Children's understanding of linear-order (e.g., Dan is taller than Lisa, Lisa is taller than Jess) and set-inclusion (i.e., All tulips are flowers, All flowers are plants) relationships is critical for the acquisition of deductive reasoning, that is, the ability to reach logically valid conclusions from given premises. Behavioral and neuroimaging studies in adults suggest processing differences between these relations: While arguments that involve linear-orders may be preferentially associated with spatial processing, arguments that involve set-inclusions may be preferentially associated with verbal processing. In this study, we use functional magnetic resonance imaging to investigate how and when these processing differences appear in children from 8 to 14.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
60
All participants are scanned while evaluating linear-order and set-inclusion reasoning problems
Hospices Civils de Lyon
Lyon/bron, France
RECRUITINGIdentification of brain regions engaged in linear-order and set-inclusion reasoning
Brain activity measured using fMRI
Time frame: 30 days
Degree of overlap between brain regions involved in linear-order and set-inclusion reasoning
Degree of overlap in brain activity measured using fMRI
Time frame: 30 days
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