Clinic for Radiation Therapy, Pius-Hospital, Oldenburg, Germany.
Z Med Phys. 2013 May;23(2):129-43. doi: 10.1016/j.zemedi.2012.12.010. Epub 2013 Jan 26.
This study is concerned with the spatial resolution of air-filled ionization chambers in photon-beam dosimetry, i.e. with their dose response functions. These act as convolution kernels K(x,y), transforming true dose profiles D(x,y) into the measured signal profiles M(x,y). One-dimensional dose response functions have been experimentally determined for nine types of cylindrical ionization chambers both in their lateral and longitudinal directions, as well as across two plane-parallel chambers and for the single chambers of two 2D arrays. All these 1D dose response functions are closely described by Gaussian functions. The associated energy-dependent values of the standard deviations σ have been measured for 6 and 15 MV photons with an uncertainty of 0.02mm. At depths beyond secondary electron fluence build-up, there was no detectable depth dependence of the σ values. The general occurrence of Gaussian dose response functions, their extension beyond the geometrical boundaries of the chambers, and the energy dependence of their standard deviations can be understood by considering the underlying system of convolutions, which is the origin of the influences of secondary electron transport. Monte-Carlo simulations of the convolution kernels for a cylindrical, a square, and a flat ionization chamber and their Fourier analysis have been employed to show that the Gaussian convolution kernels are approximations to the true dose response functions, valid in the clinically relevant domain of the spatial frequency. This paper is conceived as the starting point for the deconvolution methods to be described in a further publication.
本研究关注空气填充电离室在光子束剂量学中的空间分辨率,即它们的剂量响应函数。这些函数作为卷积核 K(x,y),将真实的剂量分布 D(x,y)转换为测量的信号分布 M(x,y)。本研究实验确定了九种圆柱形电离室在横向和纵向方向以及两个平行平板电离室和两个二维阵列的单个电离室的一维剂量响应函数。所有这些一维剂量响应函数都可以通过高斯函数很好地描述。对于 6 和 15 MV 光子,关联的能量相关标准差 σ 值的测量不确定度为 0.02mm。在二次电子注量累积深度之外,没有检测到 σ 值的可探测深度依赖性。高斯剂量响应函数的普遍出现、它们在腔室几何边界之外的扩展以及它们的标准差的能量依赖性,可以通过考虑卷积的基本系统来理解,这是二次电子输运影响的来源。本研究采用圆柱形、方形和平板电离室的卷积核的蒙特卡罗模拟及其傅里叶分析,表明高斯卷积核是真实剂量响应函数的近似,在空间频率的临床相关域中有效。本文旨在作为进一步出版物中描述的去卷积方法的起点。