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Study of a high resolution, 3-D positioning cross-strip Cadmium Zinc Telluride detector for PET

机译:高分辨率,3-D定位宠物碲化镉磷酸酯检测器的研究

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As a part of our teams’ efforts in developing ultra-high resolution PET systems, this paper investigates the performance of 1 mm resolution Cadmium Zinc Telluride (CZT) detectors capable of positioning the 3-D coordinates of individual 511 keV photon interactions. The detectors are 40 mm × 40 mm × 5 mm monolithic CZT crystals that employ a novel cross-strip readout with interspersed steering electrodes to obtain high spatial and energy resolution. The study found the best-case single anode FWHM energy resolution of 2.7±0.2% at 511 keV, and neighborsummed FWHM energy resolution of approximately 4.64±0.35% at 511 keV. Improved resolution is expected with properly shielded front-end electronics. Measurements made using a collimated beam established the efficacy of the steering electrodes in facilitating full charge collection across anodes, as well as a spatial resolution of 1 mm in the direction perpendicular to the electrode planes. Finally, measurements based on coincidence electronic collimation demonstrated a spatial resolution of 1 mm transverse to the anodes -as expected from the 1 mm anode pitch. These findings indicate that the CZT-based detector concept has excellent performance and shows great promise for a high resolution PET system.
机译:作为我们团队开发超高分辨率宠物系统的努力的一部分,本文研究了能够定位单个511keV光子相互作用的3-D坐标的1mm分辨率镉碲化镉(CZT)探测器的性能。探测器是40mm×40mm×5mm的单片CZT晶体,其采用具有孔的转向电极的新型交叉条读出,以获得高空间和能量分辨率。该研究发现,最佳单阳极FWHM能量分辨率为2.7±0.2%,在511 keV,在511 keV下的最高FWHM能量分辨率约为4.64±0.35%。预期改进的分辨率采用正确屏蔽的前端电子设备。使用准直光束制造的测量建立了转向电极在促进阳极上的完全电荷收集的功效,以及在垂直于电极平面的方向上的1mm的空间分辨率。最后,基于重合电子准直的测量表明,从1mm阳极间距的预期,横向于阳极横向阳极的空间分辨率。这些发现表明基于CZT的探测器概念具有优异的性能,并且对高分辨率PET系统表示了很大的承诺。

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