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首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Normal anatomy of the developing fetal brain. Ex vivo anatomical-magnetic resonance imaging correlation.
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Normal anatomy of the developing fetal brain. Ex vivo anatomical-magnetic resonance imaging correlation.

机译:胎儿大脑发育的正常解剖。离体解剖磁共振成像相关性。

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Fetal brain Magnetic Resonance Imaging (MRI) is a new technique of growing interest, with a high potential to detect prenatal central nervous system abnormalities. This requires an accurate knowledge of the normal morphological sequence of brain development. In this paper we studied the cortical development of post-mortem normal fetal brains, correlating MRI estimations of fetal age with in vitro anatomical and anthropometric measurements. Ten post-mortem fetal heads were submitted to MRI. Maturational state of sulci and gyri and gray-white matter differentiation were analysed in the MRIs and by dissection of the brains. The findings were correlated with the previously estimated ages of the fetuses, which varied between 17 and 38 weeks. Consistency between methods was assessed employing intraclass correlation coefficient and Bland-Altman plots, with a 95% confidence interval. Estimations of fetal age obtained by MRI were very similar to those achieved by anthropometric measurements or by considering anatomical parameters. Gyral development proved to be more precise than gray-white matter differentiation for this purpose. Fetal MRI proved to be as reliable as the macroscopic anatomical examination for depicting normal cortical developmental sequence and age, suggesting that this technique may be a suitable option for achieving precise information about the morphology of human brains along the gestational period.
机译:胎儿脑磁共振成像(MRI)是一项受到越来越多关注的新技术,具有检测产前中枢神经系统异常的巨大潜力。这需要对大脑发育的正常形态序列有准确的了解。在本文中,我们研究了验尸后正常胎儿大脑的皮质发育,将胎儿年龄的MRI估计与体外解剖和人体测量学相关联。十名验尸后的胎儿头被接受了MRI检查。在MRI和大脑解剖中分析了龈沟和回旋的成熟状态以及灰白色物质的分化。这些发现与先前估计的胎儿年龄相关,在17至38周之间变化。使用类内相关系数和Bland-Altman图以95%置信区间评估方法之间的一致性。通过MRI获得的胎儿年龄估计与通过人体测量或通过考虑解剖学参数获得的估计非常相似。为此目的,证明陀螺的发育比灰白物质的分化更为精确。事实证明,胎儿MRI与描述正常皮质发育序列和年龄的宏观解剖学检查一样可靠,这表明该技术可能是在妊娠期获得有关人脑形态的精确信息的合适选择。

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