首页> 外文期刊>Mathematical research letters: MRL >Comparison of the Biomechanical Properties of the Advanta V12/iCast and Viabahn Stent-Grafts as Bridging Devices in Fenestrated Endografts: An In Vitro Study
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Comparison of the Biomechanical Properties of the Advanta V12/iCast and Viabahn Stent-Grafts as Bridging Devices in Fenestrated Endografts: An In Vitro Study

机译:优点v12 / inast和Viabahn支架的生物力学特性与蕨类植物中桥接装置的桥接装置进行比较:体外研究

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Purpose: To compare experimentally the biomechanical properties of the Viabahn Balloon-Expandable Stent Graft (VBX) with the widely used Advanta V12/iCast in the role of bridging stent-grafts for fenestrated endovascular aortic repair. Materials and Methods: Test sheets made of polyester having 2 rows of 5 fenestrations in 6-mm and 8-mm diameters were used to simulate a commercially made fenestrated aortic endograft. In total, 40 stent-grafts measuring 6x39 mm and 8x39 mm (10 of each size for each stent-graft) were implanted in fenestration sheets immersed in a 37 degrees C water bath. After flaring, all stent-grafts were evaluated using microscopy and radiography. Biomechanical evaluation included pullout and the shear stress force testing; results are reported in Newtons (N) as the median (minimum-maximum). Results: After flaring, no damage or fracture to the stent-graft structures were detected. Pullout forces for the 6-mm stent-grafts were 27.1 N (20.0-28.9) for the VBX and 16.6 N (14.7-19.2) for the Advanta (p=0.008). Pullout forces for the 8-mm stent-grafts were 20.1 N (14.8-21.5) for the VBX and 15.8 N (12.4-17.5) for the Advanta (p=0.095). The shear stress forces necessary to dislocate the device at 150% stent diameter displacement was 12.5 N (VBX) vs 14.7 N (Advanta) for the 6-mm devices and 23.3 N (VBX) vs 20.2 N (Advanta) for the 8-mm stents (p>0.99 and p=0.222, respectively). Conclusion: In vitro tests simulating external pull and shear forces on bridging stent-grafts implanted in fenestrations showed that the VBX had resistance to dislocation equivalent to a well-known control device.
机译:目的:通过通过桥接支架移植的桥接血管内主动脉修复的角度,实验地进行Vigbahn气球可扩展支架移植(VBX)的生物力学特性。材料和方法:使用具有2排5个续度的聚酯制成的6mm和8mm直径的试验片用于模拟商业化的蕨类植物的主动脉内血疱移植物。总共,在浸入37℃水浴中浸入的更eneptration板中,将40个支架移植物测量6×39mm和8x39mm(每个支架移植物的每个尺寸的10个)。燃烧后,使用显微镜和射线照相评估所有支架移植物。生物力学评估包括拉出和剪切应力测试;结果是在纽泰(n)中报告为中位数(最小最大值)。结果:燃烧后,检测到支架侵袭结构的损伤或断裂。对于6毫米支架移植物的拉伸部队为VBX的27.1 n(20.0-28.9),适用于16.6 n(14.7-19.2),适合(p = 0.008)。对于8毫米支架移植物的拉伸力为VBX的20.1 n(14.8-21.5),适用于15.8 n(12.4-17.5),适用于Adsuma(P = 0.095)。将装置脱臼在150%支架直径位移中所需的剪切应力为12.5 n(VBX)与6mm器件的VS 14.7 n(Addada),以及8毫米的23.3 n(VBX)Vs 20.2 n(Addraina)支架(p> 0.99和p = 0.222)。结论:在植入中植入的桥接支架移植物上模拟外部拉伸和剪切力的体外试验表明,VBX对众所周知的控制装置具有相当于脱位的阻力。

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