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冲突处理机制在欺骗反应中的作用。

The role of conflict processing mechanism in deception responses.

机构信息

Beijing Machine and Equipment Institute, Beijing, 100854, China.

National Key Laboratory of Human Factors Engineering, China Astronaut Research and Training Center, Beijing, 100094, China.

出版信息

Sci Rep. 2022 Oct 31;12(1):18300. doi: 10.1038/s41598-022-21569-7.

Abstract

A considerable number of studies have described the potential neural mechanism of deception, but most deception studies have relied upon deception from experimental supervisor instruction. Experimental control (participants follow instructions to deceive without any risk) means that the deception occurs in a way that does not come close to the real deception. In the current study, a neural imaging experiment on deception closer to the real deception was conducted. Event-related potential (ERP) and event-related spectral perturbation (ERSP) techniques were used to explore the neural mechanism of deception. The results showed that deceptive response evoked larger medial-frontal negativity (MFN) and smaller response-locked positivity (RLP) than truthful response. We interpret these findings to indicate that conflict detection and emotional processing are associated with deception. In addition, magnitudes of alpha and beta oscillations after the deceptive response were significantly smaller than those after the truthful response, demonstrating that deception is associated with neural oscillations reflecting conflict adjustment. The results comprehensively characterized the physiological properties of the brain oscillations elicited by a deceptive response and provided a theoretical foundation for detection in practical applications.

摘要

大量研究描述了欺骗的潜在神经机制,但大多数欺骗研究依赖于实验主管的指令来进行欺骗。实验控制(参与者遵循指令进行欺骗而没有任何风险)意味着欺骗是以一种不太接近真实欺骗的方式发生的。在当前的研究中,进行了一项更接近真实欺骗的欺骗神经成像实验。使用事件相关电位(ERP)和事件相关频谱微扰(ERSP)技术来探索欺骗的神经机制。结果表明,欺骗反应引起的内侧额负波(MFN)比真实反应更大,反应锁定正波(RLP)更小。我们解释这些发现表明,冲突检测和情绪处理与欺骗有关。此外,欺骗反应后的α和β振荡幅度明显小于真实反应后的振荡幅度,表明欺骗与反映冲突调整的神经振荡有关。研究结果全面描述了欺骗反应引起的脑振荡的生理特性,为实际应用中的检测提供了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae7/9622869/cada85527dec/41598_2022_21569_Fig1_HTML.jpg

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