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Towards optimal imaging with PET: an in silico feasibility study

机译:与宠物的最佳成像:AN在硅可行性研究中

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The efficacy of Positron Emission Tomography (PET) imaging relies fundamentally on the ability of the system to accurately identify true coincidence events. With existing systems, this is currently accomplished with an energy acceptance criterion followed by correction techniques to remove suspected false coincidence events. These corrections generally result in signal and contrast loss and thus limit the PET system's ability to achieve optimum image quality. A key property of annihilation radiation is that the photons are polarised with respect to each other. This polarisation correlation offers a potentially powerful discriminator, independent of energy, to accurately identify true events. In this proof of concept study, we investigate how photon polarisation information can be exploited in PET imaging by developing a method to discriminate true coincidences using the polarisation correlation of annihilation pairs. We implement this method using a Geant4 PET simulation of a GE Advance/Discovery LS system and demonstrate the potential advantages of the polarisation coincidence selection method over a standard energy criterion method. Current PET ring detectors are not capable of exploiting the polarisation correlation of the photon pairs. Compton PET systems, however are promising candidates for this application. We demonstrate the feasibility of a two-component Compton camera system in identifying true coincidences with Monte Carlo simulations. Our study demonstrates the potential of improving signal gain using polarisation, particularly for high photon emission rates. We also demonstrate the ability of the Compton camera at exploiting this polarisation correlation in PET.
机译:正电子发射断层扫描(PET)成像的功效从根本上依赖于系统准确识别真正的巧合事件的能力。利用现有系统,目前通过能量验收标准完成,然后进行校正技术以消除可疑的假巧合事件。这些校正通常导致信号和对比度损耗,从而限制PET系统实现最佳图像质量的能力。湮灭辐射的关键特性是光子相对于彼此偏振。这种偏振相关性提供了一个独立于能量的潜在强大的鉴别器,以准确地识别真实事件。在该概念研究证明中,我们研究了如何通过开发利用湮灭对的偏振相关来区分真正的巧合的方法来利用光子极化信息如何在PET成像中利用。我们使用GE Advance / Discovery LS系统的GEANT4 PET模拟来实现该方法,并通过标准能量标准方法证明极化重合选择方法的潜在优势。电流宠物环检测器不能利用光子对的偏振相关性。然而,康普顿宠物系统对此申请的候选人很有希望。我们展示了双组件康普顿相机系统在识别与蒙特卡罗模拟的真正巧合时的可行性。我们的研究表明,使用极化提高信号增益的可能性,特别是对于高光子发射率。我们还展示了Compton相机在利用PET中的偏振相关性时的能力。

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