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一种新设计的用于兆伏级光子辐射的格栅挡块的剂量学特征及其使用线性二次模型的治疗优势。

Dosimetric characteristics of a newly designed grid block for megavoltage photon radiation and its therapeutic advantage using a linear quadratic model.

作者信息

Meigooni Ali S, Dou Kai, Meigooni Navid J, Gnaster Michael, Awan Shahid, Dini Sharifeh, Johnson Ellis L

机构信息

University of Kentucky Chandler Medical Center, Department of Radiation Medicine, Lexington, Kentucky 40536-0084, USA.

出版信息

Med Phys. 2006 Sep;33(9):3165-73. doi: 10.1118/1.2241998.

Abstract

Grid radiation therapy with megavoltage x-ray beam has been proven to be an effective technique for management of large, bulky malignant tumors. The clinical advantage of GRID therapy, combined with conventional radiation therapy, has been demonstrated using a prototype GRID block [Mohiuddin, Curtis, Grizos, and Komarnicky, Cancer 66, 114-118 (1990)]. Recently, a new GRID block design with improved dosimetric properties has become commercially available from Radiation Product Design, Inc. (Albertive, MN). This GRID collimator consists of an array of focused apertures in a cerrobend block arranged in a hexagonal pattern having a circular cross-section with a diameter and center-to-center spacing of 14.3 and 21.1 mm, respectively, in the plane of isocenter. In this project, dosimetric characteristics of the newly redesigned GRID block have been investigated for a Varian 21EX linear accelerator (Varian Associates, Palo Alto, CA). These determinations were performed using radiographic films, thermoluminescent dosimeters in Solid Water phantom materials, and an ionization chamber in water. The output factor, percentage depth dose, beam profiles, and isodose distributions of the GRID radiation as a function of field size and beam energy have been measured using both 6 and 18 MV x-ray beams. In addition, the therapeutic advantage obtained from this treatment modality with the new GRID block design for a high, single fraction of dose has been calculated using the linear quadratic model with alpha/beta ratios for typical tumor and normal cells. These biological characteristics of the new GRID block design will also be presented.

摘要

兆伏级X射线束的格栅放射治疗已被证明是治疗大型、体积较大恶性肿瘤的有效技术。使用原型格栅挡块已证明了格栅治疗与传统放射治疗相结合的临床优势[Mohiuddin、Curtis、Grizos和Komarnicky,《癌症》66,114 - 118(1990)]。最近,一种具有改进剂量学特性的新型格栅挡块设计已由辐射产品设计公司(明尼苏达州阿尔伯特维尔)商业化推出。这种格栅准直器由铈基低熔点合金挡块中的一系列聚焦孔组成,这些孔排列成六边形图案,在等中心平面上具有圆形横截面,直径和中心距分别为14.3毫米和21.1毫米。在本项目中,已针对瓦里安21EX直线加速器(加利福尼亚州帕洛阿尔托的瓦里安联合公司)研究了新重新设计的格栅挡块的剂量学特性。这些测定是使用射线照相胶片、固体水模体材料中的热释光剂量计以及水中的电离室进行的。已使用6兆伏和18兆伏X射线束测量了格栅辐射的输出因子、百分深度剂量、射野轮廓和等剂量分布,这些都是场大小和束能量的函数。此外,已使用针对典型肿瘤和正常细胞的α/β比值的线性二次模型计算了使用新型格栅挡块设计进行单次高剂量治疗方式所获得的治疗优势。还将介绍新型格栅挡块设计的这些生物学特性。

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