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在使用兆伏级光子束对癌症患者进行放射治疗时,通过组合两个任意通用楔形野来确定有效楔形角

Determination of an Effective Wedge Angle by Combination of Two Arbitrary Universal Wedge Fields in Radiation Therapy of Cancer Patients with Megavoltage Photon Beams.

作者信息

Shamsi Azin, Tahmasebi Birgani Mohammad Javad, Behrooz Mohammad Ali, Arvandi Sholeh, Fatahiasl Jafar, Maskny Reza, Abdalvand Neda

机构信息

Department of Medical physics, Golestan Hospital, Ahvaz Jundishapur University of Medical Sciences, Ahvaz, Iran E-mail : Tahmasebi_mj @yahoo.com.

出版信息

Asian Pac J Cancer Prev. 2016;17(1):197-200. doi: 10.7314/apjcp.2016.17.1.197.

Abstract

BACKGROUND

Wedge filters are commonly used in radiation oncology for eliminating hot spots and creating a uniform dose distribution in optimizing isodose curves in the target volume for clinical aspects. These are some limited standard physical wedges (15°, 30°, 45°, 60°),or creating an arbitrary wedge angle, like motorized wedge or dynamic wedge,... The new formulation is presented by the combination of wedge fields for determining an arbitrary effective wedge angles. The isodose curves also are derived for these wedges.

MATERIALS AND METHODS

we performed the dosimetry of Varian Clinac 2100C/D with Scanditronix Wellhofer water blue phantom, CU500E, OmniPro - Accept software and 0.13cc ionization chamber for 6Mv photon beam in depth of 10cm (reference depth) for universal physical wedges (15°, 30°, 45°, and 60°) and reference field 10x10cm2. By combining the isodose curve standard wedge fields with compatible weighting dose for each field, the effective isodose curve is calculated for any wedge angle.

RESULTS

The relation between a given effective wedge angle and the weighting of each combining wedge fields was derived. A good agreement was found between the measured and calculated wedge angles and the maximum deviation did not exceed 3°. The difference between the measured and calculated data decreased when the combined wedge angles were closer. The results are in agreement with the motorized single wedge appliance in the literature.

CONCLUSIONS

This technique showed that the effective wedge angle that is obtained from this method is adequate for clinical applications and the motorized wedge formalism is a special case of this consideration.

摘要

背景

楔形滤过器在放射肿瘤学中常用于消除热点,并在临床方面优化靶区等剂量曲线时创建均匀的剂量分布。有一些有限的标准物理楔形滤过器(15°、30°、45°、60°),或者创建任意楔形角度,如电动楔形滤过器或动态楔形滤过器……通过组合楔形野来确定任意有效楔形角度,提出了新的公式。还推导了这些楔形滤过器的等剂量曲线。

材料与方法

我们使用Scanditronix Wellhofer水模体CU500E、OmniPro - Accept软件和0.13cc电离室,对Varian Clinac 2100C/D的6Mv光子束在10cm深度(参考深度)进行剂量测定,针对通用物理楔形滤过器(15°、30°、45°和60°)以及参考野10×10cm²。通过将标准楔形野的等剂量曲线与每个野的兼容加权剂量相结合,计算出任意楔形角度的有效等剂量曲线。

结果

得出了给定有效楔形角度与每个组合楔形野权重之间的关系。实测和计算的楔形角度之间有良好的一致性,最大偏差不超过3°。当组合楔形角度越接近时,实测和计算数据之间的差异减小。结果与文献中的电动单楔形滤过器一致。

结论

该技术表明,通过这种方法获得的有效楔形角度适用于临床应用,电动楔形滤过器形式是这种考虑的一个特殊情况。

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