Sharma Sunil, Narayanasamy Ganesh, Clarkson Richard, Chao Ming, Moros Eduardo G, Zhang Xin, Yan Yulong, Boerma Marjan, Paudel Nava, Morrill Steven, Corry Peter, Griffin Robert J
Department of Radiation Oncology, University of Arkansas for Medical Sciences, Little Rock, AR, USA.
Department of Radiation Oncology, East Carolina University, Greenville, NC, USA.
Technol Cancer Res Treat. 2017 Dec;16(6):811-818. doi: 10.1177/1533034617700558. Epub 2017 Mar 30.
To assess the quality of cone beam computed tomography images obtained by a robotic arm-based and image-guided small animal conformal radiation therapy device.
The small animal conformal radiation therapy device is equipped with a 40 to 225 kV X-ray tube mounted on a custom made gantry, a 1024 × 1024 pixels flat panel detector (200 μm resolution), a programmable 6 degrees of freedom robot for cone beam computed tomography imaging and conformal delivery of radiation doses. A series of 2-dimensional radiographic projection images were recorded in cone beam mode by placing and rotating microcomputed tomography phantoms on the "palm' of the robotic arm. Reconstructed images were studied for image quality (spatial resolution, image uniformity, computed tomography number linearity, voxel noise, and artifacts).
Geometric accuracy was measured to be 2% corresponding to 0.7 mm accuracy on a Shelley microcomputed tomography QA phantom. Qualitative resolution of reconstructed axial computed tomography slices using the resolution coils was within 200 μm. Quantitative spatial resolution was found to be 3.16 lp/mm. Uniformity of the system was measured within 34 Hounsfield unit on a QRM microcomputed tomography water phantom. Computed tomography numbers measured using the linearity plate were linear with material density ( > 0.995). Cone beam computed tomography images of the QRM multidisk phantom had minimal artifacts.
Results showed that the small animal conformal radiation therapy device is capable of producing high-quality cone beam computed tomography images for precise and conformal small animal dose delivery. With its high-caliber imaging capabilities, the small animal conformal radiation therapy device is a powerful tool for small animal research.
评估基于机器人手臂且图像引导的小动物适形放射治疗设备所获取的锥形束计算机断层扫描(CBCT)图像的质量。
该小动物适形放射治疗设备配备有一个安装在定制机架上的40至225 kV X射线管、一个1024×1024像素的平板探测器(分辨率为200μm)、一个用于锥形束计算机断层扫描成像和适形放射剂量递送的可编程六自由度机器人。通过将微型计算机断层扫描体模放置在机器人手臂的“手掌”上并进行旋转,以锥形束模式记录一系列二维射线照相投影图像。对重建图像的图像质量(空间分辨率、图像均匀性、计算机断层扫描数线性、体素噪声和伪影)进行研究。
在Shelley微型计算机断层扫描质量保证体模上测得几何精度为2%,对应精度为0.7 mm。使用分辨率线圈重建的轴向计算机断层扫描切片的定性分辨率在200μm以内。定量空间分辨率为3.16 lp/mm。在QRM微型计算机断层扫描水体模上测得系统均匀性在34亨氏单位以内。使用线性度板测量的计算机断层扫描数与材料密度呈线性关系(>0.995)。QRM多盘体模的锥形束计算机断层扫描图像伪影最少。
结果表明,该小动物适形放射治疗设备能够产生高质量的锥形束计算机断层扫描图像,用于精确和适形的小动物剂量递送。凭借其高水准的成像能力,该小动物适形放射治疗设备是小动物研究的有力工具。