论文标题

测量正电子发射断层扫描中伽马射线极化的检测器模块的优化

Optimization of detector modules for measuring gamma-ray polarization in Positron Emission Tomography

论文作者

Parashari, Siddharth, Makek, Mihael, Bokulić, Tomislav, Bosnar, Damir, Kožuljević, Ana Marija, Kuncic, Zdenka, Žugec, Petar

论文摘要

在正电子发射断层扫描(PET)中检测$γ$ - 射线极化是一种未开发的功能,可以用作提高此成像方式中信噪比比率的附加手柄。 $γ$极化与康普顿散射过程中的方位角角度有关,因此,an灭量的极性相关性转化为在两者都经历了康普顿散射的事件中方位角的相关性。这导致了真实事件的方位角差异的调制分布,而背景事件则缺乏此调制。我们提出了一项基于闪烁体矩阵和硅光电层流的五个检测器构型的全面实验研究,适用于测量方位角调制。该模块由gagg:ce或lyso:尺寸的ce像素从1.9x1.9x20 $ \ mathrm {mm^3} $到3x3x20 $ \ mathrm {mmm^3} $不等。模块的独特特征是,它们可以通过检测单个检测器层中的后坐电电子和散射的伽玛来重建康普顿散射,从而简化了对较大系统的扩展。根据事件选择标准,所有配置的幅度调制都可以清楚地观察到从$ 0.26 \ pm0.01 $到$ 0.34 \ pm 0.02 $的所有配置中,具体取决于事件选择标准。结果表明,较细的检测器分割在实现更高的调制因子方面起着领先作用。

Detection of $γ$-ray polarization in Positron Emission Tomography (PET) is as yet an unexploited feature that could be used as an additional handle to improve signal-to-background ratio in this imaging modality. The $γ$ polarization is related to the azimuthal angle in the Compton scattering process, so the initial correlation of polarizations of the annihilation quanta translates to the correlation of the azimuthal angles in events where both annihilation photons undergo Compton scattering. This results in a modulated distribution of the azimuthal angle difference for true events, while this modulation is lacking for the background events. We present a comprehensive experimental study of five detector configurations based on scintillator matrices and silicon photomultipliers, suitable for measuring the azimuthal modulation. The modules consist of either GaGG:Ce or LYSO:Ce pixels with sizes varying from 1.9x1.9x20 $\mathrm{mm^3}$ to 3x3x20 $\mathrm{mm^3}$. The distinctive feature of the modules is that they can reconstruct the Compton scattering by detecting the recoil electron and the scattered gamma in a single detector layer, which simplifies extension to larger systems. The amplitude modulation of the azimuthal angles' difference is clearly observable in all configurations ranging from $0.26\pm0.01$ to $0.34\pm 0.02$ depending on the event selection criteria. The results suggest that finer detector segmentation plays a leading role in achieving higher modulation factors.

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