短信与大脑:面对面交流与基于文本的计算机媒介交流中社会大脑激活的时间过程

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Raul Sacristan, Sam Royle, Adam Galpin
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引用次数: 0

摘要

通过进化,人类已经适应了面对面的交流,在神经系统网络的支持下,促进了成功交流的社会信号的传递和解释。然而,新兴的媒介沟通方式正在迅速改变我们的沟通习惯。例如,短信已经成为一种主要的交流方式,在某些情况下超过了面对面的交流。本研究探讨了面对面交流(FtF)和基于文本的计算机媒介交流(CMC)在交流过程中的神经激活差异。研究人员招募了17对参与者,每对参与者在每种交流条件下进行10分钟的对话。利用功能性近红外光谱测量了参与社会认知的两个相关神经结构:腹内侧前额叶皮层(vmPFC)和背内侧前额叶皮层(dmPFC)的神经活动。结果表明,与FtF相比,基于文本的CMC在dmPFC中产生了更多的活性。在基于文本的CMC和FtF条件下,vmPFC中没有观察到总体差异,尽管随着时间的推移存在线性趋势,表明仅在FtF条件下通过对话增加激活。研究结果表明,参与社会认知的关键大脑区域的神经激活存在差异,并强调了脑成像在揭示神经系统参与不同交流环境的方式方面的效用。了解神经激活的这些差异可以帮助我们深入了解大脑如何处理不同的交流方式,并指导我们构建工具,帮助基于文本的交流提供更自然的体验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Texting and the brain: The time-course of social brain activation in face-to-face versus text-based computer-mediated-communication
Through evolution, humans have adapted their interactions to face-to-face communication, supported by a network of neural systems which facilitate the transmission and interpretation of social signals for successful communication. However, emerging methods of mediated communication are rapidly shifting our communication habits. For instance, text messaging has become a dominant mode of communication, surpassing face-to-face interaction in some contexts. This study explored differences in neural activation between face-to-face (FtF) and text-based computer-mediated communication (CMC) during a conversation between two communication partners. Seventeen pairs of participants were recruited and each pair undertook a ten-minute conversation in each communication condition. Functional near-infrared spectroscopy was utilized to measure neural activity in two relevant neural structures involved in social cognition: the ventro-medial prefrontal cortex (vmPFC), and the dorsomedial prefrontal cortex (dmPFC). The results indicated that text-based CMC generated more activity in dmPFC relative to FtF. No overall differences were observed between text-based CMC and FtF conditions in the vmPFC, although a linear trend existed across time showing increasing activation through the conversation in the FtF condition only. The results suggest there are differences in neural activations in key brain regions involved in social cognition and highlight the utility of brain imaging to reveal the way neural systems are engaged in different communication contexts. Understanding these differences in neural activation can provide insight into how the brain processes different communication methods and guide us to build tools that will aid text-based communication to provide more naturalistic experiences.
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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