatrics, RJ1-570, 3. Good health
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Access URL: https://doaj.org/article/9d6034fb8c124c608ce9366c7b5667af
http://childshealth.zaslavsky.com.ua/article/view/100991
http://childshealth.zaslavsky.com.ua/article/download/100991/98579
https://cyberleninka.ru/article/n/gastroesophageal-reflux-disease-in-pediatric-practice-current-topical-issues
https://cyberleninka.ru/article/n/gastroesophageal-reflux-disease-in-pediatric-practice-current-topical-issues/pdf
https://core.ac.uk/display/88121754
http://childshealth.zaslavsky.com.ua/article/view/100991 -
20Academic Journal
Source: Репродуктивное здоровье. Восточная Европа. :50-58
Subject Terms: ultrasound diagnostics, 05 social sciences, МРТ, sacrococcygeal teratomas, плод, крестцово-копчиковые тератомы, 3. Good health, кисты яичников, дифференциальная диагностика, 03 medical and health sciences, fetus, 0302 clinical medicine, 0508 media and communications, ультразвуковая диагностика, ovarian cysts, differential diagnosis, MRI