A comparative magnetic resonance imaging study of the anatomy, variability, and asymmetry of Broca's area in the human and chimpanzee brain

Simon S. Keller, Neil Roberts, William Hopkins

Research output: Contribution to journalArticlepeer-review

69 Scopus citations

Abstract

The frontal operculum - classically considered to be Broca's area - has special significance and interest in clinical, cognitive, and comparative neuroscience given its role in spoken language and the long-held assumption that structural asymmetry of this region of cortex may be related to functional lateralization of human language. We performed a detailed morphological and morphometric analysis of this area of the brain in humans and chimpanzees using identical image acquisition parameters, image analysis techniques, and consistent anatomical boundaries in both species. We report great inter-individual variability of the sulcal contours defining the operculum in both species, particularly discontinuity of the inferior frontal sulcus in humans and bifurcation of the inferior precentral sulcus in chimpanzees. There was no evidence of population-based asymmetry of the frontal opercular gray matter in humans or chimpanzees. The diagonal sulcus was only identified in humans, and its presence was significantly (F = 12.782, p < 0.001) associated with total volume of the ipsilateral operculum. The findings presented here suggest that there is no population-based interhemispheric macroscopic asymmetry of Broca's area in humans or Broca's area homolog in chimpanzees. However, given that previous studies have reported asymmetry in the cytoarchitectonic fields considered to represent Broca's area - which is important given that cytoarchitectonic boundaries are more closely related to the regional functional properties of cortex relative to sulcal landmarks - it may be that the gross morphology of the frontal operculum is not a reliable indicator of Broca's area per se.

Original languageEnglish (US)
Pages (from-to)14607-14616
Number of pages10
JournalJournal of Neuroscience
Volume29
Issue number46
DOIs
StatePublished - Nov 18 2009
Externally publishedYes

ASJC Scopus subject areas

  • General Neuroscience

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