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Updated: May 15, 2026

A Within-subjects Experimental Protocol to Assess the Effects of Social Input on Infant EEG
Published on: May 3, 2017
Initiation of joint attention is associated with morphometric variation in the anterior cingulate cortex of
William D Hopkins1, Jared P Taglialatela
1Division of Developmental and Cognitive Neuroscience, Yerkes National Primate Research Center, Atlanta, GA, USA. whopkins4@gsu.edu
Insights
Chimpanzees with poor joint attention (JA) skills showed larger anterior cingulate cortex (ACC) gray matter volumes. These findings suggest the ACC is crucial for JA in both humans and chimpanzees, potentially indicating reduced connectivity in apes with weaker JA abilities.
Area of Science:
- Neuroscience
- Comparative Psychology
- Developmental Biology
Background:
- Joint attention (JA) is a critical preverbal skill for language development in humans.
- Poor JA is a risk factor for neurodevelopmental disorders like autism spectrum disorder.
- The anterior cingulate cortex (ACC) is hypothesized to be vital for JA development in humans.
Purpose of the Study:
- To investigate if ACC morphometry and lateralization differ between chimpanzees with consistent and inconsistent JA skills.
- To explore the role of the ACC in JA across species.
Main Methods:
- Compared ACC gray matter (GM) volumes and lateralization in chimpanzees exhibiting varying levels of JA.
- Classified chimpanzees based on their engagement in JA with a human experimenter.
Main Results:
- Chimpanzees with poorer JA performance had larger ACC GM volumes.
- Observed population-level asymmetries and sex differences in ACC GM volume.
- Females had larger GM volumes in two of three ACC subregions compared to males.
- Found significant leftward asymmetries in two ACC subregions and rightward asymmetry in one.
Conclusions:
- The ACC plays a significant role in mediating JA in both humans and chimpanzees.
- Differences in ACC structure may reflect variations in white matter and cortical connectivity.
- Reduced ACC connectivity might be associated with poorer JA skills in chimpanzees.
Abstract:
In developing human children, joint attention (JA) is an important preverbal skill fundamental to the development of language. Poor JA skills have been described as a behavioral risk factor for some neurodevelopmental disorders, such as autism spectrum disorder. It has been hypothesized that the anterior cingulate cortex (ACC) plays an important role in the development of JA in human children. Here, we tested whether the morphometry and lateralization of the ACC differed between chimpanzees that were classified as either consistently or inconsistently engaging in JA with a human experimenter. Results showed that chimpanzees that performed poorly on the JA task had larger gray matter (GM) volumes in the ACC compared to apes that performed well on the task. In addition, both population-level asymmetries and sex differences in the volume of GM were found within the ACC. Specifically, females had relatively larger GM volumes in two of the three subregions of the ACC compared to males, and significant leftward asymmetries were found for two of the subregions whereas a rightward bias was observed in the third. Based on these findings, we suggest that the ACC plays an important role in mediating JA, not just in humans, but also chimpanzees. We further suggest that the differences found between groups may reflect inherent differences in the amount of white matter within the ACC, thereby suggesting reduced connectivity between the ACC and other cortical regions in chimpanzees with poor JA skills.
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