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Near-Infrared Spectroscopy Applied to Complex Systems and Human Hyperscanning Networking

机译:近红外光谱技术应用于复杂系统和人类超扫描网络

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Concepts and techniques developed to investigate complex systems have found practical implications in the study of many complex physical, biological, and social phenomena. Social neuroscience is coherently moving to new investigation and analysis approaches to properly explore social dynamics and to qualify neural processes that mediate and define them. The present paper aims to sketch a global picture of the application of the concept of synchronization to study complex social systems and the neural signatures of interpersonal coupling during interaction dynamics. We then focus on an innovative experimental paradigm— hyperscanning —that allows researchers to sample, compare, and integrate information flows related to the bodily activities of two (or more) individuals involved in a shared naturalistic or experimentally-controlled task, thus giving the opportunity to explore inter-individual synchronization and inter-brain coupling. In particular, the potential of functional Near-Infrared Spectroscopy (fNIRS) as a primary investigation tool in the field is discussed. Finally, we introduce the most-used quantification and analysis methods for hyperscanning applications.
机译:为研究复杂系统而开发的概念和技术已在研究许多复杂的物理,生物和社会现象中发现了实际意义。社会神经科学正在一致地转向新的调查和分析方法,以适当地探索社会动态并限定介导和定义它们的神经过程。本文旨在概述同步概念在研究复杂的社会系统和人际交往过程中人际交往的神经学特征方面的应用情况。然后,我们专注于一种创新的实验范式-超扫描-研究人员可以抽样,比较和整合与参与共同的自然主义或实验控制任务的两个(或多个)个体的身体活动有关的信息流,从而提供机会探索个体之间的同步和大脑之间的耦合。特别是,讨论了功能近红外光谱(fNIRS)作为该领域主要研究工具的潜力。最后,我们介绍了超扫描应用程序中最常用的量化和分析方法。

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