首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Biodegradable Magnesium Stent Treatment of Saccular Aneurysms in a Rat Model - Introduction of the Surgical Technique
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Biodegradable Magnesium Stent Treatment of Saccular Aneurysms in a Rat Model - Introduction of the Surgical Technique

机译:可生物降解的镁支架治疗大鼠模型中的囊状动脉瘤-手术技术介绍

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摘要

The steady progess in the armamentarium of techniques available for endovascular treatment of intracranial aneurysms requires affordable and reproducable experimental animal models to test novel embolization materials such as stents and flow diverters. The aim of the present project was to design a safe, fast, and standardized surgical technique for stent assisted embolization of saccular aneurysms in a rat animal model.Saccular aneurysms were created from an arterial graft from the descending aorta.The aneurysms were microsurgically transplanted through end-to-side anastomosis to the infrarenal abdominal aorta of a syngenic male Wistar rat weighing >500 g. Following aneurysm anastomosis, aneurysm embolization was performed using balloon expandable magnesium stents (2.5 mm x 6 mm). The stent system was retrograde introduced from the lower abdominal aorta using a modified Seldinger technique.Following a pilot series of 6 animals, a total of 67 rats were operated according to established standard operating procedures. Mean surgery time, mean anastomosis time, and mean suturing time of the artery puncture site were 167 ± 22 min, 26 ± 6 min and 11 ± 5 min, respectively. The mortality rate was 6% (n=4). The morbidity rate was 7.5% (n=5), and in-stent thrombosis was found in 4 cases (n=2 early, n=2 late in stent thrombosis).The results demonstrate the feasibility of standardized stent occlusion of saccular sidewall aneurysms in rats - with low rates of morbidity and mortality. This stent embolization procedure combines the opportunity to study novel concepts of stent or flow diverter based devices as well as the molecular aspects of healing.
机译:颅内动脉瘤血管内治疗可用技术的稳定发展需要可负担且可复制的实验动物模型,以测试新型栓塞材料,例如支架和分流器。本项目的目的是设计一种安全,快速,标准化的手术技术,用于在大鼠动物模型中对囊状动脉瘤进行支架辅助栓塞。囊状动脉瘤是由降主动脉的动脉移植物制成的,然后通过显微外科手术移植体重> 500 g的同基因雄性Wistar大鼠的肾下腹主动脉端到端吻合。动脉瘤吻合后,使用球囊扩张镁支架(2.5 mm x 6 mm)进行动脉瘤栓塞。使用改良的Seldinger技术从下腹主动脉逆行引入支架系统。在先行实验6只动物之后,按照既定的标准操作程序对67只大鼠进行了操作。动脉穿刺部位的平均手术时间,平均吻合时间和平均缝合时间分别为167±22分钟,26±6分钟和11±5分钟。死亡率为6%(n = 4)。发病率为7.5%(n = 5),在4例中发现支架内血栓形成(n = 2早期,n = 2晚期发生支架血栓)。结果证明了标准化的支架封闭囊状侧壁动脉瘤的可行性在大鼠中-发病率和死亡率低。该支架栓塞程序结合了研究基于支架或分流器的装置的新颖概念以及愈合的分子方面的机会。

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