Decreased frontal lobe complexity in left-behind children during joint attention: a fNIRS study with multivariable and multiscale sample entropy analysis

Author:

Ding Keya1ORCID,Wang Hongan23ORCID,Li Chuanjiang4ORCID,Li Hui5ORCID

Affiliation:

1. Shanghai Institute of Early Childhood Education, Shanghai Normal University , Shanghai , China

2. Key Laboratory of Child Development and Learning Science of Ministry of Education , School of Biological Science and Medical Engineering, , Nanjing , China

3. Southeast University , School of Biological Science and Medical Engineering, , Nanjing , China

4. College of Child Development and Education, Zhejiang Normal University , Hangzhou , China

5. Faculty of Education and Human Development, The Education University of Hong Kong , Hong Kong , China

Abstract

Abstract Human brain development is shaped by experiences, especially during preschool, the critical period for cognitive and socioemotional development. This study employed the functional Near-Infrared Spectroscopy technique to explore the neural differences between left-behind children (LBC) and non-left-behind children (NLBC) on joint attention. Through collecting brain image data of 50 children (26 boys, aged 65.08 ± 6.28 months) and conducting multivariable and multiscale sample entropy (MMSE) analysis, the present study found that: (i) LBC showed lower brain complexity than NLBC in right prefrontal cortex; (ii) all participants demonstrated higher brain complexity in responding to joint attention conditions, compared to initiating joint attention ones; (iii) their brain complexity during joint attention was negatively associated with their emotional abilities. The findings advance our understanding of early brain development in LBC by providing evidence for the neural process characteristics of joint attention. Implications for early intervention to promote their brain development are also addressed.

Funder

National Natural Science Foundation of China

Zhejiang Province Philosophy and Social Sciences Planning Youth Project

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

Reference74 articles.

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