Quantitative assessment of global cerebral metabolic rate of oxygen (CMRO2) in neonates using MRI

充氧 脑血流 胎龄 变异系数 脉搏血氧仪 人口 动脉自旋标记 医学 放松(心理学) 核医学 血流 磁共振成像 氧气 体内 心脏病学 核磁共振 内科学 麻醉 化学 放射科 生物 怀孕 物理 有机化学 生物技术 环境卫生 色谱法 遗传学
作者
Peiying Liu,Hao Huang,Nancy Rollins,Lina F. Chalak,Tina Jeon,Cathy Halovanic,Hanzhang Lu
出处
期刊:NMR in Biomedicine [Wiley]
卷期号:27 (3): 332-340 被引量:83
标识
DOI:10.1002/nbm.3067
摘要

The cerebral metabolic rate of oxygen (CMRO2) is the rate of oxygen consumption by the brain, and is thought to be a direct index of energy homeostasis and brain health. However, in vivo measurement of CMRO2 is challenging, in particular for the neonatal population, in whom conventional radiotracer methods are not applicable because of safety concerns. In this study, we propose a method to quantify global CMRO2 in neonates based on arteriovenous differences in oxygen content, and employ separate measurements of oxygenation and cerebral blood flow (CBF) parameters. Specifically, arterial and venous oxygenation levels were determined with pulse oximetry and the novel T2 relaxation under spin tagging (TRUST) MRI, respectively. Global CBF was measured with phase contrast (PC) flow velocity MRI. The proposed method was implemented on a standard 3-T MRI scanner without the need for any exogenous tracers, and the total scan duration was less than 5 min. We demonstrated the feasibility of this method in 12 healthy neonates within an age range of 35–42 gestational weeks. CMRO2 values were successfully obtained from 10 neonates. It was found that the average CMRO2 in this age range was 38.3 ± 17.7 µmol/100 g/min and was positively correlated with age (p = 0.007; slope, 5.2 µmol/100 g/min per week), although the highest CMRO2 value in this age range was still less than half of the adult level. Test–retest studies showed a coefficient of variation of 5.8 ± 2.2% between repeated CMRO2 measurements. In addition, given the highly variable blood flow velocity within this age range, it is recommended that the TRUST labeling thickness and position should be determined on a subject-by-subject basis, and an automatic algorithm was developed for this purpose. Although this method provides a global CMRO2 measure only, the clinical significance of an energy consumption marker and the convenience of this technique may make it a useful tool in the functional assessment of the neonatal population. Copyright © 2014 John Wiley & Sons, Ltd.
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