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Performance comparison of high quantum efficiency and normal quantum efficiency photomultiplier tubes and position sensitive photomultiplier tubes for high resolution PET and SPECT detectors

机译:用于高分辨率PET和SPECT检测器的高量子效率和常规量子效率光电倍增管和位置敏感光电倍增管的性能比较

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Purpose: Recently, photomultiplier tubes (PMTs) and position sensitive PMTs (PSPMTs) with higher quantum efficiencies (HQE) have been developed. However, it remains unclear whether they actually improve such performances as the energy and spatial resolution for PET and SPECT detectors. Methods: The authors evaluated the quantum efficiencies (QEs) for PMTs and PSPMTs and measured the energy resolution of a 3-in. round HQE PMT combined with various scintillators and compared the results with a conventional normal quantum efficiency (NQE) PMT of the same type. The authors also measured the position and energy performance of a 2-in. square HQE PSPMT combined with scintillator blocks and compared them with a NQE PSPMT of the same size. Results: The energy resolution of the 3-in. round HQE PMT showed higher energy resolution than the NQE with all scintillators. The improvement of the energy resolution was smaller, for all measurements, than the expected value from the quantum efficiency of the PMT but was higher for the scintillators with smaller light outputs. The energy and position performance of the HQE PSPMT based block detectors showed higher position and energy performance than those with NQE. Conclusions: From these results, the authors conclude that both HQE PMT and PSPMT contribute to improve the energy and position performance for PET and SPECT detectors. Significant performance improvements will be expected in PET and SPECT systems by the use of the HQE PMTs or PSPMTs.
机译:目的:最近,开发了具有更高量子效率(HQE)的光电倍增管(PMT)和位置敏感PMT(PSPMT)。但是,尚不清楚它们是否真正改善了PET和SPECT检测器的性能和能量分辨率。方法:作者评估了PMT和PSPMT的量子效率(QE),并测量了3英寸的能量分辨率。圆形HQE PMT与各种闪烁体组合,并将结果与​​相同类型的常规正常量子效率(NQE)PMT进行比较。作者还测量了2英寸的位置和能量性能。方形HQE PSPMT与闪烁体模块组合,并将它们与相同尺寸的NQE PSPMT进行比较。结果:3英寸的能量分辨率。圆形HQE PMT的能量分辨率高于所有闪烁器的NQE。在所有测量中,能量分辨率的提高均小于来自PMT量子效率的预期值,但对于光输出较小的闪烁体,则更高。基于HQE PSPMT的块探测器的能量和位置性能比NQE更高。结论:从这些结果,作者得出结论,HQE PMT和PSPMT均有助于改善PET和SPECT检测器的能量和位置性能。通过使用HQE PMT或PSPMT,有望在PET和SPECT系统中显着提高性能。

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