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首页> 外文期刊>Clinical Radiology: Journal of the Royal College of Radiologists >Surface reconstructions of foetal brain abnormalities using ultrafast steady state 3D acquisitions
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Surface reconstructions of foetal brain abnormalities using ultrafast steady state 3D acquisitions

机译:使用超快稳态3D采集进行胎儿大脑异常的表面重建

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摘要

MRI of the foetal brain in utero is performed in routine clinical practice using sequences that produce two-dimensional (2D) images. Recent developments in image post-processing have allowed the construction of three-dimensional (3D) volume data sets from 2D images acquired in different anatomical planes, but these have limitations due to the unpredictable nature of foetal movement. These limitations have been overcome by development of several different advanced computer techniques, which require specialist knowledge, software, and processing methods, which are rarely available in routine clinical settings. Our aim was to develop a technique that can be used in routine clinical situations without the need for custom-developed or expensive software by utilizing MRI sequences that can produce a 3D data set in "ultrafast" timescales. The 3D dataset, combined with versatile image post-processing and visualization techniques, has resulted in the production of high-resolution images of foetal brain surfaces in utero. The aim of this paper is to demonstrate our methods and early results by way of a pictorial review illustrating a range of developmental brain disease in utero.
机译:子宫内胎儿大脑的MRI是在常规临床实践中使用产生二维(2D)图像的序列进行的。图像后处理的最新发展已允许从在不同解剖平面中获取的2D图像构建三维(3D)体积数据集,但是由于胎儿运动的不可预测性,这些数据集具有局限性。通过开发几种不同的高级计算机技术已克服了这些局限,这些技术需要专业知识,软件和处理方法,而在常规临床环境中很少使用这些技术。我们的目标是通过利用可以产生“超快速”时标的3D数据集的MRI序列,开发一种无需常规开发或昂贵软件即可用于常规临床情况的技术。 3D数据集结合了通用的图像后处理和可视化技术,已导致在子宫内产生胎儿脑表面的高分辨率图像。本文的目的是通过图解说明子宫内多种发育性脑病的图片展示方式来证明我们的方法和早期结果。

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