首页> 外文会议>Physic of Medical Imaging pt.2; Progress in Biomedical Optics and Imaging; vol.6 no.22 >Initial application of digital tomosynthesis with on-board imaging in radiation oncology
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Initial application of digital tomosynthesis with on-board imaging in radiation oncology

机译:数字断层合成与车载成像在放射肿瘤学中的初步应用

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We present preliminary investigations that examine the feasibility of incorporating digital tomosynthesis into radiation oncology practice with the use of kilovoltage on-board imagers (OBI). Modern radiation oncology linear accelerators now include hardware options for the addition of OBI for on-line patient setup verification. These systems include an x-ray tube and detector mounted directly on the accelerator gantry that rotate with the same isocenter. Applications include cone beam computed tomography (CBCT), fluoroscopy, and radiographs to examine daily patient positioning to determine if the patient is in the same location as the treatment plan. While CBCT provides the greatest anatomical detail, this approach is limited by long acquisition and reconstruction times and higher patient dose. We propose to examine the use of tomosynthesis reconstructed volumetric data from limited angle projection images for short imaging time and reduced patient dose. Initial data uses 61 projection images acquired over an isocentric arc of twenty degrees with the detector approximately fifty-four centimeters from isocenter. A modified filtered back projection technique, which included a mathematical correction for isocentric motion, was used to reconstruct volume images. These images will be visually and mathematically compared to volumetric computed tomography images to determine efficacy of this system for daily patient positioning verification. Initial images using the tomosynthesis reconstruction technique show much promise and bode well for effective daily patient positioning verification with reduced patient dose and imaging time. Additionally, the fast image acquisition may allow for a single breath hold imaging sequence, which will have no breath motion.
机译:我们目前进行初步调查,以研究使用千伏级车载成像仪(OBI)将数字断层合成纳入放射肿瘤学实践的可行性。现在,现代放射肿瘤学线性加速器包括用于添加OBI的硬件选项,用于在线患者设置验证。这些系统包括X射线管和直接安装在以相同等角点旋转的加速器机架上的探测器。应用包括锥束计算机断层扫描(CBCT),荧光检查和X射线照片,以检查患者的日常位置,以确定患者是否与治疗计划位于同一位置。虽然CBCT提供了最大的解剖学细节,但这种方法受到采集和重建时间长以及患者剂量较高的限制。我们建议从有限的角度投影图像中检查层析合成重建的体数据,以缩短成像时间并减少患者剂量。初始数据使用61个投影图像,这些图像是在20度等角弧上获取的,检测器距等角点约54厘米。一种改进的滤波反投影技术,包括对等心运动的数学校正,被用于重建体图像。这些图像将在视觉和数学上与体积计算机断层扫描图像进行比较,以确定该系统对日常患者定位验证的功效。使用断层合成重建技术的初始图像显示出很大的希望,并且对于减少患者剂量和成像时间的有效每日患者定位验证是一个好兆头。另外,快速图像采集可以允许单屏屏气成像序列,该屏屏将没有呼吸运动。

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