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Image Guided Small Animal Radiation Research Platform: Calibration of Treatment Beam Alignment

机译:图像引导的小动物辐射研究平台:治疗光束对准的校准

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摘要

Small animal research allows detailed study of biological processes, disease progression, and response to therapy, with the potential to provide a natural bridge to the clinical environment. The Small Animal Radiation Research Platform (SARRP) is a portable system for precision irradiation with beam sizes down to approximately 0.5 mm and optimally planned radiation with on-board cone-beam CT (CBCT) guidance. This paper focuses on the geometric calibration of the system for high-precision irradiation. A novel technique for calibration of the treatment beam is presented, which employs an x-ray camera whose precise positioning need not be known. Using the camera system we acquired a digitally reconstructed 3D “star shot” for gantry calibration, and then developed a technique to align each beam to a common isocenter with the robotic animal positioning stages. The calibration incorporates localization by cone-beam CT guidance. Uncorrected offsets of the beams with respect to the calibration origin ranged from 0.4 mm to 5.2 mm. With corrections, these alignments can be brought to within < 1 mm. The calibration technique was used to deliver a stereotactic-like arc treatment to a phantom constructed with EBT Gafchromic films. All beams were shown to intersect at a common isocenter with a measured beam (FWHM) of approximately 1.07 mm using the 0.5 mm collimated beam. The desired positioning accuracy of the SARRP is 0.25 mm and the results indicate an accuracy of 0.2 mm. To fully realize the radiation localization capabilities of the SARRP, precise geometric calibration is required, as with any such system. The x-ray camera-based technique presented here provides a straightforward and semi-automatic method for system calibration.
机译:小动物研究允许对生物学过程,疾病进展以及对治疗的反应进行详细研究,并有可能为临床环境提供天然桥梁。小动物辐射研究平台(SARRP)是便携式系统,用于精确辐射,光束尺寸小至约0.5 mm,并在板载锥形束CT(CBCT)指导下进行最佳计划辐射。本文着重于高精度辐射系统的几何校准。提出了一种用于校准治疗束的新颖技术,该技术采用了不需要精确定位的X射线照相机。使用相机系统,我们获得了数字重建的3D“星空图”以进行龙门校准,然后开发了一种技术,可以将每个光束与机器人动物定位台对准一个共同的等角点。校准包括通过锥形束CT引导进行的定位。光束相对于校准原点的未校正偏移范围为0.4毫米至5.2毫米。进行校正后,可以将这些对齐误差控制在1 mm以内。校准技术用于对采用EBT全色薄膜制作的体模进行类似立体定向的电弧处理。显示所有光束在一个公共等角点处与使用0.5 mm准直光束的大约1.07 mm的测量光束(FWHM)相交。 SARRP的理想定位精度为0.25 mm,结果表明精度为0.2 mm。为了完全实现SARRP的辐射定位能力,与任何此类系统一样,需要精确的几何校准。此处介绍的基于X射线摄影机的技术为系统校准提供了一种直接且半自动的方法。

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