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Emergence of resting state networks in the preterm human brain

机译:早产人脑中静止状态网络的出现

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摘要

The functions of the resting state networks (RSNs) revealed by functional MRI remain unclear, but it has seemed possible that networks emerge in parallel with the development of related cognitive functions. We tested the alternative hypothesis: that the full repertoire of resting state dynamics emergesduring the period of rapid neural growth before the normal time of birth at term (around 40 wk of gestation). We used a series of independent analytical techniques to map in detail the development of different networks in 70 infants born between 29 and 43 wk of postmenstrual age (PMA). We characterized and charted the development of RSNs from recognizable but often fragmentary elements at 30 wk of PMA to full facsimiles of adult patterns at term. Visual, auditory, somatosen-sory, motor, default mode, frontoparietal, and executive control networks developed at different rates; however, by term, complete networks were present, several of which were integrated with thalamic activity. These results place the emergence of RSNs largely during the period of rapid neural growth in the third trimester of gestation, suggesting that they are formed before the acquisition of cognitive competencies in later childhood.
机译:功能性MRI揭示的静止状态网络(RSN)的功能仍不清楚,但似乎网络与相关认知功能的发展并行出现。我们测试了另一种假设:在足月正常妊娠(妊娠约40周)之前,在快速神经生长期间出现了完整的静息状态动态。我们使用了一系列独立的分析技术,详细绘制了70个出生在月经后29至43周之间的婴儿的不同网络的发展情况。我们表征并绘制了RSN的发展过程,从可识别的但在PMA的第30周时通常是零散的元素到足月成人模式的完全传真。视觉,听觉,躯体感觉,运动,默认模式,额叶和执行控制网络的发展速度不同;但是,从术语上讲,存在完整的网络,其中一些网络与丘脑活动整合在一起。这些结果主要是在妊娠晚期的神经快速生长期间出现了RSN,这表明它们是在儿童后期获得认知能力之前形成的。

著录项

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  • 作者单位

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Centre for Neuroscience, Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom,Functional Magnetic Resonance Imaging of the Brain Centre, University of Oxford, Oxford OX3 9DU, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Centre for Neuroscience, Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Visual Information Processing Group, Department of Computing, Imperial College London, London SW7 2AZ, United Kingdom;

    Visual Information Processing Group, Department of Computing, Imperial College London, London SW7 2AZ, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

    University College London Institute of Cognitive Neuroscience, London WC1N 3AR, United Kingdom,Wellcome Trust Centre for Neuroimaging at UCL, London WC1N 3BG, United Kingdom;

    Institute of Clinical Sciences Imperial College London, and Medical Research Council Clinical Sciences Centre, London W12 OHS, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    blood oxygen level-dependent; functional MRI; neurodevelopment; intrinsic brain activity; newborn;

    机译:血氧水平依赖性;功能性MRI;神经发育脑内在活动;新生;
  • 入库时间 2022-08-18 00:41:28

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