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Experimental Models of Vascular Occlusions for Evaluation of Thrombectomy Devices

机译:用于评估血栓切除术装置的血管闭塞实验模型

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摘要

Stroke attributed to a large vessel occlusion is a multi-factorial disease and it has to be understood that one model does not exactly reproduce all the facets of ischemic stroke in humans. In this paper, we review currently available vascular occlusion models used for the assessment of thrombectomy devices. Vascular occlusions are often created in animal models such as rats, mice, rabbits, canine, swine and sheep. Depending on the source of the occlusion, two subtypes of vascular occlusion, thrombotic and embolic, are simulated in the aforesaid animal models. Embolic occlusion may also be reproduced in-vitro by injecting a clot into the vascular replica. In-vitro models are capable of simulating precisely human cerebrovascular anatomy and hemodynamics. Quantitative measurements, such as size and number of disrupted clots produced during the procedure, can be obtained in the in-vitro studies. Due to the small vessel size, occlusions created in rodents are not suitable for evaluation of thrombectomy devices. It is not feasible to create a focal intracranial vascular occlusion in the anterior circulation of sheep and swine amenable to thrombectomy due to the rete mirabile. An alternative is thrombectomy device testing in non-human primates, the posterior circulation of the dog, and extracranial circulation of the pig. Although the role of stroke models is not to perfectly mimic a human stroke with all its characteristics, choosing an appropriate model enables us to answer the unsolved questions in an objective manner.
机译:归因于大血管闭塞的中风是一种多因素疾病,必须理解的是,一种模型并不能准确地再现人类缺血性中风的所有方面。在本文中,我们回顾了用于评估血栓切除术设备的当前可用的血管闭塞模型。血管阻塞经常在动物模型中产生,例如大鼠,小鼠,兔子,犬,猪和绵羊。根据阻塞的来源,在上述动物模型中模拟了血管阻塞的两种亚型,即血栓形成的和栓塞的。栓塞闭塞也可以通过将凝块注入血管复制物中进行体外复制。体外模型能够精确模拟人体的脑血管解剖结构和血液动力学。可以在体外研究中获得定量测量结果,例如在手术过程中产生的血凝块的大小和数量。由于血管尺寸小,啮齿动物中产生的阻塞不适合评估血栓切除设备。在绵羊和猪的前循环中,由于网状奇迹而难以进行局部血栓形成,因此在颅骨和猪的前循环中形成局灶性颅内血管闭塞是不可行的。另一种方法是在非人类灵长类动物,狗的后循环以及猪的颅外循环中进行血栓切除术测试。尽管中风模型的作用并不是完全模仿人类中风的所有特征,但是选择合适的模型可以使我们客观地回答未解决的问题。

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