Anatomical mapping of the membranous septum in tricuspid and bicuspid aortic valves by cardiac computed tomography.

IF 1.5 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS
Laurence Campens, Xi Wang, Nicholas J Montarello, Jingjing He, Klaus Fuglsang Kofoed, Mao Chen, Lars Sondergaard, Ole De Backer
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引用次数: 0

Abstract

A higher incidence of conduction disturbances and permanent pacemaker implantation (PPI) has been observed after transcatheter aortic valve implantation (TAVI) in patients with bicuspid aortic valves (BAVs) as compared to those with tricuspid aortic valves (TAVs). This study aimed to provide an anatomical explanation for this observation, supported by an in-depth anatomical mapping of the membranous septum (MS) in a large cohort of BAVs and TAVs using cardiac computed tomography (CT). A total of 300 cardiac CT scans were analysed, revealing a significantly shorter sub-annular length of the MS in BAVs at all measuring points compared to TAVs (p < 0.001). In the current BAV cohort, the MS was found to be at its shortest at the RCC site, measuring less than 1 mm in depth. In addition, the MS was located more anteriorly towards the RCC in BAVs, where the transcatheter aortic valve tends to be implanted deeper, and we observed a trend towards a higher PPI rate in BAVs. Future studies should investigate whether anatomical mapping of the MS in patients undergoing TAVI could be a useful tool for decision-making and potentially mitigate the risk of conduction disturbances.

心脏计算机断层扫描对三尖瓣和二尖瓣主动脉瓣膜隔的解剖定位。
与三尖瓣主动脉瓣(TAVs)患者相比,经导管主动脉瓣植入术(TAVI)患者的传导障碍和永久性起搏器植入(PPI)的发生率更高。本研究旨在为这一观察提供解剖学上的解释,并利用心脏计算机断层扫描(CT)对大量bav和tav进行了深入的隔膜(MS)解剖定位。总共分析了300个心脏CT扫描,显示与tav相比,在所有测点上,bav的MS的亚环长度明显缩短(p
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来源期刊
CiteScore
4.00
自引率
9.50%
发文量
77
审稿时长
1 months
期刊介绍: The International Journal of Cardiovascular Imaging publishes technical and clinical communications (original articles, review articles and editorial comments) associated with cardiovascular diseases. The technical communications include the research, development and evaluation of novel imaging methods in the various imaging domains. These domains include magnetic resonance imaging, computed tomography, X-ray imaging, intravascular imaging, and applications in nuclear cardiology and echocardiography, and any combination of these techniques. Of particular interest are topics in medical image processing and image-guided interventions. Clinical applications of such imaging techniques include improved diagnostic approaches, treatment , prognosis and follow-up of cardiovascular patients. Topics include: multi-center or larger individual studies dealing with risk stratification and imaging utilization, applications for better characterization of cardiovascular diseases, and assessment of the efficacy of new drugs and interventional devices.
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