参考文献/References:
[1] Kang SG, Lee DY, Maeda M, et al. Aortic dissection: percutaneous management with a separating stent-graft——preliminary results[J].Radiology, 2001, 220: 533 - 539.
[2] 李麟荪, 施海彬, 张石江, 等. 分体式覆膜支架治疗主动脉病变的初步报告[J]. 中华放射学杂志, 2005, 39: 917 - 920.
[3] Formichi M, Marois Y, Roby P, et al. Endovascular repair of thoracic aortic aneurysm in dogs: evaluation of a nitinol-polyester self-expanding stent-graft[J]. J Endovasc Ther, 2000, 7:47 - 67.
[4] Kajimoto M,Shimono T, Hirano K et al. Basic fibroblast growth factor slow release stent graft for endovascular aortic aneurysm repair: A canine model experiment[J]. J Vasc Surg, 2008, 48:1306 - 1314.
[5] Guidoin R,Douville Y, Basle MF, et al. Biocompatibility studies of the Anaconda stent-graft and observations of nitinol corrosion resistance[J]. J Endovasc Ther, 2004, 11: 385 - 403.
[6] Marty B, Leu AJ, Mucciolo A, et al. Biologic fixation of polyester-versus polyurethane-covered stents in a porcine model[J]. J Vasc Interv Radiol, 2002, 13: 601 - 607.
[7] Lambert A, Williams D, Budd J, et al. Experimental assessment of proximal stent-graft(Inter Vascular)fixation in human infrarenal aorta[J]. Eur J Vasc Endovasc Surg, 1999, 17: 60 - 65.
[8] Shin CK, Rodino W, Kirwin JD, et al. Histology and electron microscopy of explanted bifurcated endovascular aortic grafts: evidence of early incorporation and healing[J]. J Endovasc Surg, 1999, 6: 246 - 250.
[9] 李海伟, 徐 克, 杨 柯, 等. 可降解AZ31镁合金支架在兔腹主动脉的降解性能研究[J].介入放射学杂志, 2010, 19: 315 - 317.
[10] Weon YC, Kang SG, Chung JW, et al. Technical feasibility and biocompatibility of a newly designed separating stent-graft in the normal canine aorta[J]. AJR, 2006, 186: 1148 - 1154.