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Pavcnik D, Uchida B, Timmermans HA, Corless CL, O'Hara M, Toyota N, et al. Percutaneous bioprosthetic venous valve: a long-term study in sheep. J Vasc Surg 2002; 35: 598-602.10.1067/mva.2002.118825Search in Google Scholar

de Borst GJ, Teijink JA, Patterson M, Quijano TC, Moll FL. A percutaneous approach to deep venous valve insufficiency with a new self-expanding venous frame valve. J Endovasc Ther 2003; 10: 341-9.10.1177/152660280301000227Search in Google Scholar

Teebken OE, Puschmann C, Apert T, Haverich A, Mertsching H. Tissue-engineered bioprosthetic venous valve: a long-term study in sheep. Eur J Vasc Endovasc Surg 2003; 25: 305-12.10.1053/ejvs.2002.1873Search in Google Scholar

Pavcnik D, Uchida B, Timmermans HA, Keller FS, Rösch J. Square stent: a new self-expandable endoluminal device and its applications. Cardiovasc Intervent Radiol 2001; 24: 207-17.10.1007/s00270-001-0041-7Search in Google Scholar

Pavcnik D, Kaufman J, Uchida B, Correa L, Hiraki T, Kyu SC, et al. Second-generation percutaneous bioprosthetic valve: a short-term study in sheep. J Vasc Surg 2004; 40: 1223-7.10.1016/j.jvs.2004.08.027Search in Google Scholar

Jessup G, Lane RJ. Repair of incompetent venous valves: a new technique. J Vasc Surg 1988; 8: 569-7510.1016/0741-5214(88)90307-2Search in Google Scholar

Pavcnik D, Kaufman JA, Uchida BT, Case B, Correa LO, Goktay AY, et al. Significance of spatial orientation of percutaneously placed bioprosthetic venous valves in an ovine model. J Vasc Interv Radiol 2005: 16: 1511-6.10.1097/01.RVI.0000178251.74190.7DSearch in Google Scholar

Brountzos E, Pavcnik D, Uchida B, Corless C, Uchida BT, Nihsen ES, et al. Remodeling of suspended small intestinal submucosa venous valve: an experimental study in sheep to assess the host cells' origin. J Vasc Interv Radiol 2003; 14: 349-56.10.1097/01.RVI.0000058410.01661.62Search in Google Scholar

May N. The Anatomy of the Sheep. 3r ed. Queensland, Australia: University of Queensland, Press; 1970. p. 133-4.Search in Google Scholar

Gottlob R, May R. Venous valves. New York: Springer-Verlag Wien; 1986. p. 15-6.10.1007/978-3-7091-8827-9_3Search in Google Scholar

van Bemmelen, PS:. Evaluation of the patient with chronic venous insufficiency: old and emerging technologies. In Vascular Diseases. Surgical and Interventional Therapy, Churchill Livingstone Inc., New York 1994, 941-949.Search in Google Scholar

Strandness DE:. Applied Physiology of the Venous System. In Vascular Diseases. Surgical and Interventional Therapy, Churchill Livingstone Inc., New York 1994, 103-117.Search in Google Scholar

Voorhees WD 3rd, Ralston SH, Babbs CF. Regional blood flow during cardiopulmonary resuscitation with abdominal counter pulsation in dogs. Am J Emerg Med 1984; 2: 123-8.10.1016/S0735-6757(84)80003-0Search in Google Scholar

Pavcnik D, Yin Q, Uchida B, Park WK, Kim MD, Hoppe H, et al:. Percutaneous autologous venous valve transplantation: feasibility study in and ovine model. J Vasc Surg 2007; 46: 338-45.10.1016/j.jvs.2007.04.060Search in Google Scholar

Pavcnik D, Uchida B, Kaufman JA, Hinds M, Keller FS, Rösch J. Percutaneous management of chronic deep venous reflux: review of experimental work and early clinical experience with bioprosthetic valve. J Vasc Med 2008; 13: 75-84.10.1177/1358863X07083474Search in Google Scholar

Gomez-Jorge J, Venbrux AC, Magee C. Percutaneous deployment of a valved bovine jugular vein in the swine venous system: a potential treatment for venous insufficiency. J Vasc Interv Radiol 2000; 11: 931-6.10.1016/S1051-0443(07)61813-2Search in Google Scholar

Dalsing MC, Sawchuk AP, Lalka SG, Crikrit DF. An early experience with endovascular venous valve transplantation. J Vasc Surg 1996; 24: 903-5.10.1016/S0741-5214(96)70032-0Search in Google Scholar

eISSN:
1581-3207
ISSN:
1318-2099
Język:
Angielski
Częstotliwość wydawania:
4 razy w roku
Dziedziny czasopisma:
Medicine, Clinical Medicine, Radiology, Internal Medicine, Haematology, Oncology