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Volume rendering quantification algorithm for reconstruction of CT volume-rendered structures. 1. Cerebral arteriovenous malformations

机译:用于重建CT体绘制结构的体绘制量化算法。 1.脑动静脉畸形

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Volume rendering is a visualization technique that has important applications in diagnostic radiology and in radiotherapy but has not achieved widespread use due, in part, to the lack of volumetric analysis tools for comparison of volume rendering to conventional visualization techniques. The volume rendering quantification algorithm (VRQA), a technique for three-dimensional (3-D) reconstruction of a structure identified on six principal volume-rendered views, is introduced and described, VRQA involves three major steps: 1) preprocessing of the partial surfaces constructed from each of six volume-rendered images; 2) merging these processed partial surfaces to define the boundaries of a volume; and 3) computation of the volume of the structure from this boundary information. After testing on phantoms, VRQA was applied to CT data of patients with cerebral arteriovenous malformations (AVM's). Because volumetric visualization of the cerebral AVM is relatively insensitive to operator dependencies, such as the choice of opacity transfer function, and because precise volumetric definition of the AVM is necessary for radiosurgical treatment planning, it is representative of a class of structures that is ideal for testing and calibration of VRQA, AVM volumes obtained using VRQA are intermediate to those obtained using axial contouring and those obtained using CT-correlated biplanar angiography (two routinely used visualization techniques for treatment planning for AVM's). Applications and potential expansions of VRQA are discussed.
机译:体绘制是一种可视化技术,在诊断放射学和放射治疗中具有重要的应用,但由于缺少缺少用于将体绘制与常规可视化技术进行比较的体积分析工具,因此尚未得到广泛使用。引入并描述了体积渲染量化算法(VRQA),该技术是对在六个主要体积渲染视图上标识的结构进行三维(3-D)重建的技术,VRQA涉及三个主要步骤:1)局部预处理由六个体积渲染图像中的每个图像构成的表面; 2)合并这些处理过的局部曲面以定义体积的边界; 3)根据该边界信息计算结构的体积。在对模型进行测试之后,将VRQA应用于脑动静脉畸形(AVM)患者的CT数据。由于大脑AVM的体积可视化对操作员的依赖性(例如不透明度传递函数的选择)相对不敏感,并且由于AVM的精确体积定义对于放射外科治疗计划是必需的,因此它代表了一类结构,非常适合在VRQA的测试和校准中,使用VRQA获得的AVM体积是使用轴向轮廓绘制和使用CT相关双平面血管造影获得的AVM体积(用于AVM的治疗计划的两种常规使用的可视化技术)。讨论了VRQA的应用和潜在扩展。

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