Computer Aided Medical Procedures, Technische Universität München, Munich, Germany.
Computer Aided Medical Procedures, Technische Universität München, Munich, Germany; Whiting School of Engineering, Johns Hopkins University, Baltimore MD, US.
Med Image Anal. 2017 Jan;35:1-17. doi: 10.1016/j.media.2016.05.005. Epub 2016 May 25.
Registration of vascular structures is crucial for preoperative planning, intraoperative navigation, and follow-up assessment. Typical applications include, but are not limited to, Trans-catheter Aortic Valve Implantation and monitoring of tumor vasculature or aneurysm growth. In order to achieve the aforementioned goals, a large number of various registration algorithms has been developed. With this review paper we provide a comprehensive overview over the plethora of existing techniques with a particular focus on the suitable classification criteria such as the involved modalities of the employed optimization methods. However, we wish to go beyond a static literature review which is naturally doomed to be outdated after a certain period of time due to the research progress. We augment this review paper with an extendable and interactive database in order to obtain a living review whose currency goes beyond the one of a printed paper. All papers in this database are labeled with one or multiple tags according to 13 carefully defined categories. The classification of all entries can then be visualized as one or multiple trees which are presented via a web-based interactive app (http://livingreview.in.tum.de) allowing the user to choose a unique perspective for literature review. In addition, the user can search the underlying database for specific tags or publications related to vessel registration. Many applications of this framework are conceivable, including the use for getting a general overview on the topic or the utilization by physicians for deciding about the best-suited algorithm for a specific application.
血管结构的配准对于术前规划、术中导航和随访评估至关重要。典型的应用包括但不限于经导管主动脉瓣植入术和肿瘤血管或动脉瘤生长的监测。为了实现上述目标,已经开发了大量各种配准算法。在本文中,我们全面概述了现有的大量技术,特别关注合适的分类标准,例如所采用的优化方法涉及的模态。然而,我们希望超越静态文献综述,由于研究进展,这种综述在一定时间后自然会过时。我们通过可扩展和交互式数据库来增强这篇综述文章,以获得一个实时的综述,其时效性超过印刷论文。该数据库中的所有论文都根据 13 个精心定义的类别,标记为一个或多个标签。所有条目的分类可以显示为一个或多个树,通过基于网络的交互式应用程序(http://livingreview.in.tum.de)呈现,允许用户选择文献综述的独特视角。此外,用户可以根据特定的标签或与血管配准相关的出版物在基础数据库中进行搜索。这个框架有许多应用,包括用于获取主题的总体概述,或供医生用于确定特定应用的最佳算法。