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Use of quantitative magnetic resonance angiography to stratify stroke risk in symptomatic vertebrobasilar disease.使用定量磁共振血管造影对有症状的椎基底动脉疾病的中风风险进行分层。
Stroke. 2005 Jun;36(6):1140-5. doi: 10.1161/01.STR.0000166195.63276.7c. Epub 2005 May 12.
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Distribution of cerebral blood flow in the circle of Willis.Willis环的脑血流分布。
Radiology. 2005 Apr;235(1):184-9. doi: 10.1148/radiol.2351031799. Epub 2005 Mar 4.
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High total cerebral blood flow is associated with a decrease of white matter lesions.高全脑血流量与白质病变减少有关。
J Neurol. 2004 Dec;251(12):1481-5. doi: 10.1007/s00415-004-0569-y.
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A patient-specific computer model to predict outcomes of the balloon occlusion test.一种用于预测球囊闭塞试验结果的患者特异性计算机模型。
J Neurosurg. 2004 Dec;101(6):977-88. doi: 10.3171/jns.2004.101.6.0977.
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Abnormal intravoxel cerebral blood flow heterogeneity in human ischemic stroke determined by dynamic susceptibility contrast magnetic resonance imaging.通过动态磁敏感对比磁共振成像测定的人类缺血性卒中脑内体素间脑血流异质性异常。
Stroke. 2005 Jan;36(1):44-9. doi: 10.1161/01.STR.0000150495.96471.95. Epub 2004 Dec 2.
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Extracranial-intracranial arterial bypass surgery improves total brain blood supply in selected symptomatic patients with unilateral internal carotid artery occlusion and insufficient collateralization.颅外-颅内动脉搭桥手术可改善部分有症状的单侧颈内动脉闭塞且侧支循环不足患者的全脑血液供应。
Neuroradiology. 2004 Sep;46(9):730-7. doi: 10.1007/s00234-004-1252-9.
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Phase-contrast magnetic resonance imaging measurements of cerebral autoregulation with a breath-hold challenge: a feasibility study.屏气激发下脑自动调节的相位对比磁共振成像测量:一项可行性研究。
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Acute ischemic stroke: predictive value of 2D phase-contrast MR angiography--serial study with combined diffusion and perfusion MR imaging.急性缺血性卒中:二维相位对比磁共振血管造影的预测价值——联合扩散加权成像与灌注加权成像的系列研究
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Cerebral physiology of the aged.老年人的脑生理学
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使用定量磁共振血管造影术测量局部脑血流量。

Regional cerebral blood flow using quantitative MR angiography.

作者信息

Zhao M, Amin-Hanjani S, Ruland S, Curcio A P, Ostergren L, Charbel F T

机构信息

Department of Neurosurgery, University of Illinois at Chicago, IL 60612-5970, USA.

出版信息

AJNR Am J Neuroradiol. 2007 Sep;28(8):1470-3. doi: 10.3174/ajnr.A0582.

DOI:10.3174/ajnr.A0582
PMID:17846193
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8134363/
Abstract

BACKGROUND AND PURPOSE

We sought to derive regional cerebral blood flow using vessel flows from quantitative MR angiography (qMRA).

MATERIALS AND METHODS

Flow rates in the 15 major cerebral arteries were measured on retrospectively gated fast 2D phase-contrast MR angiography obtained in 83 healthy adult volunteers (age range, 24-74 years; mean, 42 years). The arterial network of the brain was partitioned into 12 different regions, in which flows were calculated from the measured flows of the 15 cerebral arteries.

RESULTS

The mean flows of the 15 arteries and the 12 regions were calculated. The mean total cranial flow and the mean total cerebral blood flow were 949 +/- 158 mL/min and 695 +/- 113 mL/min, respectively. The mean regional flows for the anterior and posterior circulation were 483 +/- 87 mL/min and 212 +/- 34 mL/min, respectively. The relative contributions of the flows in the 11 regions to their parent regions were obtained. The mean flows in the individual arteries and the regions with age were also calculated. The mean flows for the female group were significantly lower than those for the male group (P < .001) for the 2 common carotids and the cranial circulation and left/right extracranial circulation. However, the intracranial circulation was not different between sexes.

CONCLUSIONS

The 12 regions in the cerebral circulation were identified and formed into a partition tree, and the mean regional flow for each region was determined using vessel flows from qMRA.

摘要

背景与目的

我们试图通过定量磁共振血管造影(qMRA)中的血管血流来推导局部脑血流量。

材料与方法

在83名健康成年志愿者(年龄范围24 - 74岁;平均42岁)中,对回顾性门控快速二维相位对比磁共振血管造影测量的15条主要脑动脉的血流速度进行测量。将脑动脉网络划分为12个不同区域,根据15条脑动脉的测量血流计算各区域的血流。

结果

计算了15条动脉和12个区域的平均血流。平均总颅血流量和平均总脑血流量分别为949±158 mL/分钟和695±113 mL/分钟。前循环和后循环的平均区域血流分别为483±87 mL/分钟和212±34 mL/分钟。得出了11个区域血流对其所属区域的相对贡献。还计算了各动脉和各区域血流随年龄的变化。对于双侧颈总动脉、颅循环以及左右颅外循环,女性组的平均血流显著低于男性组(P <.001)。然而,两性之间的颅内循环并无差异。

结论

确定了脑循环中的12个区域并形成一个分区树,利用qMRA中的血管血流确定了每个区域的平均区域血流。