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在衰老大脑灌注成像中区分功能与结构

Separating function from structure in perfusion imaging of the aging brain.

作者信息

Asllani Iris, Habeck Christian, Borogovac Ajna, Brown Truman R, Brickman Adam M, Stern Yaakov

机构信息

Program for Imaging and Cognitive Sciences in the Department of Radiology, Columbia University, New York, New York, USA.

出版信息

Hum Brain Mapp. 2009 Sep;30(9):2927-35. doi: 10.1002/hbm.20719.

Abstract

The accuracy of cerebral blood flow (CBF) imaging in humans has been impeded by the partial volume effects (PVE), which are a consequence of the limited spatial resolution. Because of brain atrophy, PVE can be particularly problematic in imaging the elderly and can considerably overestimate the CBF difference with the young. The primary goal of this study was to separate the structural decline from the true CBF reduction in elderly. To this end, a PVE-correction algorithm was applied on the CBF images acquired with spin-echo EPI continuous arterial spin labeling MRI (voxel size = 3.4 x 3.4 x 8 mm(3)). Tissue-specific CBF images that were independent of voxels' tissue fractional volume were obtained in elderly (N = 30) and young (N = 26); mean age difference was 43 years. Globally, PVE-corrected gray matter CBF was 88.2 +/- 16.1 and 107.3 +/- 17.5 mL/100 g min(-1) in elderly and young, respectively. The largest PVE contribution was found in the frontal lobe and accounted for an additional 10% and 12% increase in the age-related CBF difference between men and women, respectively. The GM-to-WM CBF ratios were found to be on average 3.5 in elderly and 3.9 in young. Whole brain voxelwise comparisons showed marked CBF decrease in anterior cingulate (bilateral), caudate (bilateral), cingulate gyrus (bilateral), cuneus (left), inferior frontal gyrus (left), insula (left), middle frontal gyrus (left), precuneus (bilateral), prefrontal cortex (bilateral), and superior frontal gyrus (bilateral) in men and amygdala (bilateral), hypothalamus (left), hippocampus (bilateral), and middle frontal gyrus (right) in women.

摘要

人类脑血流量(CBF)成像的准确性受到部分容积效应(PVE)的阻碍,这是空间分辨率有限的结果。由于脑萎缩,PVE在老年人成像中可能特别成问题,并且可能大大高估与年轻人的CBF差异。本研究的主要目标是将老年人结构衰退与真正的CBF减少区分开来。为此,对通过自旋回波EPI连续动脉自旋标记MRI(体素大小=3.4×3.4×8 mm³)获得的CBF图像应用了PVE校正算法。在老年人(N = 30)和年轻人(N = 26)中获得了与体素组织分数体积无关的组织特异性CBF图像;平均年龄差为43岁。总体而言,经PVE校正的灰质CBF在老年人和年轻人中分别为88.2±16.1和107.3±17.5 mL/100 g min⁻¹。在额叶中发现最大的PVE贡献,分别使男性和女性与年龄相关的CBF差异额外增加10%和12%。发现老年组的灰质与白质CBF比值平均为3.5,年轻组为3.9。全脑体素水平比较显示,男性双侧前扣带回、双侧尾状核、双侧扣带回、左侧楔叶、左侧额下回、左侧岛叶、左侧额中回、双侧楔前叶、双侧前额叶皮质和双侧额上回以及女性双侧杏仁核、左侧下丘脑、双侧海马和右侧额中回的CBF显著降低。

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