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Multi-layer Temporal Network Analysis Reveals Increasing Temporal Reachability and Spreadability in the First Two Years of Life

机译:多层时间网络分析揭示了生命头两年的时间可及性和可扩展性不断提高

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Spatiotemporal dynamics analysis of the human brain functional connectome and its early development in the first few years of life is tremendously essential for grasping such a shining jewel in life science as such a knowledge shed light on the long-standing mysteries of emerging and fast developing of various high-level cognitive abilities in such a pivotal stage. Most of the existing developmental neuroscience studies with resting-state functional MRI (fMRI) failed in correctly modeling information flow, exchanges, and spreads across space and time via the dedicatedly designed and continuously rewiring complex brain networks. We propose a novel multi-layer temporal network analysis with two intuitive and intriguing metrics, reachability and spreadability, measuring the extent of a certain brain region getting in touch with other regions in a short period of time through temporal linkage (inter-layer connections between corresponding regions across time). We applied this method on a large-scale, high-quality, high-resolution sleeping state fMRI of normally developed neonates/infants without sedating them. We unravel a first-ever picture of how the human brain facilitates more and more efficient information exchange and integration. The early and fast maturation of the ventral visual "what" pathway with the highest developing velocity over all other regions during 0-6 months may underpin the rapid developing consciousness and all other aspects of complex cognitive functions.
机译:人脑功能连接体的时空动力学分析及其在生命的最初几年中的早期发展对于掌握生命科学中的一颗璀璨的宝石至关重要,因为这种知识揭示了长期以来人们不断涌现的谜团,这些谜团不断涌现。在这个关键阶段具有各种高水平的认知能力。现有的大多数具有静止状态功能MRI(fMRI)的发展性神经科学研究都未能通过专门设计并不断重新布线的复杂大脑网络正确地建模信息流,交换和跨时空分布。我们提出了一种新颖的多层时态网络分析方法,该方法具有两个直观而有趣的指标,即可达性和可扩展性,可以通过时间关联性来测量某个大脑区域在短时间内与其他区域接触的程度(跨时间的相应区域)。我们将这种方法应用于正常发育的新生儿/婴儿的大规模,高质量,高分辨率的睡眠状态功能磁共振成像,而无需对其进行镇静。我们揭开了关于人类大脑如何促进越来越有效的信息交换和整合的第一张照片。在0-6个月内,在所有其他区域中具有最高发育速度的腹侧视觉“什么”途径的早期快速成熟可能会支撑快速发展的意识和复杂认知功能的所有其他方面。

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