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基于 PET 模板和 MRI 的图像处理在 C11- raclopride PET 定量分析中的比较。

Comparison of PET template-based and MRI-based image processing in the quantitative analysis of C11-raclopride PET.

机构信息

Department of Nuclear Medicine, University Hospital Zurich, Rämistrasse 100, Zurich 8091, Switzerland.

出版信息

EJNMMI Res. 2014 Jan 22;4(1):7. doi: 10.1186/2191-219X-4-7.

Abstract

BACKGROUND

Quantitative measures of 11C-raclopride receptor binding can be used as a correlate of postsynaptic D2 receptor density in the striatum, allowing 11C-raclopride positron emission tomography (PET) to be used for the differentiation of Parkinson's disease from atypical parkinsonian syndromes. Comparison with reference values is recommended to establish a reliable diagnosis. A PET template specific to raclopride may facilitate direct computation of parametric maps without the need for an additional MR scan, aiding automated image analysis.

METHODS

Sixteen healthy volunteers underwent a dynamic 11C-raclopride PET and a high-resolution T1-weighted MR scan of the brain. PET data from eight healthy subjects was processed to generate a raclopride-specific PET template normalized to standard space. Subsequently, the data processing based on the PET template was validated against the standard magnetic resonance imaging (MRI)-based method in 8 healthy subjects and 20 patients with suspected parkinsonian syndrome. Semi-quantitative image analysis was performed in Montreal Neurological Institute (MNI) and in original image space (OIS) using VOIs derived from a probabilistic brain atlas previously validated by Hammers et al. (Hum Brain Mapp, 15:165-174, 2002).

RESULTS

The striatal-to-cerebellar ratio (SCR) of 11C-raclopride uptake obtained using the PET template was in good agreement with the MRI-based image processing method, yielding a Lin's concordance coefficient of 0.87. Bland-Altman analysis showed that all measurements were within the ±1.96 standard deviation range. In all 20 patients, the PET template-based processing was successful and manual volume of interest optimization had no further impact on the diagnosis of PD in this patient group. A maximal difference of <5% was found between the measured SCR in MNI space and OIS.

CONCLUSIONS

The PET template-based method for automated quantification of postsynaptic D2 receptor density is simple to implement and facilitates rapid, robust and reliable image analysis. There was no significant difference between the SCR values obtained with either PET- or MRI-based image processing. The method presented alleviates the clinical workflow and facilitates automated image analysis.

摘要

背景

11C-racopride 受体结合的定量测量可作为纹状体中突触后 D2 受体密度的相关指标,使 11C-racopride 正电子发射断层扫描(PET)可用于区分帕金森病与非典型帕金森综合征。建议与参考值进行比较以建立可靠的诊断。特定于 racopride 的 PET 模板可促进无需额外磁共振扫描即可直接计算参数图,从而辅助自动图像分析。

方法

16 名健康志愿者接受了动态 11C-racopride PET 和大脑高分辨率 T1 加权磁共振扫描。对 8 名健康受试者的 PET 数据进行处理,以生成标准化至标准空间的 racopride 特异性 PET 模板。随后,在 8 名健康受试者和 20 名疑似帕金森综合征患者中,通过标准磁共振成像(MRI)方法验证基于 PET 模板的数据处理。使用由 Hammers 等人先前验证的概率大脑图谱(Hum Brain Mapp,15:165-174,2002)衍生的感兴趣区(VOI)在蒙特利尔神经学研究所(MNI)和原始图像空间(OIS)中进行半定量图像分析。

结果

使用 PET 模板获得的 11C-racopride 摄取的纹状体-小脑比(SCR)与 MRI 图像处理方法一致,Lin 一致性系数为 0.87。Bland-Altman 分析表明,所有测量值均在±1.96 标准差范围内。在所有 20 名患者中,基于 PET 模板的处理均成功,并且在该患者组中,手动优化感兴趣区体积对 PD 的诊断没有进一步影响。在 MNI 空间和 OIS 中测量的 SCR 之间发现最大差异<5%。

结论

用于自动量化突触后 D2 受体密度的基于 PET 模板的方法易于实施,并促进了快速,稳健和可靠的图像分析。使用基于 PET 或 MRI 的图像处理获得的 SCR 值之间没有显着差异。所提出的方法减轻了临床工作流程并促进了自动图像分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deb0/3904930/b987394d21cd/2191-219X-4-7-1.jpg

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