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7T 定量磁化率图的高分辨率静脉脑脉管系统图谱。

High resolution atlas of the venous brain vasculature from 7 T quantitative susceptibility maps.

机构信息

Department of Physics, Concordia University, 1455 Boulevard de Maisonneuve O, Montreal, QC, H3G 1M8, Canada.

Universität Stuttgart, Stuttgart, Germany.

出版信息

Brain Struct Funct. 2019 Sep;224(7):2467-2485. doi: 10.1007/s00429-019-01919-4. Epub 2019 Jul 5.

Abstract

The vascular organization of the human brain can determine neurological and neurophysiological functions, yet thus far it has not been comprehensively mapped. Aging and diseases such as dementia are known to be associated with changes to the vasculature and normative data could help detect these vascular changes in neuroimaging studies. Furthermore, given the well-known impact of venous vessels on the blood oxygen level dependent (BOLD) signal, information about the common location of veins could help detect biases in existing datasets. In this work, a quantitative atlas of the venous vasculature using quantitative susceptibility maps (QSM) acquired with a 0.6-mm isotropic resolution is presented. The Venous Neuroanatomy (VENAT) atlas was created from 5 repeated 7 Tesla MRI measurements in young and healthy volunteers (n = 20, 10 females, mean age = 25.1 ± 2.5 years) using a two-step registration method on 3D segmentations of the venous vasculature. This cerebral vein atlas includes the average vessel location, diameter (mean: 0.84 ± 0.33 mm) and curvature (0.11 ± 0.05 mm) from all participants and provides an in vivo measure of the angio-architectonic organization of the human brain and its variability. This atlas can be used as a basis to understand changes in the vasculature during aging and neurodegeneration, as well as vascular and physiological effects in neuroimaging.

摘要

人类大脑的血管组织可以决定神经和神经生理功能,但迄今为止,它尚未被全面绘制。众所周知,衰老和痴呆等疾病与血管变化有关,规范数据可以帮助在神经影像学研究中检测到这些血管变化。此外,鉴于静脉血管对血氧水平依赖(BOLD)信号的明显影响,有关静脉常见位置的信息可以帮助检测现有数据集中的偏差。在这项工作中,使用具有 0.6 毫米各向同性分辨率的定量磁化率图(QSM)呈现了静脉血管的定量图谱。静脉神经解剖(VENAT)图谱是通过两步注册方法在年轻健康志愿者的 5 次重复 7 特斯拉 MRI 测量(n=20,女性 10 名,平均年龄 25.1±2.5 岁)中创建的,使用 3D 静脉血管分割。该大脑静脉图谱包括所有参与者的平均血管位置、直径(平均值:0.84±0.33 毫米)和曲率(0.11±0.05 毫米),并提供了人类大脑血管结构组织及其变异性的体内测量方法。该图谱可用作理解衰老和神经退行性变期间血管变化以及神经影像学中血管和生理影响的基础。

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