Mohan R, Barest G, Brewster L J, Chui C S, Kutcher G J, Laughlin J S, Fuks Z
Memorial Sloan-Kettering Cancer Center, New York, NY 10021.
Int J Radiat Oncol Biol Phys. 1988 Aug;15(2):481-95. doi: 10.1016/s0360-3016(98)90033-5.
A comprehensive software system has been developed to allow 3-dimensional planning of radiation therapy treatments using the extensive anatomical information made available by imaging modalities such as CT and MR. Biological structures of interest and tumor volumes are defined by outlines drawn on a sequence of CT slices. Beam set-ups may then be determined in three dimensions by displaying the structure contours in a beam's eye view, or in two dimensions using a single CT cut. Each beam defined may be shaped by the specification of block aperture contours, and its intensity may be modified with the use of planar compensators. 3D dose calculation algorithms are discussed. To evaluate the calculation results, dose volume histograms are provided, as well as various types of displays in two and three dimensions, including dose on arbitrarily oriented planes, dose on the surface of anatomical objects, and isodose surfaces. Computer generated beam films are also available as an aid in patient set-up verification. These tools, and others, provide the basis for a comprehensive 3D system that can be used throughout the treatment planning process.
已经开发了一个综合软件系统,以利用CT和MR等成像方式提供的大量解剖学信息进行放射治疗的三维规划。通过在一系列CT切片上绘制轮廓来定义感兴趣的生物结构和肿瘤体积。然后,可以通过在射野视角中显示结构轮廓在三维空间中确定射束设置,或者使用单个CT切片在二维空间中确定射束设置。定义的每个射束可以通过块孔径轮廓的规格进行塑形,并且可以使用平面补偿器修改其强度。讨论了三维剂量计算算法。为了评估计算结果,提供了剂量体积直方图以及二维和三维的各种类型显示,包括任意取向平面上的剂量、解剖对象表面上的剂量和等剂量面。计算机生成的射束胶片也可用于辅助患者设置验证。这些工具以及其他工具为可在整个治疗计划过程中使用的综合三维系统提供了基础。