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兆伏级锥形束CT散射校正

Correction of scatter in megavoltage cone-beam CT.

作者信息

Spies L, Ebert M, Groh B A, Hesse B M, Bortfeld T

机构信息

Deutsches Krebsforschungszentrum, Heidelberg, Germany.

出版信息

Phys Med Biol. 2001 Mar;46(3):821-33. doi: 10.1088/0031-9155/46/3/316.

Abstract

The role of scatter in a cone-beam computed tomography system using the therapeutic beam of a medical linear accelerator and a commercial electronic portal imaging device (EPID) is investigated. A scatter correction method is presented which is based on a superposition of Monte Carlo generated scatter kernels. The kernels are adapted to both the spectral response of the EPID and the dimensions of the phantom being scanned. The method is part of a calibration procedure which converts the measured transmission data acquired for each projection angle into water-equivalent thicknesses. Tomographic reconstruction of the projections then yields an estimate of the electron density distribution of the phantom. It is found that scatter produces cupping artefacts in the reconstructed tomograms. Furthermore, reconstructed electron densities deviate greatly (by about 30%) from their expected values. The scatter correction method removes the cupping artefacts and decreases the deviations from 30% down to about 8%.

摘要

研究了在使用医用直线加速器的治疗束和商用电子射野影像装置(EPID)的锥束计算机断层扫描系统中散射的作用。提出了一种基于蒙特卡罗生成的散射核叠加的散射校正方法。这些核既适应于EPID的光谱响应,也适应于被扫描体模的尺寸。该方法是校准程序的一部分,该校准程序将为每个投影角度采集的测量透射数据转换为水等效厚度。然后对投影进行断层重建,得到体模电子密度分布的估计值。发现散射在重建的断层图像中产生杯状伪影。此外,重建的电子密度与其预期值有很大偏差(约30%)。散射校正方法消除了杯状伪影,并将偏差从30%降低到约8%。

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