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首页> 外文期刊>Medical dosimetry: official journal of the American Association of Medical Dosimetrists >Selecting noncoplanar beam directions in a patient coordinate system for radiotherapy planning
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Selecting noncoplanar beam directions in a patient coordinate system for radiotherapy planning

机译:在患者坐标系中选择非平板梁方向进行放射治疗计划

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To introduce a beam angle selection method based on the patient coordinate system for treatment planning of noncoplanar intensity-modulated radiation therapy (IMRT). Traditionally, in radiotherapy planning, beam directions are selected in the machine coordinate system. A noncoplanar beam direction is established through a treatment table rotation followed by a gantry rotation. However, visualizing the beam direction relative to the patient is difficult. The suggestion here is to describe the beam direction in the patient coordinate system. First, a coplanar beam direction is selected in the transverse plane of the patient coordinate system. The noncoplanar beam direction is then obtained by adjusting the coplanar beam toward the foot or head in the patient coordinate system. Finally, the noncoplanar beam direction is expressed in terms of gantry and table angles in the machine coordinate system via formulae developed in this study. A 3D computer-aided design model of the linear accelerator (linac) is established with Solidworks and used to validate the feasibility of the proposed method. A clinical case was chosen to demonstrate the effectiveness of this method. Treatment plans with the conventional coplanar and noncoplanar beam settings were made. Compared with the conventional coplanar IMRT plan, improved normal tissue sparing of the organs at risk using the noncoplanar IMRT plan is evident. The proposed method for noncoplanar treatment planning makes beam direction selection simpler and straightforward. (C) 2018 Published by Elsevier Inc. on behalf of American Association of Medical Dosimetrists.
机译:引入基于患者坐标系的光束角度选择方法,用于非平板强度调制放射治疗(IMRT)的治疗计划。传统上,在放射疗法规划中,在机床坐标系中选择光束方向。通过处理台旋转建立非平板梁方向,然后建立龙门旋转。然而,难以使光束方向可视化。这里的建议是描述患者坐标系中的光束方向。首先,在患者坐标系的横向平面中选择共面波束方向。然后通过将共面光束调节到患者坐标系中的脚或头部来获得非平板梁方向。最后,非平板梁方向以通过本研究开发的公式在机器坐标系中的机架和表角度表示。用SolidWorks建立了线性加速器(LINAC)的3D计算机辅助设计模型,用于验证所提出的方法的可行性。选择临床案例以证明该方法的有效性。进行了常规共面和非平板梁设置的处理计划。与传统的共面IMRT计划相比,使用NoncoplAnar IMRT计划改善了风险中的器官的正常组织备量。所提出的非平板处理规划方法使光束方向选择更简单和简单。 (c)2018年由elsevier Inc.发布代表美国医疗剂量分子协会。

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