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Socializing Sensorimotor Contingencies.

Annika Lübbert, Florian Göschl, Hanna Krause, Till R Schneider, Alexander Maye, Andreas K Engel

Frontiers in human neuroscience January 1, 2021 DOI: 10.3389/fnhum.2021.624610 via PubMed

Summary

AI-generated from the abstract

Social cognition can be grounded in sensorimotor interactions shared across agents. An action-oriented account emerges from a broader interpretation of sensorimotor contingencies, where dynamic informational and sensorimotor coupling across agents mediates action-effect contingencies in social contexts. This framework, socializing sensorimotor contingencies (socSMCs), integrates neuroscience, psychology, and human-robot interaction research. Empirical findings suggest sensorimotor and informational entrainment plays an important role in social contexts. Social cognitive phenomena like joint attention, mutual trust, and empathy rely heavily on such coupling between agents. This insight may provide novel remedies for disturbed social cognition and lead to more natural human-robot interfaces.

Study at a glance

Characteristics Review Peer reviewed
Keywords Autism spectrum disorder Coordination dynamics Coupling Human–robot interaction Joint action
Citations 14
Key finding Social cognitive phenomena like joint attention, mutual trust, and empathy rely heavily on informational and sensorimotor coupling between agents.

Abstract

The aim of this review is to highlight the idea of grounding social cognition in sensorimotor interactions shared across agents. We discuss an action-oriented account that emerges from a broader interpretation of the concept of sensorimotor contingencies. We suggest that dynamic informational and sensorimotor coupling across agents can mediate the deployment of action-effect contingencies in social contexts. We propose this concept of socializing sensorimotor contingencies (socSMCs) as a shared framework of analysis for processes within and across brains and bodies, and their physical and social environments. In doing so, we integrate insights from different fields, including neuroscience, psychology, and research on human-robot interaction. We review studies on dynamic embodied interaction and highlight empirical findings that suggest an important role of sensorimotor and informational entrainment in social contexts. Furthermore, we discuss links to closely related concepts, such as enactivism, models of coordination dynamics and others, and clarify differences to approaches that focus on mentalizing and high-level cognitive representations. Moreover, we consider conceptual implications of rethinking cognition as social sensorimotor coupling. The insight that social cognitive phenomena like joint attention, mutual trust or empathy rely heavily on the informational and sensorimotor coupling between agents may provide novel remedies for people with disturbed social cognition and for situations of disturbed social interaction. Furthermore, our proposal has potential applications in the field of human-robot interaction where socSMCs principles might lead to more natural and intuitive interfaces for human users.

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