首页> 外文期刊>Physics in medicine and biology. >Design study of a high-resolution breast-dedicated PET system built from cadmium zinc telluride detectors.
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Design study of a high-resolution breast-dedicated PET system built from cadmium zinc telluride detectors.

机译:由碲化镉锌检测器构建的高分辨率乳房专用PET系统的设计研究。

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We studied the performance of a dual-panel positron emission tomography (PET) camera dedicated to breast cancer imaging using Monte Carlo simulation. The proposed system consists of two 4 cm thick 12 x 15 cm(2) area cadmium zinc telluride (CZT) panels with adjustable separation, which can be put in close proximity to the breast and/or axillary nodes. Unique characteristics distinguishing the proposed system from previous efforts in breast-dedicated PET instrumentation are the deployment of CZT detectors with superior spatial and energy resolution, using a cross-strip electrode readout scheme to enable 3D positioning of individual photon interaction coordinates in the CZT, which includes directly measured photon depth-of-interaction (DOI), and arranging the detector slabs edge-on with respect to incoming 511 keV photons for high photon sensitivity. The simulation results show that the proposed CZT dual-panel PET system is able to achieve superior performance in terms of photon sensitivity, noise equivalent count rate, spatial resolution and lesion visualization. The proposed system is expected to achieve approximately 32% photon sensitivity for a point source at the center and a 4 cm panel separation. For a simplified breast phantom adjacent to heart and torso compartments, the peak noise equivalent count (NEC) rate is predicted to be approximately 94.2 kcts s(-1) (breast volume: 720 cm(3) and activity concentration: 3.7 kBq cm(-3)) for a approximately 10% energy window around 511 keV and approximately 8 ns coincidence time window. The system achieves 1 mm intrinsic spatial resolution anywhere between the two panels with a 4 cm panel separation if the detectors have DOI resolution less than 2 mm. For a 3 mm DOI resolution, the system exhibits excellent sphere resolution uniformity (sigma(rms)/mean) < or = 10%) across a 4 cm width FOV. Simulation results indicate that the system exhibits superior hot sphere visualization and is expected to visualize 2 mm diameter spheres with a 5:1 activity concentration ratio within roughly 7 min imaging time. Furthermore, we observe that the degree of spatial resolution degradation along the direction orthogonal to the two panels that is typical of a limited angle tomography configuration is mitigated by having high-resolution DOI capabilities that enable more accurate positioning of oblique response lines.
机译:我们使用蒙特卡洛模拟研究了专用于乳腺癌成像的双面板正电子发射断层扫描(PET)相机的性能。拟议的系统由两块4厘米厚的12 x 15 cm(2)面积的碲化镉锌(CZT)面板组成,间距可调,可以放置在靠近乳房和/或腋窝淋巴结的位置。所提出的系统与先前在乳腺专用PET仪器方面的努力不同的独特特征是,部署了具有出色空间和能量分辨率的CZT检测器,它使用交叉带电极读出方案来实现CZT中各个光子相互作用坐标的3D定位,包括直接测量的光子相互作用深度(DOI),并相对于入射的511 keV光子将检测器平板边缘朝上布置,以实现高光子灵敏度。仿真结果表明,所提出的CZT双面板PET系统在光子灵敏度,噪声当量计数率,空间分辨率和病灶可视化方面均能实现优异的性能。对于中心处的点光源和4 cm的面板间距,建议的系统有望实现约32%的光子灵敏度。对于邻近心脏和躯干区室的简化乳房幻像,预测的峰值噪声当量计数(NEC)速率约为94.2 kcts s(-1)(乳房容积:720 cm(3),活动浓度:3.7 kBq cm( -3)),在511 keV附近有大约10%的能量窗口,并且有大约8 ns的重合时间窗口。如果探测器的DOI分辨率小于2 mm,则该系统可在两个面板之间的任意位置实现1 mm的固有空间分辨率,且面板间距为4 cm。对于3 mm DOI分辨率,该系统在4 cm宽度的FOV上显示出出色的球体分辨率均匀性(sigma(rms / mean)<或= 10%)。仿真结果表明,该系统具有出色的热球可视化效果,并且有望在大约7分钟的成像时间内以5:1的活动浓度比可视化直径为2 mm的球。此外,我们观察到,具有高分辨率DOI功能可以减轻沿倾斜方向线更精确定位的高分辨率DOI的影响,从而减小了正交于两个面板的正交方向上的空间分辨率降低的程度。

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