Dynamic targeting image-guided radiotherapy

被引:47
作者
Huntzinger, C
Munro, P
Johnson, S
Miettinen, M
Zankowski, C
Ahlstrom, G
Glettig, R
Filliberti, R
Kaissl, W
Kamber, M
Amstutz, M
Bouchet, L
Klebanov, D
Mostafavi, H
Stark, R
机构
[1] Varian Med Syst, Palo Alto, CA 94304 USA
[2] Varian Med Syst, Baden, Switzerland
[3] Varian Med Syst, Holliston, MA USA
[4] Varian Med Syst, Crawley, England
[5] Varian Med Syst, Mountain View, CA USA
关键词
IGRT; image-guided radiotherapy; CBCT; cone beam CT; IMRT; intensity modulated radiotherapy; OBI; On-Board Imager;
D O I
10.1016/j.meddos.2005.12.014
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
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 tomogaphy (CT) simulation, treatment planning, plan verification, patient setup verification and correction, delivery, and quality assurance. The technology and capability of the Dynamic Targeting (TM) IGRT system developed by Varian Medical Systems is presented. The core of this system is a Clinac((R)) or Trilogy (TM) accelerator equipped with a gantry-mounted imaging system known as the On-Board Imager (TM) (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 (TM) 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. (c) 2006 American Association of Medical Dosimetrists.
引用
收藏
页码:113 / 125
页数:13
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