心智游荡与感知的耦合与脱钩:共享新陈代谢论。

Cerebral cortex communications Pub Date : 2023-11-21 eCollection Date: 2023-01-01 DOI:10.1093/texcom/tgad021
M Bruckmaier, V Albrecht, I Tachtsidis, N Lavie
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引用次数: 0

摘要

简介思绪游走(MW)与对外部刺激的反应能力下降("知觉脱钩")有关。相反,任务对知觉要求的增加会导致思维游离的减少。在这里,我们提出了一种神经生物学的解释,将最大负荷和知觉的相互限制关系归因于全脑对大脑新陈代谢的限制。由于已知尽管心理任务的需求增加,但大脑的整体新陈代谢却保持不变,因此我们测试了视觉任务中知觉处理负荷的增加是否会导致与MW相关的内侧前额叶皮层(mPFC)区域的氧代谢降低:方法:我们使用宽带近红外光谱仪测量mPFC中细胞色素-c-氧化酶(oxCCO)的氧化状态,oxCCO是细胞内新陈代谢的标志物:结果:任务中知觉负荷的增加导致前脑皮质中与MW报告相关区域的oxCCO信号减少。研究还发现,高知觉负荷会特别抑制详细的(因此更需要新陈代谢的)而不是模糊的MW:总之,研究结果支持关于MW和知觉之间关系的共同代谢解释,并证明只有当知觉处理需求较低时,注意力对代谢的调节才会支持正在进行的详细MW。
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On the coupling and decoupling of mind wandering and perception: a shared metabolism account.

Introduction: Mind wandering (MW) has been associated with reduced responsiveness to external stimuli ("perceptual decoupling"). Conversely, increased perceptual demands of a task result in reduced MW. Here we propose a neurobiological account attributing the mutually-limiting relationship of MW and perception to brain-wide limits on cerebral metabolism. Since overall cerebral metabolism is known to remain constant, despite increased mental task demands, we tested whether increased perceptual processing load in a visual task will result in reduced oxygen metabolism in MW-related medial prefrontal cortex (mPFC) regions.

Methods: We used broadband near-infrared spectroscopy to measure oxidation states of the cytochrome-c-oxidase enzyme (oxCCO), an intracellular marker of metabolism, in mPFC while sampling participants' MW experiences during their performance of a visual task of either low (feature search) or high(conjunction search) perceptual load.

Results: Increased perceptual load in the task resulted in reduced oxCCO signal in mPFC regions related to MW reports. High perceptual load was also found to specifically suppress detailed (and hence more metabolism-demanding) rather than vague MW.

Discussion: Overall, the results support a shared metabolism account of the relationship between MW and perception and demonstrate that attentional-regulation of metabolism only supports ongoing detailed MW when perceptual processing demands are low.

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