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采用 [15O]H2O PET 对脑血流出现时间进行成像,用于计算正确的 CBF。

Imaging of the appearance time of cerebral blood using [15O]H2O PET for the computation of correct CBF.

机构信息

Department of Medical Physics, Faculty of Medicine, Kagawa University, 1750-1 Ikenobe, Miki-cho, Kita-gun, Kagawa 761-0793, Japan.

出版信息

EJNMMI Res. 2013 May 23;3(1):41. doi: 10.1186/2191-219X-3-41.

Abstract

BACKGROUND

Quantification of cerebral blood flow (CBF) is important for the understanding of normal and pathologic brain physiology. Positron emission tomography (PET) with H215O (or C15O2) can quantify CBF and apply kinetic analyses, including autoradiography (ARG) and the basis function methods (BFM). These approaches, however, are sensitive to input function errors such as the appearance time of cerebral blood (ATB), known as the delay time. We estimated brain ATB in an image-based fashion to correct CBF by accounting for differences in computed CBF values using three different analyses: ARG and BFM with and without fixing the partition coefficient.

METHODS

Subject groups included those with no significant disorders, those with elevated cerebral blood volume, and those with reduced CBF. All subjects underwent PET examination, and CBF was estimated using the three analyses. The ATB was then computed from the differences of the obtained CBF values, and ATB-corrected CBF values were computed. ATB was also estimated for regions of interest (ROIs) of multiple cortical regions. The feasibility of the present method was tested in a simulation study.

RESULTS

There were no significant differences in the obtained ATB between the image- and ROI-based methods. Significantly later appearance was found in the cerebellum compared to other brain regions for all groups. In cortical regions where CBF was reduced due to occlusive lesions, the ATB was 0.2 ± 1.2 s, which was significantly delayed relative to the contralateral regions. A simulation study showed that the ATB-corrected CBF was less sensitive to errors in input function, and noise on the tissue curve did not enhance the degree of noise on ATB-corrected CBF image.

CONCLUSIONS

This study demonstrates the potential utility of visualizing the ATB in the brain, enabling the determination of CBF with less sensitivity to error in input function.

摘要

背景

量化脑血流(CBF)对于理解正常和病理脑生理非常重要。使用 H215O(或 C15O2)的正电子发射断层扫描(PET)可以量化 CBF 并应用动力学分析,包括放射性自显影(ARG)和基函数方法(BFM)。然而,这些方法对输入函数误差(如脑血流出现时间(ATB))敏感,称为延迟时间。我们以基于图像的方式估计脑 ATB,通过考虑使用三种不同分析方法计算的 CBF 值之间的差异来校正 CBF:ARG 和 BFM,同时固定和不固定分区系数。

方法

研究对象包括无明显障碍者、脑血容量升高者和 CBF 降低者。所有受试者均接受 PET 检查,并使用三种分析方法估计 CBF。然后从获得的 CBF 值差异计算 ATB,并计算 ATB 校正的 CBF 值。还对多个皮质区域的感兴趣区域(ROI)进行了 ATB 估计。在模拟研究中测试了本方法的可行性。

结果

基于图像和 ROI 的方法之间获得的 ATB 没有显著差异。与其他脑区相比,所有组的小脑 ATB 出现时间明显延迟。在由于闭塞性病变导致 CBF 降低的皮质区域,ATB 为 0.2±1.2s,与对侧区域相比明显延迟。模拟研究表明,ATB 校正的 CBF 对输入函数误差的敏感性较低,组织曲线上的噪声不会增加 ATB 校正的 CBF 图像上噪声的程度。

结论

本研究表明,可视化大脑中的 ATB 具有潜在的应用价值,能够更不敏感地确定 CBF 输入函数误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56de/3664572/14f27682f6cf/2191-219X-3-41-1.jpg

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