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CERR:一种用于放射治疗研究的计算环境。

CERR: a computational environment for radiotherapy research.

作者信息

Deasy Joseph O, Blanco Angel I, Clark Vanessa H

机构信息

Department of Radiation Oncology, Mallinckrodt Institute of Radiology, Alvin J. Siteman Cancer Center, Washington University Medical Center, St. Louis, Missouri 63110, USA.

出版信息

Med Phys. 2003 May;30(5):979-85. doi: 10.1118/1.1568978.

Abstract

A software environment is described, called the computational environment for radiotherapy research (CERR, pronounced "sir"). CERR partially addresses four broad needs in treatment planning research: (a) it provides a convenient and powerful software environment to develop and prototype treatment planning concepts, (b) it serves as a software integration environment to combine treatment planning software written in multiple languages (MATLAB, FORTRAN, C/C++, JAVA, etc.), together with treatment plan information (computed tomography scans, outlined structures, dose distributions, digital films, etc.), (c) it provides the ability to extract treatment plans from disparate planning systems using the widely available AAPM/RTOG archiving mechanism, and (d) it provides a convenient and powerful tool for sharing and reproducing treatment planning research results. The functional components currently being distributed, including source code, include: (1) an import program which converts the widely available AAPM/RTOG treatment planning format into a MATLAB cell-array data object, facilitating manipulation; (2) viewers which display axial, coronal, and sagittal computed tomography images, structure contours, digital films, and isodose lines or dose colorwash, (3) a suite of contouring tools to edit and/or create anatomical structures, (4) dose-volume and dose-surface histogram calculation and display tools, and (5) various predefined commands. CERR allows the user to retrieve any AAPM/RTOG key word information about the treatment plan archive. The code is relatively self-describing, because it relies on MATLAB structure field name definitions based on the AAPM/RTOG standard. New structure field names can be added dynamically or permanently. New components of arbitrary data type can be stored and accessed without disturbing system operation. CERR has been applied to aid research in dose-volume-outcome modeling, Monte Carlo dose calculation, and treatment planning optimization. In summary, CERR provides a powerful, convenient, and common framework which allows researchers to use common patient data sets, and compare and share research results.

摘要

本文描述了一种名为放射治疗研究计算环境(CERR,发音为“sir”)的软件环境。CERR部分满足了治疗计划研究中的四大广泛需求:(a)它提供了一个方便且强大的软件环境来开发治疗计划概念并制作原型;(b)它作为一个软件集成环境,将用多种语言(MATLAB、FORTRAN、C/C++、JAVA等)编写的治疗计划软件与治疗计划信息(计算机断层扫描、勾勒的结构、剂量分布、数字影像等)相结合;(c)它能够使用广泛可用的美国医学物理师协会/放射肿瘤学组(AAPM/RTOG)存档机制从不同的计划系统中提取治疗计划;(d)它为共享和重现治疗计划研究结果提供了一个方便且强大的工具。目前正在分发的功能组件,包括源代码,有:(1)一个导入程序,可将广泛使用的AAPM/RTOG治疗计划格式转换为MATLAB单元数组数据对象,便于操作;(2)查看器,可显示轴向、冠状和矢状面的计算机断层扫描图像、结构轮廓、数字影像以及等剂量线或剂量色阶图;(3)一套用于编辑和/或创建解剖结构的轮廓工具;(4)剂量体积和剂量表面直方图计算及显示工具;(5)各种预定义命令。CERR允许用户检索有关治疗计划存档的任何AAPM/RTOG关键词信息。该代码相对具有自描述性,因为它基于AAPM/RTOG标准依赖于MATLAB结构字段名称定义。可以动态或永久添加新的结构字段名称。可以存储和访问任意数据类型的新组件,而不会干扰系统操作。CERR已被应用于辅助剂量体积结果建模、蒙特卡罗剂量计算和治疗计划优化等方面的研究。总之,CERR提供了一个强大、方便且通用的框架,使研究人员能够使用通用的患者数据集,并比较和共享研究结果。

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