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功能性超声成像在人类新生儿大脑活动中的应用。

Functional ultrasound imaging of brain activity in human newborns.

机构信息

Institut Langevin, CNRS UMR 7587, INSERM U979, École Supérieure de Physique et de Chimie Industrielles (ESPCI) Paris, Paris Sciences et Lettres Research University, 75005 Paris, France.

Assistance Publique-Hôpitaux de Paris, Neurophysiology Unit, Robert Debré University Hospital, 75019 Paris, France.

出版信息

Sci Transl Med. 2017 Oct 11;9(411). doi: 10.1126/scitranslmed.aah6756.

Abstract

Functional neuroimaging modalities are crucial for understanding brain function, but their clinical use is challenging. Recently, the use of ultrasonic plane waves transmitted at ultrafast frame rates was shown to allow for the spatiotemporal identification of brain activation through neurovascular coupling in rodents. Using a customized flexible and noninvasive headmount, we demonstrate in human neonates that real-time functional ultrasound imaging (fUSI) is feasible by combining simultaneous continuous video-electroencephalography (EEG) recording and ultrafast Doppler (UfD) imaging of the brain microvasculature. fUSI detected very small cerebral blood volume variations in the brains of neonates that closely correlated with two different sleep states defined by EEG recordings. fUSI was also used to assess brain activity in two neonates with congenital abnormal cortical development enabling elucidation of the dynamics of neonatal seizures with high spatiotemporal resolution (200 μm for UfD and 1 ms for EEG). fUSI was then applied to track how waves of vascular changes were propagated during interictal periods and to determine the ictal foci of the seizures. Imaging the human brain with fUSI enables high-resolution identification of brain activation through neurovascular coupling and may provide new insights into seizure analysis and the monitoring of brain function.

摘要

功能神经影像学模态对于理解大脑功能至关重要,但它们的临床应用具有挑战性。最近,超快帧率超声平面波的使用被证明可以通过啮齿动物的神经血管耦合来实现对大脑激活的时空识别。我们使用定制的灵活且非侵入性的头戴式设备,在人类新生儿中证明了实时功能超声成像(fUSI)的可行性,该方法结合了同时进行的连续视频脑电图(EEG)记录和大脑微血管的超快多普勒(UfD)成像。fUSI 检测到新生儿大脑中非常小的脑血流体积变化,与 EEG 记录定义的两种不同睡眠状态密切相关。fUSI 还用于评估两名先天性皮质发育异常的新生儿的大脑活动,从而能够以高时空分辨率(UfD 为 200μm,EEG 为 1ms)阐明新生儿癫痫发作的动力学。然后,fUSI 用于跟踪血管变化波在发作间期如何传播,并确定癫痫发作的发作焦点。使用 fUSI 对人脑进行成像可以通过神经血管耦合实现对大脑激活的高分辨率识别,并可能为癫痫发作分析和大脑功能监测提供新的见解。

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