Skip to main navigation Skip to search Skip to main content

The Human Basolateral Amygdala Is Indispensable for Social Experiential Learning

  • Lisa A. Rosenberger*
  • , Christoph Eisenegger
  • , Michael Naef
  • , David Terburg
  • , Jorique Fourie
  • , Dan J. Stein
  • , Jack van Honk*
  • *Corresponding author for this work
  • Royal Holloway University of London
  • Neuropsychopharmacology & Biopsychology Unit, Department of Basic Psychological Research and Research Methods, Faculty of Psychology, University of Vienna, 1010 Vienna, Austria
  • Department of Psychiatry and Mental Health, MRC Unit on Risk & Resilience in Mental Disorders, University of Cape Town, Observatory, 7925 Cape Town, South Africa
  • Department of Psychiatry and Mental Health, MRC Unit on Risk & Resilience in Mental Disorders, University of Cape Town, Observatory, 7925 Cape Town, South Africa
  • Department of Psychiatry and Mental Health, MRC Unit on Risk & Resilience in Mental Disorders, University of Cape Town, Observatory, 7925 Cape Town, South Africa
  • Institute of Infectious Disease and Molecular Medicine (IDM), University of Cape Town, Observatory, 7925 Cape Town, South Africa

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Trust and betrayal are central to our social world, and adaptive responses to generous and selfish behavior are crucial to our economic and social well-being [1]. We learn about others’ trustworthiness through trial and error during repeated interactions [2]. By reinforcing and suppressing behavior during positive and negative interactions with conspecifics, rodent research has established a crucial role for the basolateral amygdala (BLA) in social experiential learning [3, 4]. The human BLA has undergone a reorganization with massive expansion relative to other amygdala nuclei [5], and there is no translational research on its role in experiential learning. The human amygdala is traditionally researched as a single structure [6], neglecting the sub-nuclei's structural und functional differences [7], which might explain inconsistent findings in research on social interactions [8, 9]. Here, we study whether the human BLA is necessary for social and non-social experiential learning by testing a group of five humans with selective bilateral damage to the BLA. We compared their learning behavior in a repeated trust game, and a non-social control task, to healthy, matched controls. Crucially, BLA-damaged subjects, unlike control subjects, completely failed to adapt their investments when interacting with a trustworthy and an untrustworthy partner. In the non-social task, BLA-damaged subjects learned from positive outcomes but differed from the controls by not learning from negative outcomes. Our data extend findings in rodent research by showing that the human BLA is essential for social experiential learning and provide confirmatory evidence of divergent mechanisms for differentially valenced outcomes in non-social learning.

Original languageEnglish
Pages (from-to)3532-3537.e3
JournalCurrent Biology
Volume29
Issue number20
DOIs
Publication statusPublished - 21 Oct 2019

Funding

In loving memory of Christoph Eisenegger, who was the mind and soul behind this project. Chris died in Namibia, 27 February 2017. We thank Marijn Moerbeek for creating Figure 1 and Claus Lamm for valuable feedback on the manuscript. The work in this paper was supported by the National Research Foundation (NRF) South Africa, the South African Medical Research Council , the University of Cape Town (UCT), Utrecht University (UU), Royal Holloway , the Vienna Science and Technology Fund ( WWTF VRG13-007 ), and the Marietta-Blau grant (OeAD-GmbH and the Austrian Ministry for Science, Research, and Economics [BMWFW]).

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • basolateral amygdala
  • brain lesion
  • decision making
  • neuroeconomics
  • neuroimaging
  • social learning
  • trust
  • trust game
  • Urbach-Wiethe disease

Fingerprint

Dive into the research topics of 'The Human Basolateral Amygdala Is Indispensable for Social Experiential Learning'. Together they form a unique fingerprint.

Cite this