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An Open, Fully-processed, Longitudinal Data Resource to Study Brain Development and Transdiagnostic Executive Function

Sevchik, B. L.; Shafiei, G.; Murtha, K.; Linguiti, S.; Brodrick, L.; Brook, J. B. H.; Cieslak, M.; Flook, E.; Mehta, K.; Meisler, S. L.; Ruparel, K.; Rush, S.; Salo, T.; Singleton, S. P.; Tong, T. T.; Salunke, M.; Bassett, D. S.; Calkins, M. E.; Elliott, M. A.; Gur, R. E.; Gur, R. C.; Moore, T. M.; Scott, J. C.; Shinohara, R. T.; Tisdall, M. D.; Wolf, D. H.; Roalf, D. R.; Satterthwaite, T. D.

2025-11-12 neuroscience
10.1101/2025.11.10.687633 bioRxiv
Show abstract

Executive function (EF) develops rapidly during adolescence. However, deficits in EF also emerge in adolescence, representing a transdiagnostic symptom associated with many forms of psychopathology. To promote transdiagnostic research on EF during development, we introduce a new data resource - the Penn Longitudinal Executive functioning in Adolescent Development study (Penn LEAD) - that combines longitudinal multi-modal imaging data with rich clinical and cognitive phenotyping. These data include 225 imaging sessions from 132 individuals (8-16 years old at the time of enrollment) who are typically developing (27.3%), or meet criteria for attention-deficit hyperactivity disorder (20.5%) or the psychosis-spectrum (52.3%). In addition to phenotypic data from multiple cognitive tasks focused on EF, the study includes data from structural MRI, diffusion MRI, n-back task fMRI, resting-state fMRI, and arterial spin-labeled MRI. Notably, all raw data, fully-processed derived data, and detailed quality control recommendations are publicly shared on OpenNeuro. We anticipate that such analysis-ready data will accelerate research on EF development in psychiatry.

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