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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Sensitivity booster for DOI-PET scanner by utilizing Compton scattering events between detector blocks
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Sensitivity booster for DOI-PET scanner by utilizing Compton scattering events between detector blocks

机译:利用检测器模块之间的康普顿散射事件,提高DOI-PET扫描仪的灵敏度

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摘要

In a conventional PET scanner, coincidence events are measured with a limited energy window for detection of photoelectric events in order to reject Compton scatter events that occur in a patient, but Compton scatter events caused in detector crystals are also rejected. Scatter events within the patient causes scatter coincidences, but inter crystal scattering (ICS) events have useful information for determining an activity distribution. Some researchers have reported the feasibility of PET scanners based on a Compton camera for tracing ICS into the detector. However, these scanners require expensive semiconductor detectors for high-energy resolution. In the Anger-type block detector, single photons interacting with multiple detectors can be obtained for each interacting position and complete information can be gotten just as for photoelectric events in the single detector. ICS events in the single detector have been used to get coincidence, but single photons interacting with multiple detectors have not been used to get coincidence. In this work, we evaluated effect of sensitivity improvement using Compton kinetics in several types of DOI-PET scanners. The proposed method promises to improve the sensitivity using coincidence events of single photons interacting with multiple detectors, which are identified as the first interaction (FI). FI estimation accuracy can be improved to determine FI validity from the correlation between Compton scatter angles calculated on the coincidence line-of-response. We simulated an animal PET scanner consisting of 42 detectors. Each detector block consists of three types of scintillator crystals (LSO, GSO and GAGG). After the simulation, coincidence events are added as information for several depth-of-interaction (DOI) resolutions. From the simulation results, we concluded the proposed method promises to improve the sensitivity considerably when effective atomic number of a scintillator is low. Also, we showed that FI estimate accuracy is improved, as DOI resolution is high.
机译:在常规的PET扫描仪中,用有限的能量窗口来测量巧合事件以检测光电事件,以便拒绝在患者中发生的康普顿散射事件,但是也拒绝了在检测器晶体中引起的康普顿散射事件。患者内部的散射事件会引起散射重合,但是晶体间散射(ICS)事件具有确定活动分布的有用信息。一些研究人员报告了基于Compton相机的PET扫描仪将ICS追踪到检测器中的可行性。但是,这些扫描仪需要昂贵的半导体检测器才能实现高能量分辨率。在昂热型块探测器中,可以为每个相互作用位置获得与多个探测器相互作用的单个光子,并且可以获得与单个探测器中的光电事件相同的完整信息。单个检测器中的ICS事件已被用于获得重合,但是与多个检测器相互作用的单个光子尚未被用于获得重合。在这项工作中,我们评估了使用康普顿动力学在几种类型的DOI-PET扫描仪中提高灵敏度的效果。所提出的方法有望通过使用单个光子与多个检测器相互作用的重合事件来提高灵敏度,这些事件被识别为首次相互作用(FI)。可以提高FI估计的准确性,以便根据在响应重合线上计算的康普顿散射角之间的相关性来确定FI有效性。我们模拟了由42个检测器组成的动物PET扫描仪。每个探测器块均由三种闪烁体晶体(LSO,GSO和GAGG)组成。模拟之后,将巧合事件添加为几种交互深度(DOI)分辨率的信息。根据仿真结果,我们得出结论,该方法有望在闪烁器的有效原子序数较低时显着提高灵敏度。此外,我们证明,由于DOI分辨率高,FI估计精度得到了提高。

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