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The Neuroanatomical Basis of Two Subcomponents of Rumination: A VBM Study

机译:沉思的两个子组成部分的神经解剖学基础:VBM研究

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摘要

Rumination is a trait that includes two subcomponents, namely brooding and reflective pondering, respectively construed as maladaptive and adaptive response styles to negative experiences. Existing evidence indicates that rumination in general is associated with structural and functional differences in the anterior cingulate cortex (ACC) and the dorsal lateral prefrontal cortex (DLPFC). However, conclusive evidence on the specific neural structural basis of each of the two subcomponents is lacking. In this voxel-based morphometry study, we investigated the independent and specific neural structural basis of brooding and reflective pondering in 30 healthy young adults, who belonged to high or low brooding or reflective pondering groups. Consistent with past research, modest but significant positive correlation was found between brooding and reflective pondering. When controlling for reflective pondering, high-brooding group showed increased gray matter volumes in the left DLPFC and ACC. Further analysis on extracted gray matter values showed that gray matter of the same DLPFC and ACC regions also showed significant negative effects of reflective pondering. Taken together, our findings indicate that the two subcomponents of rumination might share some common processes yet also have distinct neural basis. In view of the significant roles of the left DLPFC and ACC in attention and self-related emotional processing/regulation, our findings provide insight into how the potentially shared and distinct cognitive, affective and neural processes of brooding and reflective pondering can be extended to clinical populations to further elucidate the neurobehavioral relationships between rumination and prefrontal abnormality.
机译:反思是一个包括两个子组件的特征,即沉思和反思性思考,分别被解释为对负面经历的适应不良和适应性响应方式。现有证据表明反刍一般与前扣带回皮质(ACC)和背外侧前额叶皮质(DLPFC)的结构和功能差异有关。但是,缺乏关于这两个亚成分的具体神经结构基础的确凿证据。在这项基于体素的形态学研究中,我们调查了30个健康年轻人的沉思和反思思考的独立和特定的神经结构基础,这些成年人属于高或低沉思或反思思考群体。与过去的研究一致,在思考与反思思考之间发现了适度但显着的正相关。当控制反射性思考时,高思考力组显示左侧DLPFC和ACC中灰质体积增加。对提取的灰质值的进一步分析表明,相同DLPFC和ACC区域的灰质也显示出反射性思考的显着负面影响。两者合计,我们的研究结果表明,反刍的两个子组件可能共享一些共同的过程,但也具有独特的神经基础。鉴于左DLPFC和ACC在注意力和自我相关的情绪加工/调节中的重要作用,我们的发现为如何深入思考和思考思考的潜在共享和独特的认知,情感和神经过程提供了见解。进一步阐明反刍与额前异常之间的神经行为关系。

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