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Initial Application of Digital Tomosynthesis to Improve Brachytherapy Treatment Planning

机译:数字断层合成技术在改善近距离放射治疗计划中的初步应用

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We present preliminary investigations that examine the feasibility of incorporating volumetric images generated using digital tomosynthesis into brachytherapy treatment planning. The Integrated Brachytherapy Unit (IBU) at our facility consists of an L-arm, C-arm isocentric motion system with an x-ray tube and fluoroscopic imager attached. Clinically, this unit is used to generate oblique, anterior-posterior, and lateral images for simple treatment planning and dose prescriptions. Oncologists would strongly prefer to have volumetric data to better determine three dimensional dose distributions (dose-volume histograms) to the target area and organs at risk. Moving the patient back and forth to CT causes undo stress on the patient, allows extensive motion of organs and treatment applicators, and adds additional time to patient treatment. We propose to use the IBU imaging system with digital tomosynthesis to generate volumetric patient data, which can be used for improving treatment planning and overall reducing treatment time. Initial image data sets will be acquired over a limited arc of a human-like phantom composed of real bones and tissue equivalent material. A brachytherapy applicator will be incorporated into one of the phantoms for visualization purposes. Digital tomosynthesis will be used to generate a volumetric image of this phantom setup. This volumetric image set will be visually inspected to determine the feasibility of future incorporation of these types of images into brachytherapy treatment planning. We conclude that initial images using the tomosynthesis reconstruction technique show much promise and bode well for future work.
机译:我们目前进行初步调查,以检查将使用数字断层合成生成的体积图像纳入近距离放射治疗计划的可行性。我们工厂的综合近距离放射治疗单元(IBU)包括一个L臂,C臂等中心运动系统,该系统配有X射线管和荧光透视成像仪。临床上,此单元用于生成倾斜,前后和侧面图像,以便进行简单的治疗计划和剂量处方。肿瘤学家强烈希望拥有体积数据,以更好地确定目标区域和处于危险中的器官的三维剂量分布(剂量-体积直方图)。将患者前后移动到CT上会给患者带来巨大的压力,使器官和治疗涂药器大量运动,并增加了患者治疗的时间。我们建议将IBU成像系统与数字断层合成一起使用,以生成体量患者数据,这些数据可用于改善治疗计划并总体上减少治疗时间。初始图像数据集将在由真实骨骼和等效组织材料组成的类似人​​体模型的有限弧线上获取。近距离放射治疗涂药器将被合并到一个模型中以进行可视化。数字断层合成将用于生成此幻像设置的体积图像。将目视检查该体积图像集,以确定将来将这些类型的图像合并到近距离放射治疗计划中的可行性。我们得出的结论是,使用断层合成重建技术的初始图像显示出很大的希望,并预示着未来的工作。

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