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1.
Surg Neurol Int ; 14: 313, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-37810316

RESUMO

Background: The occipital artery (OA) is a branch of the external carotid artery. It gives rise to several cutaneous, muscular, and meningeal branches to supply different anatomical areas. The implication of OA in the neurosurgical field is well-established in the literature. Our aim in this study is to draw a complete picture of the anatomical variations and neurosurgical applications of the OA. Methods: A literature review was conducted in Google Scholar and PubMed to review the studies discussing OA, its anatomical variation, and neurosurgical applications. Results: We identified 29 articles that discuss the anatomical variations and neurosurgical applications of the OA. Certain variables are used to describe the surgical anatomy of OA. We also discussed certain applications of OA and its importance in neurosurgical bypass, embolization, and aneurysms. Conclusion: Comprehending the anatomy of the OA is crucial for neurosurgeons to safely and effectively perform procedures such as bypass and embolization. In addition, knowledge of the anatomical variations of the OA can help surgeons anticipate potential challenges and tailor their approach accordingly.

2.
Surg Neurol Int ; 13: 569, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-36600769

RESUMO

Background: Anterior communicating artery (Acom) aneurysm has an association with many types of intracranial lesions. However, its association with meningioma can be challenging, which is not well addressed in the literature. Herein, we described a literature review focused on the association between Acom aneurysm and meningioma, explicitly highlighting the spatial presence between these two pathologies. We analyzed the literature according to that association with particular emphasis on location-based challenges. Furthermore, we present an illustrative case of surgically treating both lesions in one surgery utilizing the same approach. Methods: A Medline database search was conducted by the following combined formula: (Meningioma [Title/ Abstract]) AND (Aneurysm [Title/Abstract]) AND (((Anterior communicating artery [Title/Abstract]) OR (Acom [Title/Abstract])) OR Acomm [Title/Abstract]))). Additional resources were added after screening the references of the included papers. Results: Nine patients with coexistence of Acom aneurysm and meningioma were found in the literature. The coexistence of both pathologies was found in seven females and two males. The presence of an aneurysm was found to be solitary in 66.67% (n = 6/9). Furthermore, meningioma was found to be an isolated lesion in all included cases, and in 22.2% (n = 2/9), they were located ipsilaterally. The location of the meningioma to the aneurysm seems to be in proximity. Conclusion: Acom aneurysm can coexist with intracranial meningioma; this association can be spatially related intracranially. Such coexistence entails a variety of nuances and challenges that neurosurgeons encounter during the management of these complex lesions.

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