Эндоваскулярные окклюзирующие устройства и технологии
https://doi.org/10.24183/2409-4080-2022-9-4-309-331
Аннотация
Ежегодно в России выполняется более 10 000 окклюзирующих эндоваскулярных операций. Операции с использованием окклюзирующих устройств проводят в основном в крупных стационарах, что связано в том числе с финансовыми ограничениями. В медицинской практике для окклюзии артерий и вен широко используются различные эмболизирующие материалы и устройства: спирали различной формы, частицы (кристаллы и сферы), жидкости и гели, механические окклюзирующие устройства. Необходимо отметить существенную роль отечественных ученых-новаторов в развитии эмболизационных и окклюзирующих технологий в медицине. Активное развитие высокотехнологичных разработок и производства эмболизирующих агентов обеспечивает надежное решение различных клинических задач при широком спектре патологических состояний. Если при эмболизации сосудов малого диаметра, не более 1–2 мм, спирали, клей и частицы позволяют успешно достичь окклюзии сосудов, то в случаях необходимости полной и быстрой окклюзии сосудов диаметром более 2–3 мм выбор окклюзирующих устройств не так велик, а эффективность используемых устройств далека от оптимальной.
Об авторах
З. А. КавтеладзеРоссия
Заза Александрович Кавтеладзе, д-р мед. наук, профессор, заведующий лабораторией, заведующий отделением
лаборатория экстренной сосудистой и рентгенэндоваскулярной хирургии
отделение сердечно-сосудистой патологии
Москва
П. М. Ермолаев
Россия
Павел Михайлович Ермолаев, канд. мед. наук, ст. науч. сотр., рентгенэндоваскулярный хирург
Москва
Список литературы
1. Rossaint R., Bouillon B., Cerny V., Coats T.J., Duranteau J., Fernandez-Mondejar E. et al. Management of bleeding following major trauma: an updated European guideline. Crit. Care. 2010; 14: R52. DOI: 10.1186/cc8943
2. Weir A., Kennedy P., Joyce S., Ryan D., Spence L., McEntee M. et al. Endovascular management of pelvic trauma. Ann. Transl. Med. 2021; 9 (14): 1196, p1–15. DOI: 10.21037/atm-20-4591
3. Miyayama S. Ultraselective conventional transarterial chemoembolization: When and how? Clin. Mol. Hepatol. 2019; 25 (4): 344–53. DOI: 10.3350/cmh.2019.0016
4. Contegiacomo А., Cina А., Di Stasi С., Barone М., Scrofani A.R., Barbieri Р. et al. Uterine myomas: Endovascular treatment. Semin. Ultrasound. CT MR. 2021; 42 (1): 13–24. DOI: 10.1053/j.sult.2020.07.002
5. Miller F.H., Lopes Vendrami C., Gabr A., Horowitz J.M., Kelahan L.C., Riaz A. et al. Evolution of radioembolization in treatment of hepatocellular carcinoma : A pictorial review. Radiographics. 2021; 41 (6): 1802–18. DOI: 10.1148/rg.2021210014
6. Sheth R.A., Patel M.S., Koottappillil B., Shah J.A., Oklu R., Mueller P. et al. Role of locoregional therapy and predictors for dropout in patients with hepatocellular carcinoma listed for liver transplantation. J. Vasc. Interv. Radiol. 2015; 26 (12): 1761–8; quiz 1768. DOI: 10.1016/j.jvir.2015.08.015
7. Lawton M.T., Rutledge W.C., Kim H., Stapf C., Whitehead K.J., Li D.Y. et al. Brain arteriovenous malformations. Nat. Rev. Dis. Primers. 2015; 1: 15008. DOI: 10.1038/nrdp.2015.8
8. Behravesh S., Yakes W., Gupta N., Naidu S., Chong B.W., Khademhosseini A. et al. Venous malformations: clinical diagnosis and treatment. Cardiovasc. Diagn. Ther. 2016; 6 (6): 557–69. DOI: 10.21037/cdt.2016.11.10
9. Rodriguez J.N., Hwang W.J., Horn J., Landsman T.L., Boyle A., Wierzbicki M.A. et al. Design and biocompatibility of endovascular aneurysm filling devices. J. Biomed. Mater. Res. A. 2015; 103 (4): 1577–94. DOI: 10.1002/jbm.a.35271
10. Kessel D., Ray C. (Eds). Transcatheter embolization and therapy, 1<sup>st</sup> ed. London, UK: Springer-Verlag; 2010.
11. Xia J., Li G., Liu Н., Feng-Fei Х., Gu Х. Flow-diverting device versus coil embolization for unruptured intracranial aneurysm: A meta-analysis. Medicine (Baltimore). 2021; 100 (24): e26351. DOI: 10.1097/MD.0000000000026351
12. Алекян Б.Г., Григорьян А.М., Стаферов А.В., Карапетян Н.Г. Рентгенэндоваскулярная диагностика и лечение заболеваний сердца и сосудов в Российской Федерации – 2019 год. Эндоваскулярная хирургия. 2020; 7 (2, Специальный выпуск): S5–230 (in Russ.). URL: https://rusneb.ru/catalog/000200_000018_RU_NLR_BIBL_A_012415723/?ysclid=lsmxm5vnzl192665349
13. Алекян Б.Г., Григорьян А.М., Стаферов А.В., Карапетян Н.Г. Рентгенэндоваскулярная диагностика и лечение заболеваний сердца и сосудов в Российской Федерации – 2020 год. Эндоваскулярная хирургия. 2021; 8 (Специальный выпуск): S5–S248. URL: https://buzaev.com/downloads/2020-endovascular-report-Russia.pdf
14. Castaneda-Zuniga W.R. (Ed.) Textbook of Interventional Radiology, 3<sup>rd</sup> Edn. Baltimore: Williams and Wilkins; 1997.
15. Vitek J.J., Smith M.J. The myth of the Brooks method of embolization: a brief history of the endovascular treatment of carotid – cavernous sinus fistula. J. Neurointerv. Surg. 2009; 1: 108–11. DOI: 10.1136/jnis.2009.000067
16. Payne M.M. Charles Theodore Dotter. The father of intervention. Tex. Heart Inst. J. 2001; 28 (1): 28–38.
17. Poursaid A., Jensen M.M., Huo E., Ghandehari H. Polymeric materials for embolic and chemoembolic applications. J. Controlled Release. 2016; 240: 414–33. DOI: 10.1016/j.jconrel.2016.02.033
18. Lubarsky M., Ray C.E., Funaki B. Embolization agents – which one should be used when? Part 1: Large-vessel embolization. Semin. Interv. Radiol. 2009; 26 (4): 352–7. DOI: 10.1055/s-0029-1242206
19. Avery R.K., Albadawi H., Akbari M., Zhang Y.S., Duggan M.J., Sahani D.V. et al. An injectable shear-thinning biomaterial for endovascular embolization. Sci. Transl. Med. 2016; 8 (365): 365ra156. DOI: 10.1126/scitranslmed.aah5533
20. Hu J., Albadawi H., Chong B.W., Deipolyi A.R., Sheth R.A., Khademhosseini A., Oklu R. Advances in biomaterials and technologies for vascular embolization. Advanced Materials. 2019; 1901071(1-52). DOI: 10.1002/adma.201901071
21. Parodi J.C., Palmaz J.C., Barone H.D. Transfemoral intraluminal graft implantation for abdominal aortic aneurysms. Ann. Vasc. Surg. 1991; 5 (6): 491–9. DOI: 10.1007/BF02015271
22. Kleinstreuer С., Li Z., Farber М.А. Fluid-structure interaction analyses of stented abdominal aortic aneurysms. Ann. Rev. Biom. Engineering. 2007; 9 (1): 169–204. DOI: 10.1146/annurev.bioeng.9.060906.151853
23. Demanget N., Duprey A., Badel P., Orgeas L., Avril S., Geindreau Ch. Finite element analysis of the mechanical performances of 8 marketed aortic stent-grafts. J. Endovasc. Ther. 2013; 20: 523–35. DOI: 10.1583/12-4063.1
24. Dolmatch B. The evolution of covered stents. Endovasc. Today. 2019 (Suppl.): 27–9. Available at: https://evtoday.com/articles/2019-oct-supplement/the-evolution-of-covered-stents
25. Hutchinson S.J. Aortic diseases: Clinical diagnostic imaging atlas. Philadelphia, PA: Saunders; Elsevier; 2009: 1–17.
26. Volodos N.L. Historical perspective: the first steps in endovascular aortic repair: how it all began. J. Endovasc. Ther. 2013; 20 (Suppl. 1): 13–23. DOI: 10.1583/1545-1550-20.sp1.I-3
27. Svetlikov A.V. Unknown pages in the history of vascular stent grafting J. Vasc. Surg. 2014; 59 (3): 865–8. DOI: 10.1016/j.jvs.2013.11.067
28. Criado F.J. Nicholay Volodos and the origins of endovascular grafts. J. Endovasc. Ther. 2012; 19 (4): 568–9. DOI: 10.1583/12-3972L.1
29. Kavteladze Z.A., Korshok A.P., Dundua D.P., Kartashov D.S., Babunashvili A.M., Drozdov S.A. Stenting of aortic aneurysms. Cardiovasc. Intervent. Radiol. 1996; 19 (Suppl. 2): S1–S144. DOI: 10.1007/BF02644167
30. Kavteladze Z.A., Ivanov V.A., Kavteladze Z.A., Mitroshin G.E., Batrashov V.A., Pinchuk O.V. et al. Aortic stent-graft. First clinical results. Cardiovasc. Intervent. Radiol. 1997; 21: 566.
31. Kavteladze Z.A., Doundoua D.P., Drozdov S.A., Kartashov D.S., Bylov K.V., Babunashvili A.M. Temporary ZA-stent: a clinical study. Cardiovasc. Intervent. Radiol. 2003; 26 (Suppl. 1): S1–168. CIRSE 2003, Abstr.: 91. DOI: 10.1007/s00270-003-9001-8
32. Kavteladze Z.A., Korshok A.P., Kartashov D.S., Drozdov S.A., Dundua D.P., Babunashvili A.M. Endovascular repair of abdominal aortic aneurysms and aneurysms of iliac arteries. Int. J. Intervent. Cardioangiol. 2003; 1: 45–52.
33. Kavteladze Z.A., Drozdov S.A., Bylov К.1., Kartashov D.S., Dundua D.P., Babunashvili A.M. et al. Endovascular treatment of thoracic aorta aneurysms. Int. J. Intervent. Cardioangiol. 2008; 14: 51.
34. Gianturco C., Anderson J.H., Wallace S. Mechanical devices for arterial occlusion. Am. J. Roentgenol. Radium. Ther. Nucl. Med. 1975; 124 (3): 428–35. DOI: 10.2214/ajr.124.3.428
35. Barth K.H., Strandberg J.D., Kaufman S.L., White R.I. Chronic vascular reactions to steel coil occlusion devices. Am. J. Roentgenol. 1978; 131 (3): 455–8. DOI: 10.2214/ajr.131.3.455
36. Liebig T., Henkes H., Fischer S., Weber W., Miloslavski E., Mariushi W. et al. Fibered electrolytically detachable platinum coils used for the endovascular treatment of intracranial aneurysms. Initial experiences and mid-term results in 474 aneurysms. Interv. Neuroradiol. 2004; 10 (1): 5–26. DOI: 10.1177/159101990401000101
37. White R.I. Jr., Pollak J.S. Controlled delivery of pushable fibered coils for large vessel embolotherapy. Vascular embolotherapy. Berlin, Germany: Springer; 2006: 35.
38. Fiorella D., Albuquerque F.C., McDougall C.G. Durability of aneurysm embolization with matrix detachable coils. Neurosurgery. 2006; 58 (1): 51–9; disc. 51–9. DOI: 10.1227/01.neu.0000194190.45595.9e
39. Abrahams J.M., Forman M.S., Grady M.S., Diamond S.L. Delivery of human vascular endothelial growth factor with platinum coils enhances wall thickening and coil impregnation in a rat aneurysm model. Am. J. Neuroradiol. 2001; 22 (7): 1410–7.
40. Reinges M.H.T., Krings T., Drexler A.Y., Ludolph A., Sellhaus B., Bovi M. et al. Bare, bioactive and hydrogel-coated coils for endovascular treatment of experimentally induced aneurysms. Long-term histological and scanning electron microscopy results. Interv. Neuroradiol. 2010; 16 (2): 139–50. DOI: 10.1177/159101991001600205
41. Zhang C., Chaudhary N., Gemmete J.J., Thompson B.G., Xi G.H., Pandey A.S. Reactive tissue proliferation and damage of elastic lamina caused by hydrogel coated coils in experimental rat aneurysms. J. Neurointerv. Surg. 2014; 6 (6): 480–6. DOI: 10.1136/neurintsurg-2013-010867
42. Lopez-Benitez R., Hallscheidt P., Kratochwil C. et al. Protective embolization of the gastroduodenal artery with a one-HydroCoil technique in radioembolization procedures. Cardiovasc. Intervent. Radiol. 2013; 36 (1): 105–10. DOI: 10.1007/s00270-012-0361-9
43. Metcalfe A., Desfaits A.C., Salazkin I., Yahia L., Sokolowski W.M., Raymond J. Cold hibernated elastic memory foams for endovascular interventions. Biomaterials. 2003; 24 (3): 491–7. DOI: 10.1016/s0142-9612(02)00362-9
44. Landsman T.L., Bush R.L., Glowczwski A., Horn J., Jessen S.L., Ungchusri E. et al. Design and verification of a shape memory polymer peripheral occlusion device. Behav. Biomed. Mater. 2016; 63: 195–206. DOI: 10.1016/j.jmbbm.2016.06.019
45. Horn J., Hwang W., Jessen S.L., Keller B.K., Miller M.W., Tuzun E. et al. Comparison of shape memory polymer foam versus bare metal coil treatments in an in vivo porcine sidewall aneurysm model. J. Biomed. Mater. Res. B. 2017; 105 (7): 1892–905. DOI: 10.1002/jbm.b.33725
46. Cherng J.Y., Hou T.Y., Shih M.F., Talsma H., Hennink W.E. Polyurethane-based drug delivery systems. Int. J. Pharm. 2013; 450 (1–2): 145–62. DOI: 10.1016/j.ijpharm.2013.04.063
47. Peynircioglu B., Erkus F., Cil B., Ciftci T., Durhan G., Balkanci F. Mesenteric angiography of patients with gastrointestinal tract hemorrhages: a single center study. Diagn. Interv. Radiol. 2011; 17 (4): 368–73. DOI: 10.4261/1305-3825.DIR.3963-10.1
48. Stampfl S., Bellemann N., Stampfl U., Radeleff B., López-Benitez R., Sommer C.-M. et al. Inflammation and recanalization of four different spherical embolization agents in the porcine kidney model. J. Vasc. Interv. Radiol. 2008; 19 (4): 577–86. DOI: 10.1016/j.jvir.2008.01.011
49. Pisco J.M., Pinheiro L.C., Bilhim T., Duarte M., Mendes J.R., Oliveira A.G. Prostatic arterial embolization to treat benign prostatic hyperplasia. J. Vasc. Interv. Radiol. 2011; 22 (1): 11–9. DOI: 10.1016/j.jvir.2010.09.030
50. Kos S., Wasan E., Weir G., Reb P., Cornell C., Ford J., Liu D.M. Elution characteristics of doxorubicinloaded microspheres differ by drug-loading method and microsphere size. J. Vasc. Interv. Radiol. 2011; 22 (3): 361–8. DOI: 10.1016/j.jvir.2010.11.032
51. Abada H.T., Golzarian J. Gelatine sponge particles: handling characteristics for endovascular use. Tech. Vasc. Interv. Radiol. 2007; 10 (4): 257–60. DOI: 10.1053/j.tvir.2008.03.002
52. Laurent A., Wassef M., Namur J., Martal J., Labarre D., Pelage J.P. Recanalization and particle exclusion after embolization of uterine arteries in sheep: a long-term study. Fertil. Steril. 2009; 91 (3): 884–92. DOI: 10.1016/j.fertnstert.2007.12.015
53. Onyx liquid embolic system. Available at: https://www.joeniekrofoundation.com/treatment/onyx-liquid-embolic-system/
54. Tapping C.R., Dixon S., Little M.W., Boardman P., Sharma R.A., Anthony S. Liquid embolization of the gastroduodenal artery before selective internal radiotherapy (SIRT). Clin. Radiol. 2012; 67 (8): 789–92. DOI: 10.1016/j.crad.2012.01.010
55. Muller-Wille R., Wohlgemuth W.A., Heiss P., Wiggermann P., Guntner O., Schreyer A.G. et al. Transarterial embolization of type II endoleaks after EVAR: the role of ethylene vinyl alcohol copolymer (Onyx). Cardiovasc. Intervent. Radiol. 2013; 36 (5): 1288–95. DOI: 10.1007/s00270-013-0567-5
56. Takasawa C., Seiji K., Matsunaga K., Matsuhashi T., Ohta M., Shida S. et al. Properties of N-butyl cyanoacrylate-iodized oil mixtures for arterial embolization: in vitro and in vivo experiments. J. Vasc. Interv. Radiol. 2012; 23 (9): 1215–21. e1211. DOI: 10.1016/j.jvir.2012.06.022
57. Chawla R.K., Madan A., Bhardwaj P.K., Chawla K. Bronchoscopic management of bronchopleural fistula with intrabronchial instillation of glue (N-butyl cyanoacrylate). Lung India. 2012; 29 (1): 11–4. DOI: 10.4103/0970-2113.92350
58. Porstmann W., Wierny L., Warnke H., Gerstberger G., Romanick P.A. Catheter closure of patent ductus arteriosus, 62 cases treated without thoracotomy. Radiol. Clin. North. Am. 1971; 9: 203.
59. Borges A.C., Gliech V., Baumann G. Thirty years after percutaneous closure of patent ductus arteriosus. Heart. 2003; 89 (6): 650. DOI: 10.1136/heart.89.6.650
60. Grifka R.G. Transcatheter closure of the patent ductus arteriosus. Catheter. Cardiovasc. Interv. 2004; 61 (Issue 4): 554–70. DOI: 10.1002/ccd.20018
61. Grifka R.G., Mullins Ch.E., Gianturco С., Nihill M.R., O’Laughlin M.P., Slack М.С. et al. New Gianturco-Grifka vascular occlusion device. Circulation. 1995; 91: 1840–6. DOI: 10.1161/01.CIR.91.6.1840
62. Алекян Б.Г., Пурсанов М.Г., Сандодзе Т.С. Закрытие больших аортолегочных коллатеральных артерий с помощью окклюдера. В кн.: Рентгенэндоваскулярная хирургия. Национальное руководство : в 4 тт. Т. 1. Врожденные пороки сердца / под ред. Б.. Алекяна. М.: Литтерра; 2017: 453–7.
63. Основоположник эндоваскулярной нейрохирургии Федор Андреевич Сербиненко (к 90-летию со дня рождения). Журнал «Вопросы нейрохирургии» имени Н.Н. Бурденко. 2018; 82 (4): 5–7.
64. Medtronic MVP-3Q microvascular plug system. Available at: https://www.medicalecart.com/products/medtronic-mvp-3q-micro-vascular-plug-system-peripheral-embolization-1-5-3-0mm-12mm-x-14-5mm-box-of-01.html
65. Wang W., Li H., Tam M.D., Zhou D., Wang D.X., Spain J. The amplatzer vascular plug : a review of the device and its clinical applications. Cardiovasc. Intervent. Radiol. 2012; 35 (4): 725–40. DOI: 10.1007/s00270-012-0387-z
66. Mangini M., Lagana D., Fontana F., Ianniello A., Nicotera P., Petullá M. et al. Use of Amplatzer vascular plug (AVP) in emergency embolisation: preliminary experience and review of literature. Emerg. Radiol. 2008; 15 (3): 153–60. DOI: 10.1007/s10140-007-0696-8
67. Libicher M., Pavlidis D., Bangard C., Gawenda M. Occlusion of the internal iliac artery prior EVAR: comparison of coils and plugs. Vasc. Endovasc. Surg. 2012; 46 (1): 34–9. DOI: 10.1177/1538574411427786
68. Powell S., Narlawar R., Odetoyinbo T., Littler P., Oweis D., Sharma A. et al. Early experience with the Amplatzer vascular plug II for occlusive purposes in arteriovenous hemodialysis access. Cardiovasc. Intervent. Radiol. 2010; 33 (1): 150–6. DOI: 10.1007/s00270-009-9755-8
69. Libicher M., Herbrik M., Stippel D., Poggenborg J., Bovenschulte H., Schwabe H. Portal vein embolization using the Amplatzer vascular plug II: preliminary results. Rofo. 2010; 182 (6): 501–6. DOI: 10.1055/s-0028-1110019
70. Pech M., Kraetsch A., Wieners G., Redlich U., Gaffke G., Ricke J. et al. Embolization of the gastroduodenal artery before selective internal radiotherapy: a prospectively randomized trial comparing platinum-fibered microcoils with the Amplatzer vascular plug II. Cardiovasc. Intervent. Radiol. 2009; 32 (3): 455–61. DOI: 10.1007/s00270-008-9498-y
71. Pieper C.C., Meyer C., Hauser S., Wilhelm K.E., Schild H.H. Transrenal ureteral occlusion using the Amplatzer vascular plug II: a new interventional treatment option for lower urinary tract fistulas. Cardiovasc. Intervent. Radiol. 2014; 37 (2): 451–7. DOI: 10.1007/s00270-013-0662-7
72. Sathanandam S., Justino H., Waller 3<sup>rd</sup> B.R., Gowda S.T., Radtke W., Qureshi A.M. The Medtronic Micro Vascular Plug™ for vascular embolization in children with congenital heart diseases. J. Interv. Cardiol. 2017; 30 (2): 177–84. DOI: 10.1111/joic.12369
73. Beaty N.B., Jindal G., Gandhi D. Micro Vascular Plug (MVP)-assisted vessel occlusion in neurovascular pathologies: technical results and initial clinical experience. J. Neurointervent. Surg. 2014; 0: 1–4. DOI: 10.1136/neurintsurg-2014-011306
74. Giurazza F., Corvino F., Cavagliá E., Cangiano G., Amodio F., De Magistris G. et al. Arterial embolizations with microvascular plug in extracranial and intracranial districts: technical results. Radiol. Med. 2018; 123 (3): 236–43. DOI: 10.1007/s11547-017-0831-x
75. Haddad R.N., Bonnet D., Malekzadeh-Milani S. Embolization of vascular abnormalities in children with congenital heart diseases using medtronic micro vascular plugs. Heart Vessels. 2022; 37 (7): 1271–82. DOI: 10.1007/s00380-021-02007-6
76. Boudjemline Y. Covidien micro vascular plug in congenital heart diseases and vascular anomalies: A new kid on the block for premature babies and older patients. Catheter. Cardiovasc. Interv. 2017; 89 (1): 114–9. DOI: 10.1002/ccd.26622
77. Giurazza F., Ierardi A.M., Contegiacomo A., Corvino F., Carrafiello G., Niola R. Embolization with MVP (Micro Vascular Plug®): experience on 104 patients in emergent and elective scenarios. CVIR Endovasc. 2021; 4 (1): 59. DOI: 10.1186/s42155-021-00246-2
78. Jardinet T., Bonne L., Oyen R., Maleux G. Initial experience with the microvascular plug in selective renal artery embolization. Vasc. Endovasc. Surg. 2020; 54 (3): 240–6. DOI: 10.1177/1538574419897500
79. Azur Vascular Plug & PG Pro. Brochure. Available at: https://www.terumois.com/content/dam/terumo-www/global-shared/terumo-tis/en-us/product-assets/azur-family/azur-vascular-plug/AZUR-Vascular-Plug-PG-Pro-Brochure.pdf
80. Emmerta M.Y., Venbruxc A., Rudakovd L., Cesarovicb N., Radvanye M.G., Gailloude P. et al. The endovascular occlusion system for safe and immediate peripheral vessel occlusion during vascular interventions. Interact. Cardiovasc. Thorac. Surg. 2013; 17: 882–5. DOI: 10.1093/icvts/ivt318
81. Moriarty H.K., Clements W., Koukounaras J., Goh G.S., Joseph T., Phan T. ArtVentive endoluminal occlusion system for proximal splenic artery embolization. Diagn Interv. Radiol. 2020; 26 (5): 488–91. DOI: 10.5152/dir.2020.19417
82. Pyra K., Woz'niak S., Drelich-Zbroja A., Wolsk I., Jargiełło T. Evaluation of effectiveness of embolization in pelvic congestion syndrome with the new vascular occlusion device (ArtVentive EOS): preliminary results. Cardiovasc. Intervent. Radiol. 2016; 39 (8): 1122–7. DOI: 10.1007/s00270-016-1380-8
83. Corvino F., Silvestre M., Cervo A., Giurazza F., Corvino A., Maglione F. Endovascular occlusion of pulmonary arteriovenous malformations with the ArtVentive Endoluminal Occlusion System. Diagn. Interv. Radiol. 2016; 22: 463–5. DOI: 10.5152/dir.2016.15620
84. Venbrux A., Gailloud Ph., Radvany M.G., Rudakov L., Emmert M.Y., Plass A. et al. Acute, subacute, and long-term evaluation of a novel endovascular occlusion system in a large animal model. Catheter. Cardiovasc. Interv. 2014; 85 (6): 1026–32. DOI: 10.1002/ccd.25748
85. Yamamoto K., Aramoto H., Asano R., Yoshida T., Yamada M., Takanashi S. Use of Zenith iliac plug to occlude an artificial graft during endovascular repair of an abdominal aortic aneurysm. Gazzetta Med. Ital. Arch. Sci. Med. 2012; 171 (3): 357–9.
86. Kedora J., Grimsley B., Pearl G. Endovascular treatment of an aberrant right subclavian artery aneurysm with use of the Zenith Iliac Plug. Baylor Univ. Med. Center Proceedings. 2009; 22 (2): 144–5. DOI: 10.1080/08998280.2009.11928496
87. Terumo’s Azur Vascular Plug and PG Pro microcatheter embolization system introduced in the United States. 14 July 2021. Available at: https://evtoday.com/news/terumos-azur-vascular-plug-and-pg-pro-microcatheter-embolization-system-introduced-in-the-united-states
88. Martin Ch., Sun C., Giardina J.D., Guzzetta P. Micro-plug technology and technique: My clinical experience with the AZUR Vascular Plug. Endovasc. Today. 2022; April. Available at: https://evtoday.com/articles/2022-apr/micro-plug-technology-and-technique-my-clinical-experience-with-the-azur-vascular-plug
89. Vascular embolization market: future forecast assessed on the basis of how the market is predicted to grow / Medtronic PLC, Cook Medical, Stryker Corporation. Available at: https://www.medgadget.com/2022/09/vascular-embolization-market-future-forecast-assessed-on-the-basis-of-how-the-market-is-predicted-to-grow-medtronic-plc-cook-medical-stryker-corporation.html
90. Zander T., Medina S., Montes G., Nun~ez-Atahualpa L., Valdes M., Maynar M. Endoluminal occlusion devices: technology update. Med. Devices: Evidence Res. 2014; 7: 425-36. DOI: 10.2147/MDER.S49540
91. Widlus D.M., Moeslein F.M., Richard H.M. Evaluation of the Amplatzer vascular plug for proximal splenic artery embolization. J. Vasc. Interv. Radiol. 2008; 19 (5): 652–6. DOI: 10.1016/j.jvir.2007.11.025
92. Ramakrishnan S. Vascular plugs – a key companion to interventionists – ‘Just Plug it’. Indian Heart J. 2015, 67: 399–405. DOI: 10.1016/j.ihj.2015.07.001
93. Maruhashi T., Nishimaki H., Ogawa Y., Chiba K., Kotoku A., Miyairi T. Preloading coil in plug technique for internal iliac artery embolization during endovascular abdominal aortic aneurysm repair. Cardiovasc. Intervent. Radiol. 2021; 44: 179–81. DOI: 10.1007/s00270-020-02653-9
94. Lopera J.E. The Amplatzer vascular plug: review of evolution and current applications. Semin. Intervent. Radiol. 2015; 32 (4): 356–69. DOI: 10.1055/s-0035-1564810
Рецензия
Для цитирования:
Кавтеладзе З.А., Ермолаев П.М. Эндоваскулярные окклюзирующие устройства и технологии. Эндоваскулярная хирургия. 2022;9(4):309-331. https://doi.org/10.24183/2409-4080-2022-9-4-309-331
For citation:
Kavteladze Z.A., Ermolaev P.M. Endovascular occlusion devicies and technologies. Title in english. 2022;9(4):309-331. (In Russ.) https://doi.org/10.24183/2409-4080-2022-9-4-309-331
