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本文引用的文献

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Quality Control of Diffusion Weighted Images.扩散加权图像的质量控制
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White matter heritability using diffusion tensor imaging in neonatal brains.利用扩散张量成像技术研究新生儿脑白质的遗传性。
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Quantitative tract-based white matter development from birth to age 2years.从出生到 2 岁的定量束流基于白质的发展。
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Plasticity in gray and white: neuroimaging changes in brain structure during learning.脑结构在学习过程中的可塑性:灰质和白质的神经影像学变化。
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Differences in white matter fiber tract development present from 6 to 24 months in infants with autism.自闭症婴儿在 6 至 24 个月时出现的白质纤维束发育差异。
Am J Psychiatry. 2012 Jun;169(6):589-600. doi: 10.1176/appi.ajp.2011.11091447.
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Dynamic reconfiguration of structural and functional connectivity across core neurocognitive brain networks with development.随着发育过程,核心神经认知脑网络的结构和功能连接的动态重新配置。
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Temporal and spatial evolution of brain network topology during the first two years of life.大脑网络拓扑结构在生命头两年的时空演变。
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Executive Function in Preschool Children: Test-Retest Reliability.学龄前儿童的执行功能:重测信度
J Cogn Dev. 2011 Jan 1;12(2):169-193. doi: 10.1080/15248372.2011.563485.
9
Imaging learning: the search for a memory trace.影像学习:寻找记忆痕迹。
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DTI registration in atlas based fiber analysis of infantile Krabbe disease.基于图谱的婴儿型 Krabbe 病纤维分析中的 DTI 配准。
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脑白质微观结构与婴儿工作记忆的关系。

Associations between white matter microstructure and infants' working memory.

机构信息

Department of Psychiatry, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Neuroimage. 2013 Jan 1;64:156-66. doi: 10.1016/j.neuroimage.2012.09.021. Epub 2012 Sep 16.

DOI:10.1016/j.neuroimage.2012.09.021
PMID:22989623
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3838303/
Abstract

Working memory emerges in infancy and plays a privileged role in subsequent adaptive cognitive development. The neural networks important for the development of working memory during infancy remain unknown. We used diffusion tensor imaging (DTI) and deterministic fiber tracking to characterize the microstructure of white matter fiber bundles hypothesized to support working memory in 12-month-old infants (n=73). Here we show robust associations between infants' visuospatial working memory performance and microstructural characteristics of widespread white matter. Significant associations were found for white matter tracts that connect brain regions known to support working memory in older children and adults (genu, anterior and superior thalamic radiations, anterior cingulum, arcuate fasciculus, and the temporal-parietal segment). Better working memory scores were associated with higher FA and lower RD values in these selected white matter tracts. These tract-specific brain-behavior relationships accounted for a significant amount of individual variation above and beyond infants' gestational age and developmental level, as measured with the Mullen Scales of Early Learning. Working memory was not associated with global measures of brain volume, as expected, and few associations were found between working memory and control white matter tracts. To our knowledge, this study is among the first demonstrations of brain-behavior associations in infants using quantitative tractography. The ability to characterize subtle individual differences in infant brain development associated with complex cognitive functions holds promise for improving our understanding of normative development, biomarkers of risk, experience-dependent learning and neuro-cognitive periods of developmental plasticity.

摘要

工作记忆在婴儿期出现,并在随后的适应性认知发展中发挥特权作用。在婴儿期发展工作记忆的重要神经网络尚不清楚。我们使用弥散张量成像(DTI)和确定性纤维跟踪来描述假设支持 12 个月大婴儿工作记忆的白质纤维束的微观结构(n=73)。在这里,我们展示了婴儿的视觉空间工作记忆表现与广泛的白质微观结构特征之间存在强大的关联。在与支持较大儿童和成人工作记忆的大脑区域相连的白质束中发现了显著的关联(脑回、丘脑前辐射、上丘脑辐射、前扣带、弓状束和颞顶段)。在这些选定的白质束中,更好的工作记忆分数与更高的 FA 和更低的 RD 值相关。这些特定于束的大脑-行为关系解释了个体差异的很大一部分,超过了婴儿的胎龄和发育水平,这可以通过穆伦早期学习量表来衡量。正如预期的那样,工作记忆与大脑总体积的全局测量无关,并且在工作记忆和控制白质束之间很少发现关联。据我们所知,这项研究是使用定量束追踪技术在婴儿中进行的首批大脑-行为关联研究之一。能够描述与复杂认知功能相关的婴儿大脑发育中的细微个体差异,有望提高我们对正常发育、风险生物标志物、经验依赖学习和神经认知发育可塑性的理解。