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A Correspondence between Individual Differences in the Brains Intrinsic Functional Architecture and the Content and Form of Self-Generated Thoughts

机译:大脑内在功能结构中的个体差异与自我产生的思想的内容和形式之间的对应关系

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摘要

Although neural activity often reflects the processing of external inputs, intrinsic fluctuations in activity have been observed throughout the brain. These may relate to patterns of self-generated thought that can occur while not performing goal-driven tasks. To understand the relationship between self-generated mental activity and intrinsic neural fluctuations, we developed the New York Cognition Questionnaire (NYC-Q) to assess the content and form of an individual's experiences during the acquisition of resting-state fMRI data. The data were collected as a part of the Nathan Kline Rockland Enhanced sample. We decomposed NYC-Q scores using exploratory factor analysis and found that self-reported thoughts clustered into distinct dimensions of content (future related, past related, positive, negative, and social) and form (words, images, and specificity). We used these components to perform an individual difference analysis exploring how differences in the types of self-generated thoughts relate to whole brain measures of intrinsic brain activity (fractional amplitude of low frequency fluctuations, regional homogeneity, and degree centrality). We found patterns of self-generated thoughts related to changes that were distributed across a wide range of cortical areas. For example, individuals who reported greater imagery exhibited greater low frequency fluctuations in a region of perigenual cingulate cortex, a region that is known to participate in the so-called default-mode network. We also found certain forms of thought were associated with other areas, such as primary visual cortex, the insula, and the cerebellum. For example, individuals who reported greater future thought exhibited less homogeneous neural fluctuations in a region of lateral occipital cortex, a result that is consistent with the claim that particular types of self-generated thought depend on processes that are decoupled from sensory processes. These data provide evidence that self-generated thought is a heterogeneous category of experience and that studying its content can be helpful in understanding brain dynamics.
机译:尽管神经活动通常反映外部输入的处理,但是在整个大脑中都观察到了活动的内在波动。这些可能与在不执行目标驱动的任务时可能发生的自我生成的思维模式有关。为了了解自我产生的心理活动与内在的神经波动之间的关系,我们开发了纽约认知调查表(NYC-Q)来评估在获取静止状态fMRI数据期间个人经历的内容和形式。数据是作为Nathan Kline Rockland Enhanced样本的一部分收集的。我们使用探索性因素分析法对NYC-Q得分进行分解,发现自我报告的思想聚集在内容(与未来有关,与过去有关,积极,消极和社交)和形式(单词,图像和特殊性)的不同维度上。我们使用这些组件进行了个体差异分析,探讨了自我产生的思维类型的差异如何与全脑内在大脑活动的度量(低频波动的分数幅度,区域同质性和程度中心性)相关。我们发现了与变化相关的自我产生的思想模式,这些思想分布在广泛的皮质区域。例如,报告较多图像的个人在周围扣带回皮层区域表现出较大的低频波动,该区域已知参与所谓的默认模式网络。我们还发现某些思想形式与其他区域有关,例如初级视觉皮层,岛状和小脑。例如,报告未来思想的人在枕外侧叶区域表现出较少的均匀神经波动,这一结果与声称的特定类型的自发思想取决于与感觉过程脱节的过程相一致。这些数据提供了证据,表明自我产生的思想是经验的异类,研究其内容可能有助于理解大脑动力学。

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