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Published on: January 29, 2014
On the other hand: Increased cortical activation to human versus mechanical hands in infants
Marisa Biondi1, David A Boas2, Teresa Wilcox1
1Texas A&M University, College Station, TX 77843, USA.
Insights
Infants
Area of Science:
- Developmental neuroscience
- Cognitive development
- Infant perception
Background:
- Infants distinguish human and mechanical entities early in life.
- Infants have different movement and interaction expectations for human vs. mechanical agents.
- The immature brain's functional organization for these sensitivities is not well understood.
Purpose of the Study:
- To investigate how the immature brain's functional organization reflects infants' sensitivity to human vs. mechanical agents.
- To examine brain activation patterns in response to human and mechanical hands performing functional and non-functional actions.
Main Methods:
- Eighty-month-old infants participated in the study.
- Functional near-infrared spectroscopy (fNIRS) measured hemodynamic activation in temporal and temporal-occipital cortex.
- Infants observed human and mechanical hands performing actions with and without functional outcomes.
Main Results:
- The right middle-posterior temporal cortex showed greater activation to human hands compared to mechanical hands, irrespective of action functionality.
- The left middle-temporal cortex exhibited greater activation to human hands than mechanical hands, but only for functionally relevant actions.
- These findings indicate distinct neural processing for human agents based on action context.
Conclusions:
- The infant brain is functionally specialized for processing human and non-human agents distinctly.
- Cortical mechanisms supporting infants' learning about agentive action and object function are identified.
- These results highlight early specialization in the infant brain for social cognition and action understanding.
Abstract:
There is a large body of work demonstrating that infants are sensitive to the distinction between human and mechanical entities from the early months of life, and have different expectations for the way these entities move and interact. The current work investigates the extent to which the functional organization of the immature brain reflects these early emerging sensitivities. Infants aged 8months watched two kinds of hands (human or mechanical) engage in two kinds of events (one with a functional outcome and one without). Using functional near-infrared spectroscopy (fNIRS), we assessed hemodynamic activation in the left and right temporal and temporal-occipital cortex in response to these events. The neuroimaging data revealed a significantly greater increase in activation in the right middle-posterior temporal cortex to events executed by the human than the mechanical hand; the event in which the hand engaged (function or non-function) did not significantly influence hemodynamic responses. In comparison, the left middle-temporal cortex showed significantly greater activation to events executed by the human than mechanical hand, but only when the events were functionally relevant. That is, the left middle-posterior temporal cortex responded selectively to human (as compared to mechanical) agents, but only in the context of functionally relevant actions on objects. These results reveal that the immature brain is functionally specialized to support infants' processing of human and non-human agents as distinct entities. These results also shed light on the cognitive and cortical mechanisms that guide infants' learning about agentive action and object function.
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