The extended neural architecture of human attachment: An fMRI coordinate-based meta-analysis of affiliative studies

功能磁共振成像 心理学 认知 神经科学 前脑 认知心理学 中枢神经系统
作者
Tiago Bortolini,Maria Clara Laport,Sofia Latgé-Tovar,Ronald Fischer,Roland Zahn,Ricardo de Oliveira‐Souza,Jorge Moll
出处
期刊:Neuroscience & Biobehavioral Reviews [Elsevier]
卷期号:159: 105584-105584 被引量:4
标识
DOI:10.1016/j.neubiorev.2024.105584
摘要

Functional imaging studies and clinical evidence indicate that cortical areas relevant to social cognition are closely integrated with evolutionarily conserved basal forebrain structures and neighboring regions, enabling human attachment and affiliative emotions. The neural circuitry of human affiliation is continually being unraveled as functional magnetic resonance imaging (fMRI) becomes increasingly prevalent, with studies examining human brain responses to various attachment figures. However, previous fMRI meta-analyses on affiliative stimuli have encountered challenges, such as low statistical power and the absence of robustness measures. To address these issues, we conducted an exhaustive coordinate-based meta-analysis of 79 fMRI studies, focusing on personalized affiliative stimuli, including one's infants, family, romantic partners, and friends. We employed complementary coordinate-based analyses (Activation Likelihood Estimation and Signed Differential Mapping) and conducted a robustness analysis of the results. Findings revealed cluster convergence in cortical and subcortical structures related to reward and motivation, salience detection, social bonding, and cognition. Our study thoroughly explores the neural correlates underpinning affiliative responses, effectively overcoming the limitations noted in previous meta-analyses. It provides an extensive view of the neural substrates associated with affiliative stimuli, illuminating the intricate interaction between cortical and subcortical regions. Our findings significantly contribute to understanding the neurobiology of human affiliation, expanding the known human attachment circuitry beyond the traditional basal forebrain regions observed in other mammals to include uniquely human isocortical structures.

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