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Dynamic targeting image-guided radiotherapy.

机译:动态靶向图像引导放疗。

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Volumetric imaging and planning for 3-dimensional (3D) conformal radiotherapy and intensity-modulated radiotherapy (IMRT) have highlighted the need to the oncology community to better understand the geometric uncertainties inherent in the radiotherapy delivery process, including setup error (interfraction) as well as organ motion during treatment (intrafraction). This has ushered in the development of emerging technologies and clinical processes, collectively referred to as image-guided radiotherapy (IGRT). The goal of IGRT is to provide the tools needed to manage both inter- and intrafraction motion to improve the accuracy of treatment delivery. Like IMRT, IGRT is a process involving all steps in the radiotherapy treatment process, including patient immobilization, computed tomography (CT) simulation, treatment planning, plan verification, patient setup verification and correction, delivery, and quality assurance. The technology and capability of the Dynamic Targeting IGRT system developed by Varian Medical Systems is presented. The core of this system is a Clinac or Trilogy accelerator equipped with a gantry-mounted imaging system known as the On-Board Imager (OBI). This includes a kilovoltage (kV) x-ray source, an amorphous silicon kV digital image detector, and 2 robotic arms that independently position the kV source and imager orthogonal to the treatment beam. A similar robotic arm positions the PortalVision megavoltage (MV) portal digital image detector, allowing both to be used in concert. The system is designed to support a variety of imaging modalities. The following applications and how they fit in the overall clinical process are described: kV and MV planar radiographic imaging for patient repositioning, kV volumetric cone beam CT imaging for patient repositioning, and kV planar fluoroscopic imaging for gating verification. Achieving image-guided motion management throughout the radiation oncology process requires not just a single product, but a suite of integrated products to manipulate all patient data, including images, efficiently and effectively.
机译:3维(3D)适形放疗和强度调制放疗(IMRT)的体积成像和计划凸显了肿瘤学界需要更好地理解放疗过程中固有的几何不确定性,包括设置误差(分数)作为治疗期间的器官运动(内穿)。这迎来了新兴技术和临床过程的发展,这些技术和临床过程统称为图像引导放射治疗(IGRT)。 IGRT的目标是提供管理分数内和分数内运动所需的工具,以提高治疗交付的准确性。像IMRT一样,IGRT是一个涉及放疗治疗过程中所有步骤的过程,包括患者固定,计算机断层扫描(CT)模拟,治疗计划,计划验证,患者设置验证和纠正,交付以及质量保证。介绍了瓦里安医疗系统公司开发的动态目标IGRT系统的技术和功能。该系统的核心是Clinac或Trilogy加速器,配备有安装在机架上的成像系统,称为On-Board Imager(OBI)。这包括一个千伏(kV)X射线源,一个无定形硅kV数字图像检测器和2个机械臂,分别独立地将kV源和成像器定位为与治疗束正交。类似的机械臂将PortalVision兆电压(MV)门户数字图像检测器定位,从而可以将两者一起使用。该系统旨在支持多种成像方式。描述了以下应用及其在整个临床过程中的适用性:用于患者重新定位的kV和MV平面放射成像,用于患者重新定位的kV体积锥束CT成像以及用于门控验证的kV平面荧光镜成像。在整个放射肿瘤学过程中实现图像引导的运动管理不仅需要单个产品,还需要一套集成产品来有效地操纵包括图像在内的所有患者数据。

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