医学
动脉瘤
急诊分诊台
放射科
无线电技术
病因学
医学物理学
病理
急诊医学
作者
Sebastian Sanchez,Andres Gudino-Vega,Katherine Guijarro-Falcon,Jacob M. Miller,Luis E Noboa,Edgar A. Samaniego
标识
DOI:10.1016/j.nic.2024.01.003
摘要
The evaluation of unruptured intracranial aneurysms requires a comprehensive and multifaceted approach. The comprehensive analysis of aneurysm wall enhancement through high-resolution MRI, in tandem with advanced processing techniques like finite element analysis, quantitative susceptibility mapping, and computational fluid dynamics, has begun to unveil insights into the intricate biology of aneurysms. This enhanced understanding of the etiology, progression, and eventual rupture of aneurysms holds the potential to be used as a tool to triage patients to intervention versus observation. Emerging tools such as radiomics and machine learning are poised to contribute significantly to this evolving landscape of diagnostic refinement.
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