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脑肿瘤患者每日 ExacTrac 6D 图像引导系统的摆位不确定性及边界分析

Analysis of the Setup Uncertainty and Margin of the Daily ExacTrac 6D Image Guide System for Patients with Brain Tumors.

作者信息

Oh Se An, Yea Ji Woon, Kang Min Kyu, Park Jae Won, Kim Sung Kyu

机构信息

Department of Radiation Oncology, Yeungnam University Medical Center, Daegu, Korea.

Department of Radiation Oncology, Yeungnam University College of Medicine, Daegu, Korea.

出版信息

PLoS One. 2016 Mar 28;11(3):e0151709. doi: 10.1371/journal.pone.0151709. eCollection 2016.

Abstract

This study evaluated the setup uncertainties for brain sites when using BrainLAB's ExacTrac X-ray 6D system for daily pretreatment to determine the optimal planning target volume (PTV) margin. Between August 2012 and April 2015, 28 patients with brain tumors were treated by daily image-guided radiotherapy using the BrainLAB ExacTrac 6D image guidance system of the Novalis-Tx linear accelerator. DUONTM (Orfit Industries, Wijnegem, Belgium) masks were used to fix the head. The radiotherapy was fractionated into 27-33 treatments. In total, 844 image verifications were performed for 28 patients and used for the analysis. The setup corrections along with the systematic and random errors were analyzed for six degrees of freedom in the translational (lateral, longitudinal, and vertical) and rotational (pitch, roll, and yaw) dimensions. Optimal PTV margins were calculated based on van Herk et al.'s [margin recipe = 2.5∑ + 0.7σ - 3 mm] and Stroom et al.'s [margin recipe = 2∑ + 0.7σ] formulas. The systematic errors (∑) were 0.72, 1.57, and 0.97 mm in the lateral, longitudinal, and vertical translational dimensions, respectively, and 0.72°, 0.87°, and 0.83° in the pitch, roll, and yaw rotational dimensions, respectively. The random errors (σ) were 0.31, 0.46, and 0.54 mm in the lateral, longitudinal, and vertical rotational dimensions, respectively, and 0.28°, 0.24°, and 0.31° in the pitch, roll, and yaw rotational dimensions, respectively. According to van Herk et al.'s and Stroom et al.'s recipes, the recommended lateral PTV margins were 0.97 and 1.66 mm, respectively; the longitudinal margins were 1.26 and 3.47 mm, respectively; and the vertical margins were 0.21 and 2.31 mm, respectively. Therefore, daily setup verifications using the BrainLAB ExacTrac 6D image guide system are very useful for evaluating the setup uncertainties and determining the setup margin.

摘要

本研究评估了使用BrainLAB公司的ExacTrac X射线6D系统进行每日预处理时脑区部位的摆位不确定性,以确定最佳计划靶区(PTV)边界。2012年8月至2015年4月期间,28例脑肿瘤患者使用Novalis-Tx直线加速器的BrainLAB ExacTrac 6D图像引导系统接受了每日图像引导放射治疗。使用DUONTM(比利时维涅gem的Orfit Industries公司)面罩固定头部。放射治疗分为27 - 33次分割。总共对28例患者进行了844次图像验证并用于分析。分析了平移(横向、纵向和垂直)和旋转(俯仰、横滚和偏航)维度六个自由度的摆位校正以及系统误差和随机误差。根据van Herk等人的[边界公式 = 2.5∑ + 0.7σ - 3 mm]和Stroom等人的[边界公式 = 2∑ + 0.7σ]公式计算最佳PTV边界。横向、纵向和垂直平移维度的系统误差(∑)分别为0.72、1.57和0.97 mm,俯仰、横滚和偏航旋转维度的系统误差分别为0.72°、0.87°和0.83°。横向、纵向和垂直旋转维度的随机误差(σ)分别为0.31、0.46和0.54 mm,俯仰、横滚和偏航旋转维度的随机误差分别为0.28°、0.24°和0.31°。根据van Herk等人和Stroom等人的公式,推荐的横向PTV边界分别为0.97和1.66 mm;纵向边界分别为1.26和3.47 mm;垂直边界分别为0.21和2.31 mm。因此,使用BrainLAB ExacTrac 6D图像引导系统进行每日摆位验证对于评估摆位不确定性和确定摆位边界非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42cb/4809593/7a5851081c63/pone.0151709.g001.jpg

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