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.

Neuroimage
|July 16, 2016
PubMed

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.