Publication:
Comprehensive Evaluation of Serpentine Aneurysms: a Systematic Review and Meta-analysis with a Subanalysis for Treatment Approaches, Eine umfassende Evaluation von Serpentin-Aneurysmen: Eine systematische Übersicht und Meta-Analyse mit einer Subanalyse der therapeutischen Ansätze

dc.contributor.authorÇinar, Çelal
dc.contributor.authorElek, Alperen
dc.contributor.authorAllahverdiyev, Irshad
dc.contributor.authorOzcinar, Kenan Kerem
dc.contributor.authorYazici, Adem C.
dc.contributor.authorKusbeci, Mahmut
dc.contributor.authorOzturk, Egemen
dc.contributor.authorOran, Ismail
dc.contributor.institutionÇinar, Çelal, Department of Interventional Radiology, Ege University Medical School, Izmir, Turkey
dc.contributor.institutionElek, Alperen, Department of Interventional Radiology, Ege University Medical School, Izmir, Turkey
dc.contributor.institutionAllahverdiyev, Irshad, İstanbul Tıp Fakültesi, Istanbul, Turkey
dc.contributor.institutionOzcinar, Kenan Kerem, Faculty of Medicine, Bahçeşehir Üniversitesi, Istanbul, Turkey
dc.contributor.institutionYazici, Adem C., Faculty of Medicine, Bahçeşehir Üniversitesi, Istanbul, Turkey
dc.contributor.institutionKusbeci, Mahmut, Department of Interventional Radiology, Ege University Medical School, Izmir, Turkey
dc.contributor.institutionOzturk, Egemen, Department of Radiology, Uşak Training and Research Hospital, Usak, Turkey
dc.contributor.institutionOran, Ismail, Department of Interventional Radiology, Ege University Medical School, Izmir, Turkey
dc.date.accessioned2025-10-05T14:39:56Z
dc.date.issued2024
dc.description.abstractPurpose: This systematic review and meta-analysis aimed to systematically evaluate and enhance the understanding of optimal management strategies for serpentine aneurysms. Methods: A systematic search was conducted in Medline, Scopus, and Cochrane databases up to July 8, 2024, using relevant keywords. Studies included were case series, prospective or retrospective cohorts, or randomized controlled trials with data on clinical and angiographic outcomes of intracranial serpentine aneurysms. Data extraction and quality assessment were performed independently by two authors. Statistical analysis was conducted using R, with pooled estimates under a random-effects model. Results: Ten studies comprising 70 patients with 71 serpentine aneurysms were included. The majority (92.9%) were giant aneurysms. The overall rate of procedure-related complications was 33%, morbidity was 13%, and mortality was 13%. Good neurological outcomes were achieved in 76% of cases. For unruptured aneurysms, the complication rate was 34%, while no complications were observed in ruptured aneurysms. Comparative analysis between ruptured and unruptured aneurysms showed no significant differences in outcomes or complications. The technical success rate was 91%. Reconstructive methods showed a slightly higher rate of good neurological outcomes (77%) compared to deconstructive methods (70%), though complication rates were similar. Conclusion: Both reconstructive and deconstructive endovascular treatments for serpentine aneurysms are effective, with high rates of good neurological outcomes and acceptable complication rates. © 2024 Elsevier B.V., All rights reserved.
dc.identifier.doi10.1007/s00062-024-01460-w
dc.identifier.endpage760
dc.identifier.issn18691447
dc.identifier.issn18691439
dc.identifier.issue4
dc.identifier.pubmed39316117
dc.identifier.scopus2-s2.0-85204722910
dc.identifier.startpage749
dc.identifier.urihttps://doi.org/10.1007/s00062-024-01460-w
dc.identifier.urihttps://hdl.handle.net/20.500.14719/6842
dc.identifier.volume34
dc.language.isoen
dc.publisherSpringer Science and Business Media Deutschland GmbH
dc.relation.sourceClinical Neuroradiology
dc.subject.authorkeywordsClinical Outcome
dc.subject.authorkeywordsComplication
dc.subject.authorkeywordsDeconstructive Approach
dc.subject.authorkeywordsGiant Serpentine Aneurysm
dc.subject.authorkeywordsReconstructive Approach
dc.subject.authorkeywordsSerpentine Aneurysm
dc.subject.authorkeywordsSurgical Glue
dc.subject.authorkeywordsAdolescent
dc.subject.authorkeywordsAdult
dc.subject.authorkeywordsAged
dc.subject.authorkeywordsAneurysm
dc.subject.authorkeywordsAneurysm Clipping
dc.subject.authorkeywordsBrain Artery Aneurysm Rupture
dc.subject.authorkeywordsBypass Surgery
dc.subject.authorkeywordsChild
dc.subject.authorkeywordsComplication
dc.subject.authorkeywordsEndovascular Aneurysm Repair
dc.subject.authorkeywordsFemale
dc.subject.authorkeywordsHuman
dc.subject.authorkeywordsIntracranial Aneurysm
dc.subject.authorkeywordsMale
dc.subject.authorkeywordsMeta Analysis
dc.subject.authorkeywordsMorbidity
dc.subject.authorkeywordsMortality
dc.subject.authorkeywordsReview
dc.subject.authorkeywordsSerpentine Aneurysm
dc.subject.authorkeywordsSystematic Review
dc.subject.authorkeywordsThrombectomy
dc.subject.authorkeywordsUnruptured Intracranial Aneurysm
dc.subject.authorkeywordsAneurysm Rupture
dc.subject.authorkeywordsArtificial Embolization
dc.subject.authorkeywordsDiagnostic Imaging
dc.subject.authorkeywordsEndovascular Surgery
dc.subject.authorkeywordsPostoperative Complication
dc.subject.authorkeywordsProcedures
dc.subject.authorkeywordsSurgery
dc.subject.authorkeywordsTherapy
dc.subject.authorkeywordsTreatment Outcome
dc.subject.authorkeywordsAneurysm, Ruptured
dc.subject.authorkeywordsEmbolization, Therapeutic
dc.subject.authorkeywordsEndovascular Procedures
dc.subject.authorkeywordsHumans
dc.subject.authorkeywordsIntracranial Aneurysm
dc.subject.authorkeywordsPostoperative Complications
dc.subject.authorkeywordsTreatment Outcome
dc.subject.indexkeywordssurgical glue
dc.subject.indexkeywordsadolescent
dc.subject.indexkeywordsadult
dc.subject.indexkeywordsaged
dc.subject.indexkeywordsaneurysm
dc.subject.indexkeywordsaneurysm clipping
dc.subject.indexkeywordsbrain artery aneurysm rupture
dc.subject.indexkeywordsbypass surgery
dc.subject.indexkeywordschild
dc.subject.indexkeywordscomplication
dc.subject.indexkeywordsendovascular aneurysm repair
dc.subject.indexkeywordsfemale
dc.subject.indexkeywordshuman
dc.subject.indexkeywordsintracranial aneurysm
dc.subject.indexkeywordsmale
dc.subject.indexkeywordsmeta analysis
dc.subject.indexkeywordsmorbidity
dc.subject.indexkeywordsmortality
dc.subject.indexkeywordsReview
dc.subject.indexkeywordsserpentine aneurysm
dc.subject.indexkeywordssystematic review
dc.subject.indexkeywordsthrombectomy
dc.subject.indexkeywordsunruptured intracranial aneurysm
dc.subject.indexkeywordsaneurysm rupture
dc.subject.indexkeywordsartificial embolization
dc.subject.indexkeywordsdiagnostic imaging
dc.subject.indexkeywordsendovascular surgery
dc.subject.indexkeywordspostoperative complication
dc.subject.indexkeywordsprocedures
dc.subject.indexkeywordssurgery
dc.subject.indexkeywordstherapy
dc.subject.indexkeywordstreatment outcome
dc.subject.indexkeywordsAneurysm, Ruptured
dc.subject.indexkeywordsEmbolization, Therapeutic
dc.subject.indexkeywordsEndovascular Procedures
dc.subject.indexkeywordsHumans
dc.subject.indexkeywordsIntracranial Aneurysm
dc.subject.indexkeywordsPostoperative Complications
dc.subject.indexkeywordsTreatment Outcome
dc.titleComprehensive Evaluation of Serpentine Aneurysms: a Systematic Review and Meta-analysis with a Subanalysis for Treatment Approaches, Eine umfassende Evaluation von Serpentin-Aneurysmen: Eine systematische Übersicht und Meta-Analyse mit einer Subanalyse der therapeutischen Ansätze
dc.typeReview
dcterms.referencesKandemirli, Sedat Giray, Intracranial serpentine aneurysms: Spontaneous changes of angiographic filling pattern, American Journal of Neuroradiology, 39, 9, pp. 1662-1668, (2018), van Rooij, Willem Jan, Endovascular treatment of giant serpentine aneurysms, American Journal of Neuroradiology, 29, 7, pp. 1418-1419, (2008), Xu, Kan, Study and therapeutic progress on intracranial serpentine aneurysms, International Journal of Medical Sciences, 13, 6, pp. 432-439, (2016), Aletich, Victor A., Giant serpentine aneurysms: A review and presentation of five cases, American Journal of Neuroradiology, 16, 5, pp. 1061-1072, (1995), Tong, Xin, Flow diversion treatment for giant intracranial serpentine aneurysms, Frontiers in Aging Neuroscience, 14, (2022), Zhao, Bing, Endovascular coiling of wide-neck and wide-neck bifurcation aneurysms: A systematic review and meta-analysis, American Journal of Neuroradiology, 37, 9, pp. 1700-1705, (2016), Güresir, Erdem, Treatment of Partially Thrombosed Intracranial Aneurysms: Single-Center Series and Systematic Review, World Neurosurgery, 118, pp. e834-e841, (2018), Page, Matthew James, The PRISMA 2020 statement: An updated guideline for reporting systematic reviews, BMJ, 372, (2021), Anshun, Wang, Giant serpentine aneurysms: Multidisciplinary management: Report of four cases and review of the literature, Interventional Neuroradiology, 6, 1, pp. 41-51, (2000), Ciceri, Elisa F.M., Aneurysms of the posterior cerebral artery: Classification and endovascular treatment, American Journal of Neuroradiology, 22, 1, pp. 27-34, (2001)
dspace.entity.typePublication
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