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  1. 1
    Academic Journal

    Source: Diagnostic radiology and radiotherapy; № 3 (2016); 33-39 ; Лучевая диагностика и терапия; № 3 (2016); 33-39 ; 2079-5343 ; 10.22328/2079-5343-2016-3

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    Relation: https://radiag.bmoc-spb.ru/jour/article/view/148/149; Martin-Ucar A. E., Delgado R. M. Indication for VATS sublobar resections in early lung cancer // J. Thorac Dis. - 2013.- Vol. 5.- P 194-199.; Bao F., Ye P., Yang Y., Wang L., Zhang C., Lv X., Hu J. Segmentectomy or lobectomy for early stage lung cancer: a meta-analysis // Eur. J. Cardiothorac Surg.- 2014.- Vol. 46, № 1.- P. 1-7.; Martin-Ucar A. E., Waller D. А., Atkins J. L. et al. The beneficial effects of specialist thoracic surgery on the resection rate for non-small-cell lung cancer // Lung Cancer.- 2004.- Vol. 46, № 2.- P. 227-232.; Riaz S. Р., Linklater K. М., Page R. et al. Recent trends in resection rates among non-small cell lung cancer patients in England // Thorax.- 2012.- Vol. 67, № 9.- P. 811-814.; Griffin J. Р., Eastridge C. E., Tolley E. А. et al. Wedge resection for non-small cell lung cancer in patients with pulmonary insufficiency: prospective ten-year survival // J. Thorac. Oncol.- 2006.- Vol. 1, № 9.- P. 960-964.; Lau K. К., Martin-Ucar A. E., Nakas A. et al. Lung cancer surgery in the breathless patient - the benefits of avoiding the gold standard // Eur. J. Cardiothorac Surg.- 2010.- Vol. 38, № 1.- P 6-13.; Schuchert M. J., Pettiford B. L., Pennathur A. et al. Anatomic segmentectomy for stage I non-small-cell lung cancer: comparison of video-assisted thoracic surgery versus open approach // J. Thorac Cardiovasc Surg.- 2009.- Vol. 138, № 6.- P. 1318-1325.; Jaklitsch M. Т., Burt B. М., Jett J. R. et al. Surgical resection of pulmonary metastases: Benefits, indications, preoperative evaluation and techniques // UpToDate.- 2015.; Oizumi H., Kanauchi N., Kato H. et al. Anatomic thoracoscopic pulmonary segmentectomy under 3-dimensional multidetector computed tomography simulation: a report of 52 consecutive cases // J. Thorac. Cardiovasc Surg.- 2011. Vol. 141, № 3.- P 678-682.; Gossot D., Zaimi R., Fournel L., Grigoroiu M., Brian E., Neveu C. Totally thoracoscopic pulmonary anatomic segmentectomies: technical considerations // J. Thorac Dis.- 2013.- Vol. 5.- P 200-206.; Yamada S., Suga A., Inoue Y. et al. Use of multi-detector row angiography for the arrangement of video-assisted modified segmental resection // Eur. J. Cardiothorac Surg.- 2009.- Vol. 36, № 4.- P 727-730.; Fukuhara K., Akashi A., Nakane S., Tomita E. Preoperative assessment of the pulmonary artery by three-dimensional computed tomography before video-assisted thoracic surgery lobectomy // Eur. J. Cardiothorac. Surg.- 2008.- Vol. 34, № 4.- FI 875-877.; Watanabe S., Arai K., Watanabe T., Koda W., Urayama H. Use of three-dimensional computed tomographic angiography of pulmonary vessels for lung resections // Ann. Thorac. Surg.- 2003.- Vol. 75, № 2.- P. 388-392.; Oizumi H., Kanauchi N., Kato H. et al. Anatomic thoracoscopic pulmonary segmentectomy under 3-dimensional multidetector computed tomography simulation: a report of 52 consecutive cases // J. Thorac. Cardiovasc. Surg.- 2011.- Vol. 141, № 3.- P 678-682.; Hagiwara M., Shimada Y., Kato Y. et al. High-quality 3-dimensional image simulation for pulmonary lobectomy and segmentectomy: results of preoperative assessment of pulmonary vessels and short-term surgical outcomes in consecutive patients undergoing video-assisted thoracic surgery // Eur. J. Cardiothorac. Surg.- 2014.- Vol. 46, № 6.- P. 120-126.

  2. 2
    Academic Journal

    Source: Medical Visualization; № 1 (2016); 100-105 ; Медицинская визуализация; № 1 (2016); 100-105 ; 2408-9516 ; 1607-0763

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    Relation: https://medvis.vidar.ru/jour/article/view/251/252; Злокачественные новообразования в России в 2014 году (заболеваемость и смертность); Под ред. Каприна А.Д., Старинского В.В., Петровой Г.В. М.: РИИС ФИАН, 2016. 249 с.; Злокачественные новообразования в России в 2013 году (заболеваемость и смертность); Под ред. Каприна А.Д., Старинского В.В., Петровой Г.В. М.: РИИС ФИАН, 2015; 12. 140 с.; Кеслер М.С. Современные методы ядерной медицины в комплексной диагностике рака молочной железы. Rus sian electronic journal of radiology. 2012; 2 (2): 12-19.; Spanu A., Sanna D., Chessa F. et al. The clinical impact of breast scintigraphy acquired with a breast specific gamma camera (BSGC) in the diagnosis of breast cancer: incremental value versus mammography. Int. J. Oncol. 2012; 41: 483-489.; Buscombe J., Hill J, Parbhoo S. et al. Scintimammography. A guide to good practice. Birmingham: Gibbs Associates Limited, 1998. 101 p.; Chen J. Using Tc-99m MIBI scintimammography to differen tiate nodular lesions in breast and detect axillary lymph node metastases from breast cancer. Chin. Med. J. 2003; 1 (16): 620-624.; Liberman M. Breast cancer diagnosis by scintiniammography: a metaanalysis and review of the literature. Breast. Cancer Res. Trat. 2003; 80: 115-126.; Талахадзе Н.Т. Клиническая оценка сцинтиграфии с 99mТс-технетрилом в диагностике метастатического поражения парастернальных лимфоузлов у больных раком молочной железы: Дис. … канд. мед. наук. М., 2004. 208 с.; Rhodes D.J., O’Сonnor M.K., Philips S.W. et al. Molecular breast imaging: a new technique using technetium scintimammography to detect small tumors of the breast. Mayo Clin. Proc. 2005; 80: 24-30.; Brem R.F., Petrovich I., Rapelyea J. et al. Breast-specific gamma camera imaging with 99m-Tcsestamibi and magnetic resonance imaging in the diagnosis of breast cancer: a comparative study. Breast J. 2007; 13: 465-469.; Hruska C.B., Weinmann A.L., O’Connor M.K. Proof of concept for low-dose molecular breast imaging with a dual-head CZT gamma camera. Evaluation in phantoms. Am. Ass. Phys. Med. 2012; 39 (6): 3466-3475.; Rhodes D.J., Hruska C.B. Phillips S.W. et al. Dedicated Dual Head Gamma Imaging for Breast Cancer Screening in Women with Mammographically Dense Breasts. Radiology. 2011; 258: 106-118.; Лукъянченко А.Б., Гурова Н.Ю. Рентгеновская компьютерная и магнитно-резонансная томография в диагностике и определении распространенности рака молочной железы. Радиология-практика. 2001; 3: 3-9.; Zasadny K.R., Tatsumi M., Wahl R.L. FDG metabolism and uptake versus blood flow in women with untreated primary breast cancer. Eur. Jur. Nuc. Med. And Molecular Imaging. 2003; 30 (2): 274-279.; Manni L., Rambaldi P., Procaccini E. et al. Scintimammography with Technetium-99m Tetraphosmin in the diagnosis of breast cancer and lymphnode metastases. Eur. J. Nucl. Med. 1996; 23 (8): 932-939.; Усов В.Ю., Ряннель Ю.Э., Михайлович Я.М. и др. Маммосцинтиграфия: основы, методики, клиническое применение. Медицинская радиология и радиационная безопасность. 1999; 44 (3): 72-82.; Vecchio S.D., Zannetti A., Salvatore B. et al. Functional imaging of multidrug resistance in breast cancer. Phys. Med. 2006; 21 (1): 24-27.; Тицкая А.А. Клиническое использование радионуклидных исследований в комплексной диагностике и оценке эффективности неоадъювантной химиотерапии рака молочной железы: Автореф. дис. … канд. мед. наук. Томск, 2009: 18-19.; https://medvis.vidar.ru/jour/article/view/251

  3. 3

    Source: Diagnostic radiology and radiotherapy ; Лучевая диагностика и терапия