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Transfer from Spatial Education to Verbal Reasoning and Prediction of Transfer from Learning-Related Neural Change

Journal Article
Transfer from Spatial Education to Verbal Reasoning and Prediction of Transfer from Learning-Related Neural Change
Publication Year:
2022
Publication Source:
Science Advances
Volume:
8
Issue:
32
Funding Type:
ECR:Core
Author(s):
Cortes, Robert A.; Peterson, Emily G.; Kraemer, David J. M.; Kolvoord, Robert A.; Uttal, David H.; Dinh, Nhi; Weinberger, Adam B.; Daker, Richard J.; Lyons, Ian M.; Goldman, Daniel; Green, Adam E.
Supporting Project(s):

Current debate surrounds the promise of neuroscience for education, including whether learning-related neural changes can predict learning transfer better than traditional performance-based learning assessments. Long-standing debate in philosophy and psychology concerns the proposition that spatial processes underlie seemingly nonspatial/verbal reasoning (mental model theory). If so, education that fosters spatial cognition might improve verbal reasoning. Here, in a quasi-experimental design in real-world STEM classrooms, a curriculum devised to foster spatial cognition yielded transfer to improved verbal reasoning. Further indicating a spatial basis for verbal transfer, students' spatial cognition gains predicted and mediated their reasoning improvement. Longitudinal fMRI detected learning-related changes in neural activity, connectivity, and representational similarity in spatial cognition-implicated regions. Neural changes predicted and mediated learning transfer. Ensemble modeling demonstrated better prediction of transfer from neural change than from traditional measures (tests and grades). Results support in-school spatial education and suggest that neural change can inform future development of transferable curricula.