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Real-time visualisation within the Multimod Application Framework

机译:Multimod应用程序框架中的实时可视化

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This work gives an overview of real-time visualisation algorithms developed under the EC-funded project Multimod to support a novel paradigm for the virtual representation of musculo-skeletal structures. These algorithms are fully integrated into the Multimod Application Framework (MAF), an open-source freely-available software framework for the rapid development of medical visualisation applications. MAF is based on the visualisation toolkit (VTK) and other specialised toolkits, e.g. for image registration and segmentation, collision detection or numerical computation. MAF provides a range of high-level components that can be easily combined for rapid construction of visualisation applications that support synchronised views. The majority of algorithms available within the standard underlying MAF toolkits were frequently either too slow or too general for our purposes. We have thus implemented computationally efficient versions of existing algorithms, e.g. for surface and volume rendering, and more importantly, developed new techniques, e.g. for X-ray rendering and designing volume rendering transfer functions. To achieve interactive rendering we have employed a scheme for space partitioning. The emphasis is on exploiting the characteristics of medical datasets (e.g. density value homogeneity) but further utilising the hardware-accelerated capabilities of modern graphics cards. In this context, calculations are moved into hardware as appropriate while avoiding dependency on specialised features of particular manufacturers so as to ensure real code portability.
机译:这项工作概述了在EC资助的项目Multimod下开发的实时可视化算法,以支持Musculo-skeletal结构的虚拟表示的新型范例。这些算法完全集成到Multimod应用程序框架(MAF)中,是一个开源可自由的软件框架,用于快速开发医学可视化应用程序。 MAF基于可视化工具包(VTK)和其他专业工具包,例如,用于图像配准和分割,碰撞检测或数值计算。 MAF提供一系列高级组件,可轻松组合以快速构建支持同步视图的可视化应用程序。标准底层MAF工具包中可用的大多数算法经常为我们的目的而过于慢或过于普遍。因此,我们已经实现了现有算法的计算有效版本,例如,对于表面和体积渲染,更重要的是,开发了新技术,例如,用于X射线渲染和设计卷渲染传输功能。为了实现互动渲染,我们已经使用了一个空间分区方案。重点是利用医疗数据集的特征(例如密度值均匀性),但进一步利用现代图形卡的硬件加速功能。在此上下文中,计算酌情转移到硬件中,同时避免了对特定制造商的专用特征的依赖性,以确保真实的代码可移植性。

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