情绪-认知互动过程中与工作负荷相关的半球不对称:一项接近自然的 fNIRS 研究

Katharina Lingelbach, Sabrina Gado, Maria Wirzberger, M. Vukelić
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摘要

我们在一项接近自然的功能性近红外光谱(fNIRS)研究中调查了情绪分心与认知过程相互作用的大脑激活模式。18 名参与者参与了一项监控任务,模拟常见的空中交通管制员要求。我们的研究发现,在不同工作量水平下,当出现消极和积极情绪语言干扰时,前额叶皮层(PFC)的活动存在半球不对称性。因此,左侧额叶下回(IFG)和眶额皮层(OFC)的激活似乎起着至关重要的作用。大脑激活模式显示了一种交叉交互作用,表明在消极分心和高负荷工作时,左半球的抑制过程与工作负荷有关。对于低工作量下的积极情绪分心,我们观察到左半球前脑皮层被招募,这可能与言语相关过程有关。此外,我们还发现,对于中性分心,大脑会出现与工作量无关的消极偏向,其激活模式与消极分心时的大脑激活模式相似。这些发现加深了我们对情绪干扰处理和抑制过程中半球不对称调节因素以及情绪和认知之间相互作用的理解。此外,这些研究还强调了在更自然的环境中探索情绪与认知之间相互作用的意义,以便更深入地了解它们在现实世界应用场景(如工作和学习环境)中的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Workload-dependent hemispheric asymmetries during the emotion-cognition interaction: a close-to-naturalistic fNIRS study
We investigated brain activation patterns of interacting emotional distractions and cognitive processes in a close-to-naturalistic functional near-infrared spectroscopy (fNIRS) study.Eighteen participants engaged in a monitoring-control task, mimicking common air traffic controller requirements. The scenario entailed experiencing both low and high workload, while concurrently being exposed to emotional speech distractions of positive, negative, and neutral valence.Our investigation identified hemispheric asymmetries in prefrontal cortex (PFC) activity during the presentation of negative and positive emotional speech distractions at different workload levels. Thereby, in particular, activation in the left inferior frontal gyrus (IFG) and orbitofrontal cortex (OFC) seems to play a crucial role. Brain activation patterns revealed a cross-over interaction indicating workload-dependent left hemispheric inhibition processes during negative distractions and high workload. For positive emotional distractions under low workload, we observed left-hemispheric PFC recruitment potentially associated with speech-related processes. Furthermore, we found a workload-independent negativity bias for neutral distractions, showing brain activation patterns similar to those of negative distractions.In conclusion, lateralized hemispheric processing, regulating emotional speech distractions and integrating emotional and cognitive processes, is influenced by workload levels and stimulus characteristics. These findings advance our understanding of the factors modulating hemispheric asymmetries during the processing and inhibition of emotional distractions, as well as the interplay between emotion and cognition. Moreover, they emphasize the significance of exploring emotion-cognition interactions in more naturalistic settings to gain a deeper understanding of their implications in real-world application scenarios (e.g., working and learning environments).
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