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胎儿及新生儿神经影像学

Fetal and neonatal neuroimaging.

作者信息

Counsell Serena J, Arichi Tomoki, Arulkumaran Sophie, Rutherford Mary A

机构信息

Centre for the Developing Brain, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.

Centre for the Developing Brain, School of Biomedical Engineering and Imaging Sciences, King's College London, London, United Kingdom.

出版信息

Handb Clin Neurol. 2019;162:67-103. doi: 10.1016/B978-0-444-64029-1.00004-7.

Abstract

Magnetic resonance imaging (MRI) can provide detail of the soft tissues of the fetal and neonatal brain that cannot be obtained by any other imaging modality. Conventional T1 and T2 weighted sequences provide anatomic detail of the normally developing brain and can demonstrate lesions, including those associated with preterm birth, hypoxic ischemic encephalopathy, perinatal arterial stroke, infections, and congenital malformations. Specialized imaging techniques can be used to assess cerebral vasculature (magnetic resonance angiography and venography), cerebral metabolism (magnetic resonance spectroscopy), cerebral perfusion (arterial spin labeling), and function (functional MRI). A wealth of quantitative tools, most of which were originally developed for the adult brain, can be applied to study the developing brain in utero and postnatally including measures of tissue microstructure obtained from diffusion MRI, morphometric studies to measure whole brain and regional tissue volumes, and automated approaches to study cortical folding. In this chapter, we aim to describe different imaging approaches for the fetal and neonatal brain, and to discuss their use in a range of clinical applications.

摘要

磁共振成像(MRI)能够提供胎儿及新生儿脑部软组织的详细信息,这是其他任何成像方式都无法获取的。传统的T1加权和T2加权序列可提供正常发育脑部的解剖细节,并能显示病变,包括与早产、缺氧缺血性脑病、围产期动脉性卒中、感染及先天性畸形相关的病变。可使用专门的成像技术来评估脑血管系统(磁共振血管造影和静脉造影)、脑代谢(磁共振波谱)、脑灌注(动脉自旋标记)及功能(功能磁共振成像)。大量定量工具,其中大多数最初是为成人大脑开发的,可用于研究子宫内及出生后发育中的大脑,包括从扩散MRI获得的组织微观结构测量、测量全脑和区域组织体积的形态计量学研究,以及研究皮质折叠的自动化方法。在本章中,我们旨在描述针对胎儿及新生儿脑部的不同成像方法,并讨论它们在一系列临床应用中的用途。

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