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Structural and functional brain remodeling during pregnancy with diffusion tensor MRI and resting-state functional MRI

机译:弥散张量MRI和静息态功能MRI孕期结构和功能性大脑重塑

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摘要

Although pregnancy-induced hormonal changes have been shown to alter the brain at the neuronal level, the exact effects of pregnancy on brain at the tissue level remain unclear. In this study, diffusion tensor imaging (DTI) and resting-state functional MRI (rsfMRI) were employed to investigate and document the effects of pregnancy on the structure and function of the brain tissues. Fifteen Sprague-Dawley female rats were longitudinally studied at three days before mating (baseline) and seventeen days after mating (G17). G17 is equivalent to the early stage of the third trimester in humans. Seven age-matched nulliparous female rats served as non-pregnant controls and were scanned at the same time-points. For DTI, diffusivity was found to generally increase in the whole brain during pregnancy, indicating structural changes at microscopic levels that facilitated water molecular movement. Regionally, mean diffusivity increased more pronouncedly in the dorsal hippocampus while fractional anisotropy in the dorsal dentate gyrus increased significantly during pregnancy. For rsfMRI, bilateral functional connectivity in the hippocampus increased significantly during pregnancy. Moreover, fractional anisotropy increase in the dentate gyrus appeared to correlate with the bilateral functional connectivity increase in the hippocampus. These findings revealed tissue structural modifications in the whole brain during pregnancy, and that the hippocampus was structurally and functionally remodeled in a more marked manner.
机译:尽管已显示妊娠引起的激素变化会改变神经元水平的大脑,但妊娠对组织水平的大脑的确切影响仍不清楚。在这项研究中,扩散张量成像(DTI)和静止状态功能MRI(rsfMRI)用于研究和记录妊娠对脑组织结构和功能的影响。在交配前三天(基线)和交配后十七天(G17),对十五只Sprague-Dawley雌性大鼠进行了纵向研究。 G17相当于人类晚期三个月的早期。七只年龄匹配的未产雌鼠作为非妊娠对照,并在相同的时间点进行了扫描。对于DTI,发现怀孕期间整个大脑的扩散通常会增加,这表明微观水平的结构改变有利于水分子运动。在区域上,背侧海马的平均扩散率增加更为明显,而在怀孕期间背齿状回的分数各向异性显着增加。对于rsfMRI,怀孕期间海马的双侧功能连接显着增加。此外,齿状回的分数各向异性的增加似乎与海马的双侧功能连接性增加相关。这些发现揭示了怀孕期间全脑的组织结构改变,并且海马以更明显的方式在结构和功能上进行了重塑。

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