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使用平板成像器的锥束计算机断层扫描:初始性能表征

Cone-beam computed tomography with a flat-panel imager: initial performance characterization.

作者信息

Jaffray D A, Siewerdsen J H

机构信息

Department of Radiation Oncology, William Beaumont Hospital, Royal Oak, Michigan 48073, USA.

出版信息

Med Phys. 2000 Jun;27(6):1311-23. doi: 10.1118/1.599009.

Abstract

The development and performance of a system for x-ray cone-beam computed tomography (CBCT) using an indirect-detection flat-panel imager (FPI) is presented. Developed as a bench-top prototype for initial investigation of FPI-based CBCT for bone and soft-tissue localization in radiotherapy, the system provides fully three-dimensional volumetric image data from projections acquired during a single rotation. The system employs a 512 x 512 active matrix of a-Si:H thin-film transistors and photodiodes in combination with a luminescent phosphor. Tomographic imaging performance is quantified in terms of response uniformity, response linearity, voxel noise, noise-power spectrum (NPS), and modulation transfer function (MTF), each in comparison to the performance measured on a conventional CT scanner. For the geometry employed and the objects considered, response is uniform to within 2% and linear within 1%. Voxel noise, at a level of approximately 20 HU, is comparable to the conventional CT scanner. NPS and MTF results highlight the frequency-dependent transfer characteristics, confirming that the CBCT system can provide high spatial resolution and does not suffer greatly from additive noise levels. For larger objects and/or low exposures, additive noise levels must be reduced to maintain high performance. Imaging studies of a low-contrast phantom and a small animal (a euthanized rat) qualitatively demonstrate excellent soft-tissue visibility and high spatial resolution. Image quality appears comparable or superior to that of the conventional scanner. These quantitative and qualitative results clearly demonstrate the potential of CBCT systems based upon flat-panel imagers. Advances in FPI technology (e.g., improved x-ray converters and enhanced electronics) are anticipated to allow high-performance FPI-based CBCT for medical imaging. General and specific requirements of kilovoltage CBCT systems are discussed, and the applicability of FPI-based CBCT systems to tomographic localization and image-guidance for radiotherapy is considered.

摘要

本文介绍了一种使用间接探测平板成像器(FPI)的X射线锥束计算机断层扫描(CBCT)系统的开发和性能。该系统作为基于FPI的CBCT的台式原型开发,用于放射治疗中骨骼和软组织定位的初步研究,可从单次旋转过程中采集的投影提供完整的三维体图像数据。该系统采用512×512的非晶硅氢化薄膜晶体管和光电二极管有源矩阵,并结合发光磷光体。断层成像性能通过响应均匀性、响应线性、体素噪声、噪声功率谱(NPS)和调制传递函数(MTF)进行量化,并与传统CT扫描仪上测量的性能进行比较。对于所采用的几何结构和所考虑的物体,响应均匀度在2%以内,线性度在1%以内。体素噪声水平约为20 HU,与传统CT扫描仪相当。NPS和MTF结果突出了频率相关的传递特性,证实CBCT系统可以提供高空间分辨率,并且不会受到很大的附加噪声水平的影响。对于较大的物体和/或低曝光,必须降低附加噪声水平以保持高性能。对低对比度体模和小动物(一只安乐死的大鼠)的成像研究定性地证明了出色的软组织可见性和高空间分辨率。图像质量似乎与传统扫描仪相当或更优。这些定量和定性结果清楚地证明了基于平板成像器的CBCT系统的潜力。预计FPI技术的进步(例如,改进的X射线转换器和增强的电子设备)将实现用于医学成像的高性能基于FPI的CBCT。讨论了千伏CBCT系统的一般和特定要求,并考虑了基于FPI的CBCT系统在放射治疗断层定位和图像引导中的适用性。

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