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首页> 外文期刊>Medical Physics >Using a tungsten rollbar to characterize the source spot of a megavoltage bremsstrahlung linac.
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Using a tungsten rollbar to characterize the source spot of a megavoltage bremsstrahlung linac.

机译:使用钨制滚动条来表征兆伏致直线加速器的源极点。

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In photon teletherapy, the size and functional form of the photon source spot affect both the sharpness of the penumbra of treatment fields and the sharpness of portal images. Photon source spot parameters are also used in photon teletherapy dose calculation codes. A simple method for characterizing the source spot would complement the existing, more involved methods that have been described in the medical physics literature. Such a method, using a rollbar made of tungsten or other high-Z metal, is used in industrial radiography. We describe the use of a tungsten rollbar for characterizing the source spot edge spread function (and thereby the source spot size and shape) of a megavoltage bremsstrahlung photon source. We use Monte Carlo simulations to quantify anticipated experimental artifacts of the method, assuming typical spot sizes for circ-function, Gaussian, and Bennett line shapes. We illustrate the use of the rollbar method by characterizing the source spot of a typical 9 MV linac used for industrial radiography. The source spot is analyzed using two approaches: (a) fitting the rollbar image with analytic functions and (b) using Abel inversion to obtain the cylindrically symmetric spot profile consistent with the measured rollbar image. Monte Carlo simulations, based on a 6 MV photon teletherapy accelerator, suggest that aspects of the method are applicable to medical bremsstrahlung sources.
机译:在光子远程治疗中,光子源点的大小和功能形式会影响治疗区域半影的清晰度和门图像的清晰度。光子源治疗参数计算代码中也使用了光子源点参数。一种简单的表征源点的方法将补充医学物理学文献中描述的现有的,涉及更多的方法。使用由钨或其他高Z金属制成的滚动杆的这种方法被用于工业射线照相中。我们描述了使用钨辊棒来表征兆伏致辐射光子源的源点边缘扩展函数(以及源点尺寸和形状)。我们使用蒙特卡洛模拟来量化该方法的预期实验伪像,并假设圆函数,高斯和贝内特线形的典型斑点大小。我们通过表征用于工业射线照相的典型9 MV直线加速器的源点来说明rollbar方法的使用。使用两种方法分析源点:(a)使用分析函数拟合滚动条图像,以及(b)使用Abel反演获得与测得的滚动条图像一致的圆柱对称斑点轮廓。基于6 MV光子远程治疗加速器的Monte Carlo模拟表明,该方法的各个方面适用于医用致辐射源。

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