Age-related changes of node degree in the multiple-demand network predict fluid intelligence

IF 2 Q3 NEUROSCIENCES IBRO Neuroscience Reports Pub Date : 2024-06-14 DOI:10.1016/j.ibneur.2024.06.005
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Abstract

Fluid intelligence is an individual's innate ability to cope with complex situations and is gradually reduced across adults aging. The realization of fluid intelligence requires the simultaneous activity of multiple brain regions and depends on the structural connection of distributed brain regions. Uncovering the structural features of brain connections associated with fluid intelligence decline will provide reference for the development of intervention and treatment programs for cognitive decline. Using structural magnetic resonance imaging data of 454 healthy participants (18–87 years) from the Cam-CAN dataset, we constructed structural similarity network for each participant and calculated the node degree. Spearman correlation analysis showed that age was positively correlated with degree centrality in the cingulate cortex, left insula and subcortical regions, while negatively correlated with that in the orbito-frontal cortex, right middle temporal and precentral regions. Partial least squares (PLS) regression showed that the first PLS components explained 32 % (second PLS component: 20 %, pperm < 0.001) of the variance in fluid intelligence. Additionally, the degree centralities of anterior insula, supplementary motor area, prefrontal, orbito-frontal and anterior cingulate cortices, which are critical nodes of the multiple-demand network (MDN), were linked to fluid intelligence. Increased degree centrality in anterior cingulate cortex and left insula partially mediated age-related decline in fluid intelligence. Collectively, these findings suggest that the structural stability of MDN might contribute to the maintenance of fluid intelligence.

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多需求网络中节点度的年龄相关变化可预测流体智力
流体智能是一个人与生俱来的应对复杂情况的能力,这种能力会随着成人年龄的增长而逐渐减弱。流体智能的实现需要多个脑区同时活动,并依赖于分布式脑区的结构连接。揭示与流体智能衰退相关的脑连接结构特征,将为开发认知衰退的干预和治疗方案提供参考。利用Cam-CAN数据集中454名健康参与者(18-87岁)的结构磁共振成像数据,我们为每位参与者构建了结构相似性网络,并计算了节点度。斯皮尔曼相关分析表明,年龄与扣带皮层、左侧岛叶和皮层下区域的节点中心度呈正相关,而与眶额皮层、右侧中颞和前中央区域的节点中心度呈负相关。偏最小二乘法(PLS)回归显示,PLS第一成分解释了流体智力变异的32%(PLS第二成分:20%,pperm < 0.001)。此外,作为多重需求网络(MDN)关键节点的前岛叶、辅助运动区、前额叶、眶额叶和前扣带回皮层的度中心性也与流体智力有关。前扣带回皮层和左侧脑岛的中心度增加部分介导了与年龄相关的流体智力下降。这些发现共同表明,MDN的结构稳定性可能有助于维持流体智力。
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来源期刊
IBRO Neuroscience Reports
IBRO Neuroscience Reports Neuroscience-Neuroscience (all)
CiteScore
2.80
自引率
0.00%
发文量
99
审稿时长
14 weeks
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