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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Share and enjoy: Anatomical models database - Generating and sharing cardiovascular model data using web services
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Share and enjoy: Anatomical models database - Generating and sharing cardiovascular model data using web services

机译:共享和享受:解剖模型数据库-使用Web服务生成和共享心血管模型数据

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Sharing data between scientists and with clinicians in cardiac research has been facilitated significantly by the use of web technologies. The potential of this technology has meant that information sharing has been routinely promoted through databases that have encouraged stakeholder participation in communities around these services. In this paper we discuss the Anatomical Model Database (AMDB) (Gianni, et al. Functional imaging and modeling of the heart. Springer, Heidelberg, 2009; Gianni, et al. Phil Trans Ser A Math Phys Eng Sci 368:3039-3056, 2010) which both facilitate a database-centric approach to collaboration, and also extends this framework with new capabilities for creating new mesh data. AMDB currently stores cardiac geometric models described in Gianni, et al. (Functional imaging and modelling of the heart. Springer, Heidelberg, 2009), a number of additional cardiac models describing geometry and functional properties, and most recently models generated using a web service. The functional models represent data from simulations in geometric form, such as electrophysiology or mechanics, many of which are present in AMDB as part of a benchmark study. Finally, the heartgen service has been added for producing left or bi-ventricle models derived from binary image data using the methods described in Lamata, et al. (Med Image Anal 15:801-813, 2011). The results can optionally be hosted on AMDB alongside other community-provided anatomical models. AMDB is, therefore, a unique database storing geometric data (rather than abstract models or image data) combined with a powerful web service for generating new geometric models.
机译:网络技术的使用大大促进了科学家之间以及与临床研究中的临床医生之间的数据共享。这项技术的潜力意味着,通常通过数据库来促进信息共享,这些数据库鼓励利益相关者参与这些服务周围的社区。在本文中,我们讨论了解剖模型数据库(AMDB)(Gianni等人,心脏的功能成像和建模。Springer,Heidelberg,2009年; Gianni等人,Phil Trans Ser A数学物理工程科学368:3039-3056 (2010年)。这不仅促进了以数据库为中心的协作方法,而且还通过创建新网格数据的新功能扩展了该框架。 AMDB当前存储Gianni等人所述的心脏几何模型。 (心脏的功能成像和建模。Springer,Heidelberg,2009年),描述几何形状和功能特性的许多其他心脏模型,以及最近使用网络服务生成的模型。功能模型以几何形式(例如电生理学或力学)表示来自模拟的数据,其中许多作为基准研究的一部分出现在AMDB中。最后,添加了heartgen服务,以使用Lamata等人的方法(该方法来自二进制图像数据来生成左心室或双心室模型)。 (Med Image Anal 15:801-813,2011)。可以选择将结果与其他社区提供的解剖模型一起托管在AMDB上。因此,AMDB是一个独特的数据库,用于存储几何数据(而不是抽象模型或图像数据)以及强大的Web服务,以生成新的几何模型。

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