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本文引用的文献

1
Prediction of neuromotor outcome in infants born preterm at 11 years of age using volumetric neonatal magnetic resonance imaging and neurological examinations.利用新生儿容积磁共振成像和神经学检查预测11岁早产儿的神经运动结局。
Dev Med Child Neurol. 2016 Jul;58(7):721-7. doi: 10.1111/dmcn.13030. Epub 2016 Jan 27.
2
Hemodynamic signals in fNIRS.功能近红外光谱中的血流动力学信号。
Prog Brain Res. 2016;225:153-79. doi: 10.1016/bs.pbr.2016.03.004. Epub 2016 Apr 7.
3
Nonlinear extension of a hemodynamic linear model for coherent hemodynamics spectroscopy.用于相干血液动力学光谱学的血液动力学线性模型的非线性扩展
J Theor Biol. 2016 Jan 21;389:132-45. doi: 10.1016/j.jtbi.2015.11.001. Epub 2015 Nov 10.
4
Is near-infrared spectroscopy clinically useful in the preterm infant?近红外光谱技术在早产儿临床应用中有价值吗?
Arch Dis Child Fetal Neonatal Ed. 2015 Nov;100(6):F558-61. doi: 10.1136/archdischild-2014-307919. Epub 2015 Jul 27.
5
Neuronal and vascular interactions.神经元与血管的相互作用。
Annu Rev Neurosci. 2015 Jul 8;38:25-46. doi: 10.1146/annurev-neuro-071714-033835. Epub 2015 Mar 12.
6
Quantifying the microvascular origin of BOLD-fMRI from first principles with two-photon microscopy and an oxygen-sensitive nanoprobe.利用双光子显微镜和氧敏感纳米探针从第一原理对血氧水平依赖性功能磁共振成像的微血管起源进行量化。
J Neurosci. 2015 Feb 25;35(8):3663-75. doi: 10.1523/JNEUROSCI.3555-14.2015.
7
Cortical structural abnormalities in very preterm children at 7 years of age.7岁极早产儿的皮质结构异常
Neuroimage. 2015 Apr 1;109:469-79. doi: 10.1016/j.neuroimage.2015.01.005. Epub 2015 Jan 20.
8
Resting-State Network Complexity and Magnitude Are Reduced in Prematurely Born Infants.早产儿静息态网络的复杂性和强度降低。
Cereb Cortex. 2016 Jan;26(1):322-333. doi: 10.1093/cercor/bhu251. Epub 2014 Oct 20.
9
Sensory-related neural activity regulates the structure of vascular networks in the cerebral cortex.感觉相关的神经活动调节大脑皮层血管网络的结构。
Neuron. 2014 Sep 3;83(5):1117-30. doi: 10.1016/j.neuron.2014.07.034. Epub 2014 Aug 21.
10
Coupling mechanism and significance of the BOLD signal: a status report.血氧水平依赖(BOLD)信号的耦合机制及意义:现状报告
Annu Rev Neurosci. 2014;37:161-81. doi: 10.1146/annurev-neuro-071013-014111.

使用功能近红外光谱技术测量早期大脑发育中氧合和脱氧的血红蛋白阶段。

Hemoglobin phase of oxygenation and deoxygenation in early brain development measured using fNIRS.

作者信息

Watanabe Hama, Shitara Yoshihiko, Aoki Yoshinori, Inoue Takanobu, Tsuchida Shinya, Takahashi Naoto, Taga Gentaro

机构信息

Graduate School of Education, The University of Tokyo, Tokyo 113-0033, Japan;

Department of Pediatrics, Graduate School of Medicine, The University of Tokyo, Tokyo 113-0033, Japan.

出版信息

Proc Natl Acad Sci U S A. 2017 Feb 28;114(9):E1737-E1744. doi: 10.1073/pnas.1616866114. Epub 2017 Feb 14.

DOI:10.1073/pnas.1616866114
PMID:28196885
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5338505/
Abstract

A crucial issue in neonatal medicine is the impact of preterm birth on the developmental trajectory of the brain. Although a growing number of studies have shown alterations in the structure and function of the brain in preterm-born infants, we propose a method to detect subtle differences in neurovascular and metabolic functions in neonates and infants. Functional near-infrared spectroscopy (fNIRS) was used to obtain time-averaged phase differences between spontaneous low-frequency (less than 0.1 Hz) oscillatory changes in oxygenated hemoglobin (oxy-Hb) and those in deoxygenated hemoglobin (deoxy-Hb). This phase difference was referred to as hemoglobin phase of oxygenation and deoxygenation (hPod) in the cerebral tissue of sleeping neonates and infants. We examined hPod in term, late preterm, and early preterm infants with no evidence of clinical issues and found that all groups of infants showed developmental changes in the values of hPod from an in-phase to an antiphase pattern. Comparison of hPod among the groups revealed that developmental changes in hPod in early preterm infants precede those in late preterm and term infants at term equivalent age but then, progress at a slower pace. This study suggests that hPod measured using fNIRS is sensitive to the developmental stage of the integration of circular, neurovascular, and metabolic functions in the brains of neonates and infants.

摘要

新生儿医学中的一个关键问题是早产对大脑发育轨迹的影响。尽管越来越多的研究表明早产婴儿大脑的结构和功能存在改变,但我们提出了一种方法来检测新生儿和婴儿神经血管及代谢功能的细微差异。功能性近红外光谱技术(fNIRS)用于获取氧合血红蛋白(oxy-Hb)和脱氧血红蛋白(deoxy-Hb)自发低频(小于0.1 Hz)振荡变化之间的时间平均相位差。在睡眠中的新生儿和婴儿脑组织中,这种相位差被称为氧合和脱氧血红蛋白相位(hPod)。我们对足月、晚期早产和早期早产且无临床问题迹象的婴儿进行了hPod检测,发现所有组婴儿的hPod值都呈现出从同相到反相模式的发育变化。组间hPod比较显示,早期早产婴儿的hPod发育变化在足月等效年龄时先于晚期早产和足月婴儿,但随后进展速度较慢。这项研究表明,使用fNIRS测量的hPod对新生儿和婴儿大脑中循环、神经血管和代谢功能整合的发育阶段敏感。