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Robust prediction of individual creative ability from brain functional connectivity

机译:通过大脑功能连接对个人创造能力的可靠预测

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摘要

People’s ability to think creatively is a primary means of technological and cultural progress, yet the neural architecture of the highly creative brain remains largely undefined. Here, we employed a recently developed method in functional brain imaging analysis—connectome-based predictive modeling—to identify a brain network associated with high-creative ability, using functional magnetic resonance imaging (fMRI) data acquired from 163 participants engaged in a classic divergent thinking task. At the behavioral level, we found a strong correlation between creative thinking ability and self-reported creative behavior and accomplishment in the arts and sciences (r = 0.54). At the neural level, we found a pattern of functional brain connectivity related to high-creative thinking ability consisting of frontal and parietal regions within default, salience, and executive brain systems. In a leave-one-out cross-validation analysis, we show that this neural model can reliably predict the creative quality of ideas generated by novel participants within the sample. Furthermore, in a series of external validation analyses using data from two independent task fMRI samples and a large task-free resting-state fMRI sample, we demonstrate robust prediction of individual creative thinking ability from the same pattern of brain connectivity. The findings thus reveal a whole-brain network associated with high-creative ability comprised of cortical hubs within default, salience, and executive systems—intrinsic functional networks that tend to work in opposition—suggesting that highly creative people are characterized by the ability to simultaneously engage these large-scale brain networks.
机译:人们的创造性思维能力是技术和文化进步的主要手段,但是高度创新的大脑的神经结构仍未定义。在这里,我们利用功能性脑成像分析中最近开发的方法(基于连接体的预测模型),使用从163名参与经典发散实验的参与者获得的功能性磁共振成像(fMRI)数据来识别与高创造力相关的大脑网络。思考任务。在行为方面,我们发现艺术和科学领域的创造性思维能力与自我报告的创造性行为与成就之间存在很强的相关性(r = 0.54)。在神经水平上,我们发现了一种与高创造力思维能力有关的功能性大脑连接模式,该思维能力由默认,显着和执行性大脑系统内的额叶和顶叶区域组成。在一劳永逸的交叉验证分析中,我们证明了这种神经模型可以可靠地预测样本中新参与者所产生想法的创造性质量。此外,在使用来自两个独立任务fMRI样本和大型无任务静止状态fMRI样本的数据进行的一系列外部验证分析中,我们证明了从相同的大脑连通性模式对个体创造性思维能力的可靠预测。因此,研究结果揭示了与高创造力相关的全脑网络,包括默认,显着和执行系统中的皮质枢纽-倾向于相互配合的内在功能网络-建议具有高度创造力的人的特征在于能够同时进行参与这些大规模的大脑网络。

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