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早产儿和足月产 7-10 日龄羔羊体感刺激时的脑血流动力学反应:直接同步加速器微血管造影评估。

Cerebral haemodynamic response to somatosensory stimulation in preterm lambs and 7-10-day old lambs born at term: Direct synchrotron microangiography assessment.

机构信息

The Ritchie Centre, The Hudson Institute of Medical Research, Melbourne, Australia.

Department of Paediatrics, Monash University, Melbourne, Australia.

出版信息

J Cereb Blood Flow Metab. 2022 Feb;42(2):315-328. doi: 10.1177/0271678X211045848. Epub 2021 Sep 22.

DOI:10.1177/0271678X211045848
PMID:34551607
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9122524/
Abstract

Neurovascular coupling has been well-defined in the adult brain, but variable and inconsistent responses have been observed in the neonatal brain. The mechanisms that underlie functional haemodynamic responses in the developing brain are unknown. Synchrotron radiation (SR) microangiography enables high-resolution imaging of the cerebral vasculature. We exploited SR microangiography to investigate the microvascular changes underlying the cerebral haemodynamic response in preterm (n = 7) and 7-10-day old term lambs (n = 4), following median nerve stimulation of 1.8, 4.8 and 7.8 sec durations.Increasing durations of somatosensory stimulation significantly increased the number of cortical microvessels of ≤200 µm diameter in 7-10-day old term lambs (p < 0.05) but not preterm lambs where, in contrast, stimulation increased the diameter of cerebral microvessels with a baseline diameter of ≤200 µm. Preterm lambs demonstrated positive functional responses with increased oxyhaemoglobin measured by near infrared spectroscopy, while 7-10-day old term lambs demonstrated both positive and negative responses. Our findings suggest the vascular mechanisms underlying the functional haemodynamic response differ between the preterm and 7-10-day old term brain. The preterm brain depends on vasodilatation of microvessels without recruitment of additional vessels, suggesting a limited capacity to mount higher cerebral haemodynamic responses when faced with prolonged or stronger neural stimulation.

摘要

神经血管耦联在成人脑中已经得到了很好的定义,但在新生儿脑中观察到的反应是可变的和不一致的。在发育中的大脑中,功能血液动力学反应的基础机制尚不清楚。同步辐射(SR)微血管成像能够高分辨率地成像脑血管。我们利用 SR 微血管成像来研究早产儿(n=7)和 7-10 天大的足月羔羊(n=4)在接受正中神经刺激 1.8、4.8 和 7.8 秒后,大脑血液动力学反应下的微血管变化。随着体感刺激持续时间的增加,7-10 天大的足月羔羊大脑皮质中直径≤200μm 的微血管数量显著增加(p<0.05),但早产儿则相反,刺激增加了基底直径≤200μm 的脑微血管的直径。早产儿表现出功能性正反应,通过近红外光谱测量到氧合血红蛋白增加,而 7-10 天大的足月羔羊则表现出正反应和负反应。我们的发现表明,在早产儿和 7-10 天大的足月脑中,功能血液动力学反应的血管机制不同。早产儿的大脑依赖于微血管的扩张,而不依赖于额外血管的募集,这表明在面对延长或更强的神经刺激时,其大脑血液动力学反应的能力有限。

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本文引用的文献

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The ARRIVE guidelines 2.0: updated guidelines for reporting animal research.《ARRIVE指南2.0:报告动物研究的更新指南》
BMJ Open Sci. 2020 Jul 20;4(1):e100115. doi: 10.1136/bmjos-2020-100115.
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The cerebral haemodynamic response to somatosensory stimulation in preterm newborn lambs is reduced with dopamine or dobutamine infusion.早产儿羊的体感刺激的脑血流动力学反应随着多巴胺或多巴酚丁胺输注而降低。
Exp Neurol. 2021 Jul;341:113687. doi: 10.1016/j.expneurol.2021.113687. Epub 2021 Mar 10.
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Increased peak end-expiratory pressure in ventilated preterm lambs changes cerebral microvascular perfusion: direct synchrotron microangiography assessment.通气早产儿的呼气末峰压增加改变脑微血管灌注:直接同步加速器微血管造影评估。
J Appl Physiol (1985). 2020 Nov 1;129(5):1075-1084. doi: 10.1152/japplphysiol.00652.2020. Epub 2020 Sep 10.
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Oxidative Stress as a Primary Risk Factor for Brain Damage in Preterm Newborns.氧化应激作为早产儿脑损伤的主要危险因素
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