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首页> 外文期刊>Neuropsychologia >Brain network modularity predicts cognitive training-related gains in young adults
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Brain network modularity predicts cognitive training-related gains in young adults

机译:脑网络模块化预测年轻成年人的认知培训相关的收益

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摘要

The brain operates via networked activity in separable groups of regions called modules. The quantification of modularity compares the number of connections within and between modules, with high modularity indicating greater segregation, or dense connections within sub-networks and sparse connections between sub-networks. Previous work has demonstrated that baseline brain network modularity predicts executive function outcomes in older adults and patients with traumatic brain injury after cognitive and exercise interventions. In healthy young adults, however, the functional significance of brain modularity in predicting training-related cognitive improvements is not fully understood. Here, we quantified brain network modularity in young adults who underwent cognitive training with casual video games that engaged working memory and reasoning processes. Network modularity assessed at baseline was positively correlated with training-related improvements on untrained tasks. The relationship between baseline modularity and training gain was especially evident in initially lower performing individuals and was not present in a group of control participants that did not show training-related gains. These results suggest that a more modular brain network organization may allow for greater training responsiveness. On a broader scale, these findings suggest that, particularly in low-performing individuals, global network properties can capture aspects of brain function that are important in understanding individual differences in learning.
机译:大脑通过名为模块的可分离区域组的网络活动运行。模块化的量化比较了模块内和之间的连接数,具有高模块化,指示子网内的更大的分离,或密集连接和子网之间的稀疏连接。以前的工作表明,基线脑网络模块化预测认知和运动干预后老年成人和创伤性脑损伤患者的执行功能结果。然而,在健康的年轻人中,脑模化在预测训练相关的认知改善方面的功能意义尚未完全理解。在这里,我们在休闲视频游戏接受认知培训的年轻成年人中量化了脑网络模块化,从事工作记忆和推理过程。在基线中评估的网络模块性与未经培训的任务的培训相关的改进呈正相关。基线模块化与培训收益之间的关系在最初降低表现上尤为明显,并且在一组控制参与者中并不出现没有显示与培训相关的收益。这些结果表明,更具模块化的脑网络组织可能允许更大的训练响应性。在更广泛的规模上,这些研究结果表明,特别是在低绩效的个人中,全球网络属性可以捕获大脑功能的方面,这在理解各个学习差异方面很重要。

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