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正电子发射断层扫描(PET)中三重符合事件的模拟。

Simulation of triple coincidences in PET.

作者信息

Cal-González J, Lage E, Herranz E, Vicente E, Udias J M, Moore S C, Park M-A, Dave S R, Parot V, Herraiz J L

机构信息

Grupo de Física Nuclear, Dpto. de Física Atómica, Molecular y Nuclear, Universidad Complutense de Madrid, CEI Moncloa, Spain.

出版信息

Phys Med Biol. 2015 Jan 7;60(1):117-36. doi: 10.1088/0031-9155/60/1/117. Epub 2014 Dec 5.

Abstract

Although current PET scanners are designed and optimized to detect double coincidence events, there is a significant amount of triple coincidences in any PET acquisition. Triple coincidences may arise from causes such as: inter-detector scatter (IDS), random triple interactions (RT), or the detection of prompt gamma rays in coincidence with annihilation photons when non-pure positron-emitting radionuclides are used (β(+)γ events). Depending on the data acquisition settings of the PET scanner, these triple events are discarded or processed as a set of double coincidences if the energy of the three detected events is within the scanner's energy window. This latter option introduces noise in the data, as at most, only one of the possible lines-of-response defined by triple interactions corresponds to the line along which the decay occurred. Several novel works have pointed out the possibility of using triple events to increase the sensitivity of PET scanners or to expand PET imaging capabilities by allowing differentiation between radiotracers labeled with non-pure and pure positron-emitting radionuclides. In this work, we extended the Monte Carlo simulator PeneloPET to assess the proportion of triple coincidences in PET acquisitions and to evaluate their possible applications. We validated the results of the simulator against experimental data acquired with a modified version of a commercial preclinical PET/CT scanner, which was enabled to acquire and process triple-coincidence events. We used as figures of merit the energy spectra for double and triple coincidences and the triples-to-doubles ratio for different energy windows and radionuclides. After validation, the simulator was used to predict the relative quantity of triple-coincidence events in two clinical scanners assuming different acquisition settings. Good agreement between simulations and preclinical experiments was found, with differences below 10% for most of the observables considered. For clinical scanners and pure positron emitters, we found that around 10% of the processed double events come from triple coincidences, increasing this ratio substantially for non-pure emitters (around 25% for (124)I and > 50% for (86)Y). For radiotracers labeled with (18)F we found that the relative quantity of IDS events in standard acquisitions is around 18% for the preclinical scanner and between 14 and 22% for the clinical scanners. For non-pure positron emitters like (124)I, we found a β(+)γ triples-to-doubles ratio of 2.5% in the preclinical scanner and of up to 4% in the clinical scanners.

摘要

尽管当前的正电子发射断层扫描(PET)扫描仪是为检测双符合事件而设计和优化的,但在任何PET采集过程中都会出现大量的三符合事件。三符合事件可能由以下原因引起:探测器间散射(IDS)、随机三相互作用(RT),或者在使用非纯正电子发射放射性核素时(β(+)γ事件),与湮灭光子同时探测到瞬发γ射线。根据PET扫描仪的数据采集设置,如果三个探测事件的能量在扫描仪的能量窗口内,这些三事件将被丢弃或作为一组双符合事件进行处理。后一种选择会在数据中引入噪声,因为在最多情况下,由三相互作用定义的可能响应线中只有一条对应于衰变发生的线。一些新的研究指出了利用三事件来提高PET扫描仪的灵敏度或通过区分标记有非纯和纯正电子发射放射性核素的放射性示踪剂来扩展PET成像能力的可能性。在这项工作中,我们扩展了蒙特卡罗模拟器PeneloPET,以评估PET采集中三符合事件的比例,并评估它们的可能应用。我们针对使用商业临床前PET/CT扫描仪的修改版本采集的实验数据验证了模拟器的结果,该修改版本能够采集和处理三符合事件。我们将双符合和三符合的能谱以及不同能量窗口和放射性核素的三比双比率用作品质因数。验证后,该模拟器用于预测两台临床扫描仪在假设不同采集设置下三符合事件的相对数量。发现模拟结果与临床前实验结果吻合良好,对于大多数考虑的可观测量,差异低于10%。对于临床扫描仪和纯正电子发射体,我们发现约10%的已处理双事件来自三符合事件,对于非纯发射体,这一比例大幅增加((124)I约为25%,(86)Y大于50%)。对于标记有(18)F的放射性示踪剂,我们发现临床前扫描仪在标准采集中IDS事件的相对数量约为18%,临床扫描仪为14%至22%。对于像(124)I这样的非纯正电子发射体,我们发现临床前扫描仪中β(+)γ三比双比率为

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