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Utilization of Magnetic Resonance Imaging in Research Involving Animal Models of Fetal Alcohol Spectrum Disorders

机译:磁共振成像技术在涉及胎儿酒精光谱异常动物模型的研究中的应用

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摘要

It is well recognized that fetal alcohol exposure can profoundly damage the developing brain. The term fetal alcohol spectrum disorder (FASD) describes the range of deficits that result from prenatal alcohol exposure. Over the past two decades, researchers have used magnetic resonance imaging (MRI) as a noninvasive technique to characterize anatomical, physiological, and metabolic changes in the human brain that are part of FASD. As using animal models can circumvent many of the complications inherent to human studies, researchers have established and explored a number of models involving a range of species. Using MRI-based modalities, the FASD animal models have demonstrated decreased brain volume and abnormal brain shape, disrupted cellular morphology differentiation, altered neurochemistry, and blood perfusion. These animal studies have facilitated characterization of the direct effects of ethanol; in many cases identifying specific sequelae related to the timing and dose of exposure. Further, as a result of the ability to perform traditional (such as histological) analyses on animal brains following neuroimaging experiments, this work leads to improvements in the accuracy of our interpretations of neuroimaging findings in human studies.
机译:众所周知,胎儿酒精暴露会严重损害发育中的大脑。术语胎儿酒精谱系障碍(FASD)描述了由产前酒精暴露引起的缺陷范围。在过去的二十年中,研究人员已将磁共振成像(MRI)作为一种非侵入性技术来表征FASD中人脑的解剖,生理和代谢变化。由于使用动物模型可以避免人类研究固有的许多复杂性,因此研究人员已经建立并探索了许多涉及多种物种的模型。使用基于MRI的方法,FASD动物模型已证明脑容量减少和脑形态异常,细胞形态分化受到破坏,神经化学改变和血液灌流。这些动物研究促进了乙醇直接作用的表征。在许多情况下,确定与暴露时间和剂量有关的特定后遗症。此外,由于能够在进行神经影像实验后对动物大脑进行传统(例如组织学)分析,因此这项工作可提高我们在人类研究中对神经影像发现的解释的准确性。

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