Department of Neurosurgery, Kantonsspital Aarau, Aarau, Switzerland.
Cerebrovascular Research Group, Department for BioMedical Research, University of Bern, Bern, Switzerland.
J Cereb Blood Flow Metab. 2020 May;40(5):922-938. doi: 10.1177/0271678X20908363. Epub 2020 Mar 3.
Animal models make an important contribution to our basic understanding of the pathobiology of human brain aneurysms, are indispensable in testing novel treatment approaches, and are essential for training interventional neuroradiologists and neurosurgeons. Researchers are confronted with a broad diversity of models and techniques in various species. This systematic review aims to summarize and categorize extracranial aneurysm models and their characteristics, discuss advantages and disadvantages, and suggest the best use of each model. We searched the electronical Medline/PubMed database between 1950 and 2020 to identify main models and their refinements and technical modifications for creation of extracranial aneurysms. Each study included was assessed for aneurysm-specific characteristics, technical details of aneurysm creation, and histological findings. Among more than 4000 titles and abstracts screened, 473 studies underwent full-text analysis. From those, 68 different techniques/models in five different species were identified, analyzed in detail, and then grouped into one of the five main groups of experimental models as sidewall, terminal, stump, bifurcation, or complex aneurysm models. This systematic review provides a compact guide for investigators in selecting the most appropriate model from a range of techniques to best suit their experimental goals, practical considerations, and laboratory environment.
动物模型为我们深入了解人类颅内动脉瘤的病理生物学做出了重要贡献,是测试新型治疗方法不可或缺的手段,也是培训介入神经放射学家和神经外科医生的关键。研究人员面临着来自各种物种的广泛多样的模型和技术。本系统综述旨在总结和分类颅外动脉瘤模型及其特点,讨论其优缺点,并为每种模型的最佳应用提供建议。我们检索了 1950 年至 2020 年期间的电子 Medline/PubMed 数据库,以确定主要模型及其对颅外动脉瘤形成的改进和技术修改。对纳入的每一项研究,我们评估了动脉瘤的特异性特征、动脉瘤形成的技术细节和组织学发现。在筛选出的 4000 多个标题和摘要中,有 473 项研究进行了全文分析。在这些研究中,我们确定了来自五个不同物种的 68 种不同技术/模型,对其进行了详细分析,然后将其分为五类主要实验模型之一,即侧壁型、末端型、残端型、分叉型或复杂型动脉瘤模型。本系统综述为研究人员提供了一个紧凑的指南,用于从一系列技术中选择最合适的模型,以最佳满足他们的实验目标、实际考虑因素和实验室环境。