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Autoregressive model based algorithm for correcting motion and serially correlated errors in fNIRS.基于自回归模型的fNIRS运动及序列相关误差校正算法
Biomed Opt Express. 2013 Jul 17;4(8):1366-79. doi: 10.1364/BOE.4.001366. eCollection 2013.
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Somatosensory evoked changes in cerebral oxygen consumption measured non-invasively in premature neonates.应用无创性技术检测早产儿体感诱发电位时脑氧代谢的变化。
Neuroimage. 2014 Jan 15;85 Pt 1(0 1):279-86. doi: 10.1016/j.neuroimage.2013.01.035. Epub 2013 Jan 28.
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Working memory capacity as a dynamic process.工作记忆容量作为一个动态过程。
Front Psychol. 2013 Jan 7;3:567. doi: 10.3389/fpsyg.2012.00567. eCollection 2012.
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Implications of infant cognition for executive functions at age 11.婴儿认知对 11 岁时执行功能的影响。
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Validating atlas-guided DOT: a comparison of diffuse optical tomography informed by atlas and subject-specific anatomies.验证图谱引导的 DOT:基于图谱和个体特定解剖结构的弥散光学层析成像的比较。
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The development of visual working memory capacity during early childhood.儿童早期视觉工作记忆容量的发展。
J Exp Child Psychol. 2012 Apr;111(4):695-707. doi: 10.1016/j.jecp.2011.10.007. Epub 2011 Nov 17.
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Stronger neural dynamics capture changes in infants' visual working memory capacity over development.更强的神经动力学可以捕捉到婴儿视觉工作记忆容量在发育过程中的变化。
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A hemodynamic correlate of lateralized visual short-term memories.大脑偏侧化视觉短期记忆的血流动力学相关物。
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Neurocognitive performance in children aged 9-12 years who present putative antecedents of schizophrenia.9-12 岁有精神分裂症前驱症状儿童的神经认知表现。
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运用功能近红外光谱技术探究视觉工作记忆容量的早期发展。

Probing the early development of visual working memory capacity with functional near-infrared spectroscopy.

机构信息

Department of Psychology and Delta Center, University of Iowa, USA.

出版信息

Neuroimage. 2014 Jan 15;85 Pt 1(0 1):314-25. doi: 10.1016/j.neuroimage.2013.05.034. Epub 2013 May 23.

DOI:10.1016/j.neuroimage.2013.05.034
PMID:23707803
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3859697/
Abstract

Visual working memory (VWM) is a core cognitive system with a highly limited capacity. The present study is the first to examine VWM capacity limits in early development using functional neuroimaging. We recorded optical neuroimaging data while 3- and 4-year-olds completed a change detection task where they detected changes in the shapes of objects after a brief delay. Near-infrared sources and detectors were placed over the following 10-20 positions: F3 and F5 in left frontal cortex, F4 and F6 in right frontal cortex, P3 and P5 in left parietal cortex, and P4 and P6 in right parietal cortex. The first question was whether we would see robust task-specific activation of the frontal-parietal network identified in the adult fMRI literature. This was indeed the case: three left frontal channels and 11 of 12 parietal channels showed a statistically robust difference between the concentration of oxygenated and deoxygenated hemoglobin following the presentation of the sample array. Moreover, four channels in the left hemisphere near P3, P5, and F5 showed a robust increase as the working memory load increased from 1 to 3 items. Notably, the hemodynamic response did not asymptote at 1-2 items as expected from previous fMRI studies with adults. Finally, 4-year-olds showed a more robust parietal response relative to 3-year-olds, and an increasing sensitivity to the memory load manipulation. These results demonstrate that fNIRS is an effective tool to study the neural processes that underlie the early development of VWM capacity.

摘要

视觉工作记忆(VWM)是一种具有高度有限容量的核心认知系统。本研究首次使用功能神经影像学来检查早期发育中的 VWM 容量限制。我们在 3 至 4 岁的儿童完成一项变化检测任务时记录了光学神经影像学数据,在该任务中,他们在短暂延迟后检测物体形状的变化。近红外光源和探测器放置在以下 10-20 个位置:左额叶皮层的 F3 和 F5、右额叶皮层的 F4 和 F6、左顶叶皮层的 P3 和 P5 以及右顶叶皮层的 P4 和 P6。第一个问题是我们是否会看到成人 fMRI 文献中确定的额顶叶网络的强大任务特异性激活。事实确实如此:在呈现样本数组后,三个左额叶通道和 12 个顶叶通道中的 11 个通道显示出含氧和去氧血红蛋白浓度之间的统计学上显著差异。此外,在左半球的 P3、P5 和 F5 附近的四个通道随着工作记忆负荷从 1 个增加到 3 个而显示出强大的增加。值得注意的是,与之前使用成人 fMRI 研究的预期不同,血流动力学反应并没有在 1-2 个项目中达到渐近线。最后,与 3 岁儿童相比,4 岁儿童的顶叶反应更强烈,对记忆负荷的变化更敏感。这些结果表明,fNIRS 是研究 VWM 容量早期发展背后的神经过程的有效工具。