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部分容积效应校正改善了18F-氟代贝他苯β-淀粉样蛋白PET扫描的定量分析。

Partial-Volume Effect Correction Improves Quantitative Analysis of 18F-Florbetaben β-Amyloid PET Scans.

作者信息

Rullmann Michael, Dukart Juergen, Hoffmann Karl-Titus, Luthardt Julia, Tiepolt Solveig, Patt Marianne, Gertz Hermann-Josef, Schroeter Matthias L, Seibyl John, Schulz-Schaeffer Walter J, Sabri Osama, Barthel Henryk

机构信息

Department of Nuclear Medicine, University of Leipzig, Leipzig, Germany

LREN, Département des Neurosciences Cliniques, CHUV, Université de Lausanne, Lausanne, Switzerland Max Planck Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

出版信息

J Nucl Med. 2016 Feb;57(2):198-203. doi: 10.2967/jnumed.115.161893. Epub 2015 Nov 5.

Abstract

UNLABELLED

Neocortical atrophy reduces PET signal intensity, potentially affecting the diagnostic efficacy of β-amyloid (Aβ) brain PET imaging. This study investigated whether partial-volume effect correction (PVEC), adjusting for this atrophy bias, improves the accuracy of (18)F-florbetaben Aβ PET.

METHODS

We analyzed (18)F-florbetaben PET and MRI data obtained from 3 cohorts. The first was 10 patients with probable Alzheimer disease (AD) and 10 age-matched healthy controls (HCs), the second was 31 subjects who underwent in vivo imaging and postmortem histopathology for Aβ plaques, and the third was 5 subjects who underwent PET and MRI at baseline and 1 y later. The imaging data were coregistered and segmented. PVEC was performed using the voxel-based modified Müller-Gärtner method (PVELab, SPM8). From the PET data, regional and composite SUV ratios (SUVRs) with and without PVEC were obtained. In the MRI data, mesial temporal lobe atrophy was determined by the Scheltens mesial temporal atrophy scale and gray matter volumes by voxel-based morphometry.

RESULTS

In cohort 1, PVEC increased the effect on AD-versus-HC discrimination from a Cohen d value of 1.68 to 2.0 for composite SUVRs and from 0.04 to 1.04 for mesial temporal cortex SUVRs. The PVEC-related increase in mesial temporal cortex SUVR correlated with the Scheltens score (r = 0.84, P < 0.001), and that of composite SUVR correlated with the composite gray matter volume (r = -0.75, P < 0.001). In cohort 2, PVEC increased the correlation coefficient between mesial temporal cortex SUVR and histopathology score for Aβ plaque load from 0.28 (P = 0.09) to 0.37 (P = 0.03). In cohort 3, PVEC did not affect the composite SUVR dynamics over time for the Aβ-negative subject. This finding was in contrast to the 4 Aβ-positive subjects, in 2 of whom PVEC changed the composite SUVR dynamics.

CONCLUSION

The influence of PVEC on (18)F-florbetaben PET data is associated with the degree of brain atrophy. Thus, PVEC increases the ability of (18)F-florbetaben PET to discriminate between AD patients and HCs, to detect Aβ plaques in the atrophic mesial temporal cortex, and potentially to evaluate changes in brain Aβ load over time. As such, the use of PVEC should be considered for quantitative (18)F-florbetaben PET scans, especially in assessing patients with brain atrophy.

摘要

未标注

新皮质萎缩会降低PET信号强度,可能影响β-淀粉样蛋白(Aβ)脑PET成像的诊断效能。本研究调查了针对这种萎缩偏差进行调整的部分容积效应校正(PVEC)是否能提高(18)F-氟代贝他班Aβ PET的准确性。

方法

我们分析了从3个队列中获得的(18)F-氟代贝他班PET和MRI数据。第一个队列是10例可能患有阿尔茨海默病(AD)的患者和10例年龄匹配的健康对照(HC),第二个队列是31例接受了Aβ斑块的活体成像和死后组织病理学检查的受试者,第三个队列是5例在基线和1年后接受PET和MRI检查的受试者。对成像数据进行了配准和分割。使用基于体素的改良Müller-Gärtner方法(PVELab,SPM8)进行PVEC。从PET数据中,获得了校正和未校正PVEC的区域和复合SUV比值(SUVR)。在MRI数据中,通过Scheltens内侧颞叶萎缩量表确定内侧颞叶萎缩,并通过基于体素的形态学测量灰质体积。

结果

在队列1中,对于复合SUVR,PVEC将AD与HC鉴别诊断的效应从Cohen d值1.68提高到2.0,对于内侧颞叶皮质SUVR,从0.04提高到1.04。内侧颞叶皮质SUVR与PVEC相关的增加与Scheltens评分相关(r = 0.84,P < 0.001),复合SUVR的增加与复合灰质体积相关(r = -0.75,P < 0.001)。在队列2中,PVEC将内侧颞叶皮质SUVR与Aβ斑块负荷的组织病理学评分之间的相关系数从0.28(P = 0.09)提高到0.37(P = 0.03)。在队列3中,PVEC对Aβ阴性受试者的复合SUVR随时间的动态变化没有影响。这一发现与4例Aβ阳性受试者相反,其中2例PVEC改变了复合SUVR的动态变化。

结论

PVEC对(18)F-氟代贝他班PET数据的影响与脑萎缩程度相关。因此,PVEC提高了(18)F-氟代贝他班PET区分AD患者和HC、检测萎缩内侧颞叶皮质中Aβ斑块以及潜在评估脑Aβ负荷随时间变化的能力。因此,在进行定量(18)F-氟代贝他班PET扫描时,应考虑使用PVEC,尤其是在评估脑萎缩患者时。

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