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PETPVE12:一种用于脑正电子发射断层显像(PET)中部分容积效应校正的统计参数映射(SPM)工具包——在使用AV45-PET淀粉样蛋白成像中的应用

PETPVE12: an SPM toolbox for Partial Volume Effects correction in brain PET - Application to amyloid imaging with AV45-PET.

作者信息

Gonzalez-Escamilla Gabriel, Lange Catharina, Teipel Stefan, Buchert Ralph, Grothe Michel J

机构信息

German Center for Neurodegenerative Diseases (DZNE) - Rostock/Greifswald, Rostock, Germany.

Department of Nuclear Medicine, Charité - Universitätsmedizin Berlin, Berlin, Germany.

出版信息

Neuroimage. 2017 Feb 15;147:669-677. doi: 10.1016/j.neuroimage.2016.12.077. Epub 2016 Dec 28.

Abstract

Positron emission tomography (PET) allows detecting molecular brain changes in vivo. However, the accuracy of PET is limited by partial volume effects (PVE) that affects quantitative analysis and visual interpretation of the images. Although PVE-correction methods have been shown to effectively increase the correspondence of the measured signal with the true regional tracer uptake, these procedures are still not commonly applied, neither in clinical nor in research settings. Here, we present an implementation of well validated PVE-correction procedures as a SPM toolbox, PETPVE12, for automated processing. We demonstrate its utility by a comprehensive analysis of the effects of PVE-correction on amyloid-sensitive AV45-PET data from 85 patients with Alzheimer's disease (AD) and 179 cognitively normal (CN) elderly. Effects of PVE-correction on global cortical standard uptake value ratios (SUVR) and the power of diagnostic group separation were assessed for the region-wise geometric transfer matrix method (PVEc-GTM), as well as for the 3-compartmental voxel-wise "Müller-Gärtner" method (PVEc-MG). Both PVE-correction methods resulted in decreased global cortical SUVRs in the low to middle range of SUVR values, and in increased global cortical SUVRs at the high values. As a consequence, average SUVR of the CN group was reduced, whereas average SUVR of the AD group was increased by PVE-correction. These effects were also reflected in increased accuracies of group discrimination after PVEc-GTM (AUC=0.86) and PVEc-MG (AUC=0.89) compared to standard non-corrected SUVR (AUC=0.84). Voxel-wise analyses of PVEc-MG corrected data also demonstrated improved detection of regionally increased AV45 SUVR values in AD patients. These findings complement the growing evidence for a beneficial effect of PVE-correction in quantitative analysis of amyloid-sensitive PET data. The novel PETPVE12 toolbox significantly facilitates the application of PVE-correction, particularly within SPM-based processing pipelines. This is expected to foster the use of PVE-correction in brain PET for more widespread use. The toolbox is freely available at http://www.fil.ion.ucl.ac.uk/spm/ext/#PETPVE12.

摘要

正电子发射断层扫描(PET)能够在活体中检测大脑的分子变化。然而,PET的准确性受到部分容积效应(PVE)的限制,这种效应会影响图像的定量分析和视觉解读。尽管已证明PVE校正方法能有效提高测量信号与真实区域示踪剂摄取的对应性,但这些程序在临床和研究环境中仍未得到广泛应用。在此,我们展示了一种经过充分验证的PVE校正程序的实现方式,即作为一个SPM工具箱PETPVE12,用于自动化处理。我们通过对85例阿尔茨海默病(AD)患者和179例认知正常(CN)老年人的淀粉样蛋白敏感型AV45 - PET数据进行全面分析,来证明其效用。评估了PVE校正对区域几何传递矩阵法(PVEc - GTM)以及三室体素“Müller - Gärtner”法(PVEc - MG)的全脑皮质标准摄取值比率(SUVR)的影响以及诊断组分离能力。两种PVE校正方法在低至中等SUVR值范围内均导致全脑皮质SUVR降低,而在高值时全脑皮质SUVR升高。因此,PVE校正使CN组的平均SUVR降低,而AD组的平均SUVR升高。与标准未校正的SUVR(AUC = 0.84)相比,PVEc - GTM(AUC = 0.86)和PVEc - MG(AUC = 0.89)校正后组间区分的准确性也有所提高。对PVEc - MG校正数据的体素分析还表明,AD患者中区域AV45 SUVR值升高的检测得到了改善。这些发现补充了越来越多的证据,证明PVE校正对淀粉样蛋白敏感型PET数据的定量分析具有有益作用。新型PETPVE12工具箱显著促进了PVE校正的应用,特别是在基于SPM的处理流程中。这有望促进脑PET中PVE校正的更广泛应用。该工具箱可在http://www.fil.ion.ucl.ac.uk/spm/ext/#PETPVE12免费获取。

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