在默认模式和注意网络中,不同的内在功能连接模式预测了儿童时期的结晶和流动能力。

Diego Lombardo, Tobias Kaufmann
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引用次数: 0

摘要

结晶能力是基于经验解决问题的技能,而流动能力与推理有关,而不需要唤起先前的知识。结晶和流动的能力在多大程度上涉及分离或重叠的神经系统是有争议的。由于在以前的工作中经常部署小样本量或不同的研究环境,儿童结晶和流体能力的神经基础在很大程度上仍然未知。在这里,我们分析了来自ABCD研究的2707名9至10岁儿童的静息状态功能MRI的内部和之间的网络连接模式。我们假设默认模式网络(DMN)、腹侧和背侧注意网络(VAN, DAN)的功能连通性差异解释了流体和结晶能力的差异。我们发现DMN和VAN、DMN和DAN、VAN和DAN的网络间连通性更强,预测了结晶能力。DAN的网络内连通性预测了结晶和流体能力。我们的研究结果表明,结晶能力依赖于注意网络和DMN之间的功能耦合,而流体能力则与DAN的焦点连接配置有关。我们的研究为儿童智力的神经基础提供了新的证据,并呼吁未来在成年期神经精神疾病的比较研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Different patterns of intrinsic functional connectivity at the default mode and attentional networks predict crystalized and fluid abilities in childhood.

Different patterns of intrinsic functional connectivity at the default mode and attentional networks predict crystalized and fluid abilities in childhood.

Different patterns of intrinsic functional connectivity at the default mode and attentional networks predict crystalized and fluid abilities in childhood.

Different patterns of intrinsic functional connectivity at the default mode and attentional networks predict crystalized and fluid abilities in childhood.

Crystallized abilities are skills used to solve problems based on experience, while fluid abilities are linked to reasoning without evoke prior knowledge. To what extent crystallized and fluid abilities involve dissociated or overlapping neural systems is debatable. Due to often deployed small sample sizes or different study settings in prior work, the neural basis of crystallized and fluid abilities in childhood remains largely unknown. Here we analyzed within and between network connectivity patterns from resting-state functional MRI of 2707 children between 9 and 10 years from the ABCD study. We hypothesized that differences in functional connectivity at the default mode network (DMN), ventral, and dorsal attentional networks (VAN, DAN) explain differences in fluid and crystallized abilities. We found that stronger between-network connectivity of the DMN and VAN, DMN and DAN, and VAN and DAN predicted crystallized abilities. Within-network connectivity of the DAN predicted both crystallized and fluid abilities. Our findings reveal that crystallized abilities rely on the functional coupling between attentional networks and the DMN, whereas fluid abilities are associated with a focal connectivity configuration at the DAN. Our study provides new evidence into the neural basis of child intelligence and calls for future comparative research in adulthood during neuropsychiatric diseases.

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