首页> 外文期刊>Frontiers in Physiology >Hemodynamic and Metabolic Assessment of Neonates With Punctate White Matter Lesions Using Phase-Contrast MRI and T2-Relaxation-Under-Spin-Tagging (TRUST) MRI
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Hemodynamic and Metabolic Assessment of Neonates With Punctate White Matter Lesions Using Phase-Contrast MRI and T2-Relaxation-Under-Spin-Tagging (TRUST) MRI

机译:使用相差MRI和T2松弛下自旋标记(TRUST)MRI对患有点状白色物质病变的新生儿进行血流动力学和代谢评估

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The brain's hemodynamic and metabolism of punctate white matter lesions (PWML) is poorly understood due to a scarcity of non-invasive imaging techniques. The aim of this study was to apply new MRI techniques to quantify cerebral metabolic rate of oxygen (CMRO_(2)), global cerebral blood flow (CBF), oxygen saturation fractions in venous blood (Yv) and oxygen extraction fraction (OEF) in neonates with PWML, for better understanding of the pathophysiology of PWML. Fifty-one newborns were recruited continuously, including 23 neonatal patients with PWML and 28 normal control neonates. Phase-contrast (PC) MRI and T2-Relaxation-Under-Spin-Tagging (TRUST) MRI were performed for the measurement of CBF and Yv. OEF and CMRO_(2)were calculated from the CBF and Yv values. The total maturation score (TMS) was assessed for each neonate on standard T1, 2-weighted images to evaluate cerebral maturation. The CMRO_(2), CBF, Yv, and OEF values were compared between groups, and their associations with age and TMS were evaluated. Significant differences between PWML group and control group were found in CMRO_(2)( P = 0.020), CBF ( P = 0.027), Yv (P = 0.012), OEF ( P = 0.018). After age/maturation is accounted for, Yv and OEF showed significant dependence on the groups ( P < 0.05). Newborns with PWML had lower OEF and higher Yv. CMRO_(2), CBF and brain volume were correlated with age ( P < 0.001) and TMS ( P < 0.05). It is feasible to use non-invasive MRI methods to measure cerebral oxygen supply and consumption in neonates with PWML. Newborns with PWML have lower oxygen consumption. Yv and OEF may be helpful for the diagnosis of PWML. The positive correlation between CBF and TMS, and between CMRO_(2)and TMS suggested that as myelination progresses, the blood supply and oxygen metabolism in the brain increase to meet the escalating energy demand.
机译:由于缺乏非侵入性成像技术,人们对点状白质病灶(PWML)的大脑血流动力学和代谢知之甚少。这项研究的目的是应用新的MRI技术来量化大脑中氧的新陈代谢率(CMRO_(2)),整体脑血流量(CBF),静脉血中的氧饱和度分数(Yv)和氧提取分数(OEF)。新生儿使用PWML,以更好地了解PWML的病理生理。连续招募51例新生儿,包括23例PWML新生儿患者和28例正常对照新生儿。进行了相衬(PC)MRI和T2放松下自旋标记(TRUST)MRI,以测量CBF和Yv。根据CBF和Yv值计算OEF和CMRO_(2)。在标准的T1、2加权图像上评估每个新生儿的总成熟评分(TMS),以评估大脑成熟度。比较各组之间的CMRO_(2),CBF,Yv和OEF值,并评估它们与年龄和TMS的关联。 PWML组与对照组之间的显着差异在CMRO_(2)(P = 0.020),CBF(P = 0.027),Yv(P = 0.012),OEF(P = 0.018)中发现。在考虑了年龄/成熟度之后,Yv和OEF表现出对组的显着依赖性(P <0.05)。患有PWML的新生儿的OEF较低,Yv较高。 CMRO_(2),脑血流量和脑容量与年龄(P <0.001)和TMS(P <0.05)相关。使用非侵入性MRI方法来测量PWML新生儿的脑供氧量和消耗量是可行的。患有PWML的新生儿耗氧量较低。 Yv和OEF可能有助于诊断PWML。 CBF与TMS之间以及CMRO_(2)与TMS之间存在正相关关系,表明随着髓鞘形成的进行,大脑中的血液供应和氧代谢会增加,以满足不断增长的能量需求。

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