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各向异性的脑血管结构导致在利用动态磁敏感对比磁共振成像测量脑血流和血容量时出现方向依赖性。

Anisotropic cerebral vascular architecture causes orientation dependency in cerebral blood flow and volume measured with dynamic susceptibility contrast magnetic resonance imaging.

作者信息

Hernández-Torres Enedino, Kassner Nora, Forkert Nils Daniel, Wei Luxi, Wiggermann Vanessa, Daemen Madeleine, Machan Lindsay, Traboulsee Anthony, Li David, Rauscher Alexander

机构信息

1 Department of Pediatrics, Division of Neurology, University of British Columbia, Vancouver, Canada.

2 UBC MRI Research Centre, University of British Columbia, Vancouver, Canada.

出版信息

J Cereb Blood Flow Metab. 2017 Mar;37(3):1108-1119. doi: 10.1177/0271678X16653134. Epub 2016 Jul 21.

Abstract

Measurements of cerebral perfusion using dynamic susceptibility contrast magnetic resonance imaging rely on the assumption of isotropic vascular architecture. However, a considerable fraction of vessels runs in parallel with white matter tracts. Here, we investigate the effects of tissue orientation on dynamic susceptibility contrast magnetic resonance imaging. Tissue orientation was measured using diffusion tensor imaging and dynamic susceptibility contrast was performed with gradient echo planar imaging. Perfusion parameters and the raw dynamic susceptibility contrast signals were correlated with tissue orientation. Additionally, numerical simulations were performed for a range of vascular volumes of both the isotropic vascular bed and anisotropic vessel components, as well as for a range of contrast agent concentrations. The effect of the contrast agent was much larger in white matter tissue perpendicular to the main magnetic field compared to white matter parallel to the main magnetic field. In addition, cerebral blood flow and cerebral blood volume were affected in the same way with angle-dependent variations of up to 130%. Mean transit time and time to maximum of the residual curve exhibited weak orientation dependency of 10%. Numerical simulations agreed with the measured data, showing that one-third of the white matter vascular volume is comprised of vessels running in parallel with the fibre tracts.

摘要

使用动态磁敏感对比磁共振成像测量脑灌注依赖于各向同性血管结构的假设。然而,相当一部分血管与白质束平行排列。在此,我们研究组织取向对动态磁敏感对比磁共振成像的影响。使用扩散张量成像测量组织取向,并采用梯度回波平面成像进行动态磁敏感对比成像。灌注参数和原始动态磁敏感对比信号与组织取向相关。此外,针对各向同性血管床和各向异性血管成分的一系列血管体积以及一系列造影剂浓度进行了数值模拟。与平行于主磁场的白质相比,垂直于主磁场的白质组织中造影剂的影响要大得多。此外,脑血流量和脑血容量受到同样的影响,角度依赖性变化高达130%。平均通过时间和残余曲线的峰值时间表现出10%的弱取向依赖性。数值模拟与测量数据一致,表明三分之一的白质血管体积由与纤维束平行排列的血管组成。

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3
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