Multivariable pattern classification differentiates relational self-esteem from personal self-esteem.
Jiwen Li,Mei Zeng,Mingyan Liu,Xiaolin Zhao,Weiyu Hu,Chong Wang,Chijun Deng,Rong Li,Huafu Chen,Juan Yang +9 more
TL;DR: In this paper, a stable diagnostic signature of relational self-esteem relative to PSE was obtained by using multivariate pattern classification to differentiate RSE from PSE, and these diagnostic neural signatures were able to sensitively decode neural activities related to RSE in another independent test sample.
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Abstract: Relational self-esteem (RSE) refers to one's sense of self-worth based on the relationship with significant others, such as family and best friends. Although previous neuroimaging research has investigated the neural processes of RSE, it is less clear how RSE is represented in multivariable neural patterns. Being able to identify a stable RSE signature could contribute to knowledge about relational self-worth. Here, using multivariate pattern classification to differentiate RSE from personal self-esteem (PSE), which pertains to self-worth derived from personal attributes, we obtained a stable diagnostic signature of RSE relative to PSE. We found that multivariable neural activities in the superior/middle temporal gyrus, precuneus, posterior cingulate cortex, dorsal medial Prefrontal Cortex (dmPFC) and temporo-parietal junction were responsible for diagnosis of RSE, suggesting that the evaluation of RSE involves the retrieval of relational episodic memory, perspective-taking and value calculation. Further, these diagnostic neural signatures were able to sensitively decode neural activities related to RSE in another independent test sample, indicating the reliability of the brain state represented. By providing a reliable multivariate brain pattern for RSE relative to PSE, our results informed more cognitively prominent processing of RSE than that of PSE and enriched our knowledge about how relational self-worth is generated in the brain.
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Citations
Identifying the Shared and Dissociable Neural Bases between Self-Worth and Moral Ambivalence
Jiwen Li,Xiaogang Wang,Tengfei Du,Jennifer Tang,Juan Yang +4 more
TL;DR: This study examines the neural bases of self-worth and moral ambivalence in 112 college students, finding associations with the superior parietal lobule, orbitofrontal cortex, and temporoparietal junction, involved in attention, value representation, and mentalizing.
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Neural representation of collective self-esteem in resting-state functional connectivity and its validation in task-dependent modality
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TL;DR: CSE neural basis in the whole-brain RSFC network is revealed, and the concordance between leverage centrality and the activation pattern of the identified regions in terms of representing CSE is established.
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References
DPARSF: A MATLAB Toolbox for “Pipeline” Data Analysis of Resting-State fMRI
Yan Chao-Gan,Zang Yu-Feng +1 more
TL;DR: A MATLAB toolbox called Data Processing Assistant for Resting-State fMRI (DPARSF) for "pipeline" data analysis of resting-state fMRI is developed and users can use DPARSF to extract time courses from regions of interest.
A Collective Self-Esteem Scale: Self-Evaluation of One's Social Identity
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TL;DR: In this paper, a scale was constructed to assess individual differences in collective, rather than personal, self-esteem, with four subscales (Membership esteem, public collective selfesteem, private collective self esteem, and importance to identity), and evidence for reliability and validity of the scale was provided by three studies.
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TL;DR: A connectivity-based parcellation framework is designed that identifies the subdivisions of the entire human brain, revealing the in vivo connectivity architecture and provides a fine-grained, cross-validated atlas and contains information on both anatomical and functional connections.
2.7K
Self-referential processing in our brain--a meta-analysis of imaging studies on the self.
Georg Northoff,Alexander Heinzel,Moritz de Greck,Felix Bermpohl,Felix Bermpohl,Henrik Dobrowolny,Jaak Panksepp +6 more
TL;DR: It is concluded that self-referential processing in CMS constitutes the core of the authors' self and is critical for elaborating experiential feelings of self, uniting several distinct concepts evident in current neuroscience.
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Information-based functional brain mapping
TL;DR: The development of high-resolution neuroimaging and multielectrode electrophysiological recording provides neuroscientists with huge amounts of multivariate data, but the local averaging standardly applied to this end may obscure the effects of greatest neuroscientific interest.
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