Ren Jie, Zhang Mingming, Liu Shuaicheng, He Weiqi, Luo Wenbo
Key Laboratory of Brain and Cognitive Neuroscience, Liaoning Province, Dalian 116029, China.
Research Center of Brain and Cognitive Neuroscience, Liaoning Normal University, Dalian 116029, China.
Brain Sci. 2024 Nov 22;14(12):1172. doi: 10.3390/brainsci14121172.
As a form of visual input, bodily expressions can be maintained and manipulated in visual working memory (VWM) over a short period of time. While the prefrontal cortex (PFC) plays an indispensable role in top-down control, it remains largely unclear whether this region also modulates the VWM storage of bodily expressions during a delay period. Therefore, the two primary goals of this study were to examine whether the emotional bodies would elicit heightened brain activity among areas such as the PFC and extrastriate body area (EBA) and whether the emotional effects subsequently modulate the functional connectivity patterns for active maintenance during delay periods. During functional magnetic resonance imaging (fMRI) scanning, participants performed a delayed-response task in which they were instructed to view and maintain a body stimulus in working memory before emotion categorization (happiness, anger, and neutral). If processing happy and angry bodies consume increased cognitive demands, stronger PFC activation and its functional connectivity with perceptual areas would be observed. Results based on univariate and multivariate analyses conducted on the data collected during stimulus presentation revealed an enhanced processing of the left PFC and left EBA. Importantly, subsequent functional connectivity analyses performed on delayed-period data using a psychophysiological interaction model indicated that functional connectivity between the PFC and EBA increases for happy and angry bodies compared to neutral bodies. The emotion-modulated coupling between the PFC and EBA during maintenance deepens our understanding of the functional organization underlying the VWM processing of bodily information.
作为一种视觉输入形式,身体表情可以在短时间内保存在视觉工作记忆(VWM)中并进行操控。虽然前额叶皮层(PFC)在自上而下的控制中起着不可或缺的作用,但在延迟期该区域是否也调节身体表情的VWM存储仍不清楚。因此,本研究的两个主要目标是检查情绪化身体是否会在诸如前额叶皮层和纹外体区(EBA)等区域引发增强的大脑活动,以及随后的情绪效应是否会调节延迟期主动维持的功能连接模式。在功能磁共振成像(fMRI)扫描期间,参与者执行了一项延迟反应任务,在该任务中,他们被指示在进行情绪分类(快乐、愤怒和中性)之前,在工作记忆中查看并保持身体刺激。如果处理快乐和愤怒的身体需要增加认知需求,那么将观察到更强的前额叶皮层激活及其与感知区域的功能连接。基于在刺激呈现期间收集的数据进行的单变量和多变量分析结果显示,左前额叶皮层和左纹外体区的处理增强。重要的是,随后使用心理生理交互模型对延迟期数据进行的功能连接分析表明,与中性身体相比,快乐和愤怒身体的前额叶皮层与纹外体区之间的功能连接增加。维持期间前额叶皮层与纹外体区之间的情绪调节耦合加深了我们对身体信息VWM处理背后功能组织的理解。