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一种质量保证程序,用于评估锥形束 CT 图像中心与直线加速器辐射等中心的一致性。

A quality assurance procedure to evaluate cone-beam CT image center congruence with the radiation isocenter of a linear accelerator.

机构信息

Department of Radiation Physics, University of Texas M. D. Anderson Cancer Center, Houston, TX, USA.

出版信息

J Appl Clin Med Phys. 2010 Jul 2;11(4):3297. doi: 10.1120/jacmp.v11i4.3297.

Abstract

A quality assurance (QA) procedure was developed to evaluate the congruence between the cone-beam computed tomography (CBCT) image center and the radiation isocenter on a Varian Trilogy linac. In contrast to the published QA procedures, this method did not require a ball bearing (BB) phantom to be placed exactly at the radiation isocenter through precalibrated room lasers or light field crosshairs. The only requirement was that the BB phantom be in a stationary position near the radiation isocenter during the image acquisition process. The radiation isocenter was determined with respect to the center of the BB using a Winston-Lutz test. The CBCT image center was found to have excellent short-term positional repro-ducibility (i.e., less than 0.1 mm of wobble in each of the x (lateral), y (vertical), and z (longitudinal) directions) in 10 consecutive acquisitions. Measured over a seven-month period, the CBCT image center deviated from the radiation isocenter by 0.40 ± 0.12 mm (x), 0.43 ± 0.04 mm (y), and 0.34 ± 0.14 mm (z). The z displacement of the 3D CBCT image center was highly correlated (ρ = 0.997) with that of the 2D kV portal image center. The correlation coefficients in the x and y directions were poor (ρ = 0.66 and -0.35, respectively). Systematic discrepancies were found between the CBCT image center and the 2D MV, kV portal image centers. For the linear accelerator studied, we detected a 0.8 mm discrepancy between the CBCT image center and the MV EPID image center in the anterior-posterior direction.This discrepancy was demonstrated in a clinical case study where the patient was positioned with CBCT followed by MV portal verification. The results from the new QA procedure are useful for guiding high-precision patient positioning in stereotactic body radiation therapy.

摘要

开发了一种质量保证 (QA) 程序,以评估锥形束计算机断层扫描 (CBCT) 图像中心与瓦里安 Trilogy 直线加速器辐射等中心之间的一致性。与已发表的 QA 程序不同,该方法不需要将球轴承 (BB) 体模通过经过预校准的房间激光或光场十字准线精确放置在辐射等中心。唯一的要求是,在图像采集过程中,BB 体模必须处于辐射等中心附近的固定位置。使用 Winston-Lutz 测试确定辐射等中心。在 10 次连续采集过程中,CBCT 图像中心在 x(横向)、y(纵向)和 z(纵向)方向上的短期位置重复性非常好(即每个方向的摆动小于 0.1 毫米)。在七个月的时间内,CBCT 图像中心与辐射等中心的偏差分别为 0.40 ± 0.12 毫米(x)、0.43 ± 0.04 毫米(y)和 0.34 ± 0.14 毫米(z)。3D CBCT 图像中心的 z 位移与 2D kV 端口图像中心高度相关(ρ=0.997)。x 和 y 方向的相关系数较差(ρ分别为 0.66 和-0.35)。在 CBCT 图像中心和 2D MV、kV 端口图像中心之间发现了系统差异。对于所研究的直线加速器,我们在前后方向上检测到 CBCT 图像中心与 MV EPID 图像中心之间存在 0.8 毫米的差异。在临床病例研究中,通过 CBCT 定位后进行 MV 端口验证,证明了这种差异。新的 QA 程序的结果有助于指导立体定向体放射治疗中的高精度患者定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/406d/5720414/a7e22b226109/ACM2-11-015-g001.jpg

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