Showing 1 - 20 results of 23 for search '"компрессионная эластография"', query time: 0.58s Refine Results
  1. 1
  2. 2
    Academic Journal

    Contributors: 1

    Source: Russian Journal of Pediatric Surgery, Anesthesia and Intensive Care; Vol 13, No 3 (2023); 373-384 ; Российский вестник детской хирургии, анестезиологии и реаниматологии; Vol 13, No 3 (2023); 373-384 ; 2587-6554 ; 2219-4061 ; 10.17816/psaic.20233

    File Description: application/pdf

  3. 3
  4. 4
    Academic Journal

    Source: Medical Visualization; № 2 (2019); 100-108 ; Медицинская визуализация; № 2 (2019); 100-108 ; 2408-9516 ; 1607-0763

    File Description: application/pdf

    Relation: https://medvis.vidar.ru/jour/article/view/776/553; Le J.D., Huang J., Marks L.S. Targeted prostate biopsy: value of multiparametric magnetic resonance imaging in detection of localized cancer. Asian J. Andrology. 2014; 16: 522–529. http://doi.org/ 10.4103/1008-682X.122864.; Puech P., Rouvière O., Renard-Penna R., Villers A., Devos P., Colombel M., Bitker M.-O., Leroy X., MègeLechevallier F., Comperat E., Ouzzane A., Lemaitre L. Prostate cancer diagnosis: Multiparametric MR-targeted biopsy with cognitive and transrectal US-MR fusion guidance versus systematic biopsy – prospective multicenter study. Radiology. 2013; 268 (2): 461–469. http://doi.org/ 10.1148/radiol.13121501.; Kaufmann S., Russo G.I., Bamberg F., Löwe L., Morgia G., Nikolaou K., Stenzl A., Kruck S., Bedke J. Prostate cancer detection in patients with prior negative biopsy undergoing cognitive , robotic or in bore MRI target biopsy. Wld J. Urol. 2018; 36: 761–768. http://doi.org/ 10.1007/s00345-018-2189-7.; Oderda M., Faletti R., Battisti G., Dalmasso E., Falcone M., Marra G., Palazzetti A., Zitella A., Bergamasco L., Gandini G., Gontero P. Prostate cancer detection rate with Koelis fusion biopsies versus cognitive biopsies: a comparative study. Urologia Internationalis. 2016; 97: 230–237. http://doi.org/ 10.1159/000445524.; Marks L., Young Sh., Natarajan Sh. MRI-ultrasound fusion for guidance of targeted prostate biopsy. Curr. Opin. Urol. 2013; 23(1): 43–50. http://doi.org/ 10.1097/MOU.0b013e32835ad3ee.; Cool D.W., Zhang X., Romagnoli C., Izawa J.I., Romano W.M., Fenster A. Evaluation of MRI-TRUS fusion versus cognitive registration accuracy for MRI-Targeted, TRUSguided prostate biopsy. Am. J. Roentgenol. 2015; 204: 83–91. http://doi.org/ 10.2214/AJR.14.12681.; Kam J., Yuminaga Y., Kim R., Aluwihare K., Macneil F., Ouyang R., Ruthven S., Louie-Johnsun M. Does magnetic resonance imagingeguided biopsy improve prostate cancer detection? A comparison of systematic, cognitive fusion and ultrasound fusion prostate biopsy. Prostate Int. 2018; 6: 88–93. http://doi.org/ 10.1016/j.prnil.2017.10.003.; Marra G., Ploussard G., Futterer J., Valerio M. Controversies in MR targeted biopsy: alone or combined, cognitive versus software-based fusion, transrectal versus transperineal approach? Wld J. Urol. 2019; 37: 277–287. http://doi.org/ 10.1007/s00345-018-02622-5.; Murphy I.G., NiMhurchu E., Gibney R.G., McMahon C.J. MRI-directed cognitive fusion-guided biopsy of the anterior prostate tumors. Diagn. Intervent. Radiol. 2017; 23: 87–93. http://doi.org/ 10.5152/dir.2016.15445.; Galosi A.B., Maselli G., Sbrollini G. Cognitive zonal fusion biopsy of the prostate: Original technique between target and saturation. Archivio Italiano di Urologia e Andrologia. 2016; 88 (4): 292–295. http://doi.org/ 10.4081/aiua.2016.4.292.; Barr R.G., Cosgrove D., Brock M., Cantisani V., Correas J.M., Postema A. W., Salomon G., Tsutsumi M., Xu H.-X., Dietrich C.F. WFUMB Guidelines and Recommendations on the Clinical Use of Ultrasound Elastography: Part 5. Prostate. Ultrasound Med. Biol. 2017; 43 (1): 27–48. http://doi.org/ 10.1016/j.ultrasmedbio.2016.06.020.; Junker D., Schäfer G., Kobel C., Kremser C., Bektic J., Jaschke W., Aigner F. Comparison of real-time elastography and multiparametric MRI for postate cancer detection: a whole-mount step-section analysis. Am. J. Roentgenol. 2014; 202 (3): 263–269. http://doi.org/ 10.2214/AJR.13.11061.; Fenton J.J., Weyrich M.S., Durbin S., Liu Y, Bang H, Melnikow J. Prostate-specific antigen-based screening for prostate cancer evidence report and systematic review for the US preventive services task force. JAMA. 2018; 319 (18): 1914–1931. http://doi.org/ 10.1001/jama.2018.3712.; https://medvis.vidar.ru/jour/article/view/776

  5. 5
  6. 6
    Academic Journal

    Source: Head and Neck Tumors (HNT); Том 5, № 3 (2015); 39-44 ; Опухоли головы и шеи; Том 5, № 3 (2015); 39-44 ; 2411-4634 ; 2222-1468 ; 10.17650/2222-1468-2015-5-3

    File Description: application/pdf

    Relation: https://ogsh.abvpress.ru/jour/article/view/170/177; Костромина Е.В., Берштейн Л.М., Васильев Д.А. и др. Сопоставление результатов эластографии с гормонально-метаболическим статусом больных при диагностике новообразований щитовидной железы. Вопросы онкологии 2013;59(1):78–82. [Kostromina Е.V., Berstein L.М., Vasiliev D.А. et al. Cоmparison of elastoscan results with the hormonal & metabolic status of patients at the diagnosis of growths of the thyroid gland. Voprosy onkologii = Problems in Oncology 2013;59(1):78–82. (In Russ.)].; Митьков В.В., Хуако С.А., Ампилогова Э.Р., Митькова М.Д. Оценка воспроизводимости результатов количественной ультразвуковой эластографии. Ультразвуковая и функциональная диагностика 2011;2:115–20. [Мit’kov V.V., Huako S.А., Аmpilogova E.R., Мit’kova М.D. Evaluation of the reproducibility of results of the quantitative ultrasonic elastography. Ultrazvukovaya i funktsionalnaya diagnostika = Ultrasound and Functional Diagnostics 2011;2:115–20. (In Russ.)].; Frey H. Realtime elastography. A new ultrasound procedure for the reconstruction of tissue elasticity. Radiologe 2003;43(10):850–5.; Ghajarzadeh M., Sodagari F., Shakiba M. Diagnostic accuracy of sonoelastography in detecting malignant thyroid nodules: a systematic review and meta-analysis. AJR Am J Roentgenol 2014;202(4):W379–89.; Sun J., Cai J., Wang X. Real-time ultrasound elastography for differentiation of benign and malignant thyroid nodules: a meta-analysis. J Ultrasound Med 2014;33(3):495–502.; Moon H.J., Sung J.M., Kim E.K. et al. Diagnostic performance of gray-scale US and elastography in solid thyroid nodules. Radiology 2012;262(3):1002–13.; Rivo-Vazquez Á., Rodriguez-Lorenzo Á., Rivo-Vázquez J.E. et al. The use of ultrasound elastography in the assessment of malignancy risk in thyroid nodules and multinodular goitres. Clin Endocrinol (Oxf) 2013;79(6):887–91.; 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):1145–50.; Razavi S.A., Hadduck T.A., Sadigh G., Dwamena B.A. Comparative effectiveness of elastographic and B-mode ultrasound criteria for diagnostic discrimination of thyroid nodules: a meta-analysis. AJR Am J Roentgenol 2013;200(6):1317–26.; Cosgrove D., Piscaglia F., Bamber J. et al. EFSUMB guidelines and recommendations on the clinical use of ultrasound elastography. Part 2: Clinical applications. Ultraschall Med 2013;34(3):238–53.; Васильев Д.А., Костромина Е.В., Раджабова З.А. и др. Пути улучшения диагностической значимости соноэластографии при дифференциальной диагностике узловых образований щитовидной железы. Клиническая и экспериментальная тиреоидология 2014;10(1):38–43. [Vasiliev D.А., Kostromina Е.V., Rajabova Z.А. et al. Ways of improvement of the diagnostic value of sonoelastography at the differential diagnostics of palpable abnormalities of the thyroid gland. Klinicheskaya i eksperimentalnaya tireoidologiya = Clinical and Еxperimental Тhyroidology 2014;10(1):38–43. (In Russ.)].; Hong Y., Liu X., Li Z. et al. Real-time ultrasound elastography in the differential diagnosis of benign and malignant thyroid nodules. J Ultrasound Med 2009;28(7):861–7.; Юнкеров В.И., Григорьев С.Г. Математико-статистическая обработка данных медицинских исследований. СПб.: ВМедА, 2002. [Yunkerov V.I., Grirgoriev S.G. Маthematic and statistic processing of the medical research data. Saint-Petersburg: VMedА, 2002. (In Russ.)].; Wang С.С., Friedman L., Kennedy G.C. et al. A large multicenter correlation study of thyroid nodule cytopathology and histopathology. Thyroid 2011;21(3):243–51.; McLeod D.S., Watters K.F., Carpenter A.D. et al. Thyrotropin and thyroid cancer diagnosis: a systematic review and doseresponse meta-analysis. J Clin Endocrinol Metab 2012;97(8):2682–92.; Mehrotra P., McQueen A., Kolla S. et al. Does elastography reduce the need for thyroid FNAs? Clin Endocrinol (Oxf) 2013;78(6):942–9.; Rezzónico J.N., Rezzónico M., Pusiol E. et al. Increased prevalence of insulin resistance in patients with differentiated thyroid carcinoma. Metab Syndr Relat Disord 2009;7(4):375–80.; Rinaldi S., Lise M., Clavel-Chapelon F. et al. Body size and risk of differentiated thyroid carcinomas: findings from the EPIC study. Int J Cancer 2012;131(6):E1004–14.; Chong Y., Shin J.H., Ko E.S., Han B.K. Ultrasonographic elastography of thyroid nodules: is adding strain ratio to colour mapping better? Clin Radiol 2013;68(12):1241–6.; Negro R., Valcavi R., Toulis K.A. Incidental thyroid cancer in toxic and nontoxic goiter: Is TSH associated with malignan Cy rate? Results of a meta-analysis. Endocr Pract 2013;19(2):212–8.; Russ G., Royer B., Bigorgne C. et al. Prospective evaluation of thyroid imaging reporting and data system on 4550 nodules with and without elastography. Eur J Endocrinol 2013;168(5):649–55.; https://ogsh.abvpress.ru/jour/article/view/170

  7. 7
    Academic Journal

    Source: Medical Visualization; № 5 (2015); 137-140 ; Медицинская визуализация; № 5 (2015); 137-140 ; 2408-9516 ; 1607-0763

    File Description: application/pdf

    Relation: https://medvis.vidar.ru/jour/article/view/237/238; Заболевания шейки матки: Руководство; Под ред. Ш.Х. Ганцева. М.: ГЭОТАР-Медиа, 2014. 160 с.; Давыдов М.И., Аксель Е.М. Статистика злокачественных новообразований в России и странах СНГ в 2012 г. М., 2014. 46 с.; Лучевая диагностика в гинекологии: Руководство для врачей; Под ред. Г.Е. Труфанова, В.О. Панова. СПб.: ЭЛБИ-СПб, 2008. 592 с.; Mayr N., Yuh W., Jajoura D. Ultra Early Predictive Assay for Treatment Failure Using Functional MRI and clinical Prognostic Parameters in Cervical Cancer. A.J.R. 2010; 116: 903-912.; Рубцова Н.А., Синицын В.Е. Современные методы луче вой диагностики в оценке распространённости рака эндометрия и шейки матки. Вестник рентгенологии и радиологии. 2012; 3: 55-61.; Тарачкова Е.В., Стрельцова О.Н., Базаева И.Я. и др. Возможности магнитно-резонансной томографии в диагностике рака шейки матки. ОЖРС. 2014; 3: 78-85.; Petsuksiri J., Jaishuen A., Pattaranutaporn P., Chansilpa Y. et al. Advanced imaging applications for locally advanced cervical cancer. Asian Pac. J. Cancer Prev. 2012; 13 (5): 713-718.; Буланов М.Н. Ультразвуковая гинекология: курс лекций: в двух частях. Ч. II: 2-е изд., перераб. и доп. М.: Видар-М, 2012. 456 c.; Alcazar J.L., Castillo G., Martinez-Monge R., Jurado M. Three-dimensional Static Ultrasound and 3D Power Doppler in Ginecologic Pelvic Tumors. Donald School J. Ultrasound Obstet. Gynecol. 2013; 7 (2): 187-199.; Зубарев A.B. Эластография - инновационый метод поиска рака различных локализаций. Поликлиника. 2009; 4: 32-37.; https://medvis.vidar.ru/jour/article/view/237

  8. 8
  9. 9
  10. 10
  11. 11
  12. 12
  13. 13
  14. 14
  15. 15
  16. 16
  17. 17
  18. 18
  19. 19
  20. 20