A novel swine model of selective middle meningeal artery catheterization and embolization

医学 脑膜中动脉 栓塞 大脑中动脉 放射科 外科 心脏病学 缺血
作者
Maxim Mokin,Donald Pionessa,Carmon Koenigsknecht,Liza Gutierrez,Swetadri Vasan Setlur Nagesh,Karen M Meess Tuttle,Mike Spengler,Yousef Akkad,Kunal Vakharia,Maksim Shapiro,Matthew J. Gounis,Elad I. Levy,Adnan H. Siddiqui
出处
期刊:Journal of NeuroInterventional Surgery [BMJ]
卷期号:: jnis-021481
标识
DOI:10.1136/jnis-2024-021481
摘要

Background Middle meningeal artery (MMA) embolization is a promising intervention as a stand-alone or adjunct treatment to surgery in patients with chronic subdural hematomas. There are currently no large animal models for selective access and embolization of the MMA for preclinical evaluation of this endovascular modality. Our objective was to introduce a novel in vivo model of selective MMA embolization in swine. Methods Diagnostic cerebral angiography with selective microcatheter catheterization into the MMA was performed under general anesthesia in five swine. Anatomical variants in arterial meningeal supply were examined. In two animals, subsequent embolization of the MMA with a liquid embolic agent (Onyx-18) was performed, followed by brain tissue harvest and histological analysis. Results The MMA was consistently localized as a branch of the internal maxillary artery just distal to the origin of the ascending pharyngeal artery. Additional meningeal supply was observed from the external ophthalmic artery, although not present consistently. MMA embolization with Onyx was technically successful and feasible. Histological analysis showed Onyx material within the MMA lumen. Conclusions Microcatheter access into the MMA in swine with liquid embolic agent delivery represents a reproducible model of MMA embolization. Anatomical variations in the distribution of arterial supply to the meninges exist. This model has a potential application for comparing therapeutic effects of various embolic agents in a preclinical setting that closely resembles the MMA embolization procedure in humans.
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