Cavuşoğlu M Cenk, Göktekin Tolga G, Tendick Frank
Department of Electrical Engineering and Computer Science, Case Western Reserve University, Cleveland, OH 44106, USA.
IEEE Trans Inf Technol Biomed. 2006 Apr;10(2):312-22. doi: 10.1109/titb.2006.864479.
This paper presents the architectural details of an evolving open source/open architecture software framework for developing organ-level surgical simulations. Our goal is to facilitate shared development of reusable models, to accommodate heterogeneous models of computation, and to provide a framework for interfacing multiple heterogeneous models. The framework provides an application programming interface for interfacing dynamic models defined over spatial domains. It is specifically designed to be independent of the specifics of the modeling methods used, and therefore facilitates seamless integration of heterogeneous models and processes. Furthermore, each model has separate geometries for visualization, simulation, and interfacing, allowing the model developer to choose the most natural geometric representation for each case. Input/output interfaces for visualization and haptics for real-time interactive applications have also been provided.
本文介绍了一个不断发展的用于开发器官级手术模拟的开源/开放架构软件框架的架构细节。我们的目标是促进可重用模型的共享开发,适应异构计算模型,并为连接多个异构模型提供一个框架。该框架提供了一个应用程序编程接口,用于连接在空间域上定义的动态模型。它专门设计为独立于所使用的建模方法的具体细节,因此便于异构模型和过程的无缝集成。此外,每个模型都有用于可视化、模拟和接口的单独几何形状,允许模型开发人员为每种情况选择最自然的几何表示。还提供了用于实时交互应用的可视化和触觉的输入/输出接口。