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The Graduate Center, CUNY


Smartwatches and GPS show promise for tracking environmental impacts on health in real time

A pilot study demonstrates the feasibility of combining wearable devices, smartphone location data, and real-time surveys to capture individuals' environmental exposures and their immediate physical and emotional effects. The integrated approach reveals patterns in heart rate variability, mood shifts, and physiological responses linked...

SourceThe Graduate Center, CUNY·JournalJMIR Formative Research·TypeExperimental study·DateMay 8, 2026

Building everyday behavioral skills in early childhood could shield young brains from prenatal stress

Researchers found that building everyday behavioral skills in early childhood can shield young brains from the detrimental effects of prenatal stress. Children with stronger adaptive skills showed comparable brain activation patterns to their unexposed peers, suggesting these skills may protect brain function.

SourceThe Graduate Center, CUNY·JournalDevelopmental Neuroscience·TypeImaging analysis·DateApr 24, 2026

Creativity feels great — until tomorrow

A new study published in The Journal of Positive Psychology found that creativity improves daily well-being, but professional creatives experience a 'creative hangover' with more negative emotions the next day. This research challenges the idea that creativity is always good for mental health.

SourceThe Graduate Center, CUNY·JournalThe Journal of Positive Psychology·TypeContent analysis·DateFeb 23, 2026

CUNY Graduate Center and its academic partners awarded more than $1M by Google.org to advance statewide AI education through the Empire AI consortium

The CUNY Graduate Center has received a $1 million grant from Google.org to support the work of Empire AI, a statewide consortium of 11 public and private academic institutions focused on advancing AI integration in higher education. The award will further the reach of a comprehensive assessment of how best to prepare students for an A...

New research identifies early sensorimotor markers for autism spectrum disorder

A study published in iScience has uncovered significant findings related to the early sensorimotor features and cognitive abilities of toddlers who are later diagnosed with Autism Spectrum Disorder (ASD). The research suggests that a higher IQ may confer resilience to atypical sensorimotor functioning, highlighting the need for more pr...

SourceThe Graduate Center, CUNY·JournaliScience·TypeObservational study·DateAug 14, 2024

Fly brain, mouse brain, worm brain: They all network the same

Researchers analyzed large datasets of neural wiring in fruit flies, mice, and worms to compare networks across species. They created a mathematical model based on Hebbian plasticity, which shows how strong connections form and leads to clustering, suggesting a shared principle of self-organization governs brain network formation.

SourceThe Graduate Center, CUNY·JournalNature Physics·TypeData/statistical analysis·DateJan 17, 2024

A new AI model can accurately predict human response to novel drug compounds

A new AI model called CODE-AE can accurately predict the efficacy of novel drug compounds in humans, addressing a major challenge in drug discovery. The technique has been shown to improve accuracy and robustness over state-of-the-art methods, with potential applications in personalized medicine.

SourceThe Graduate Center, CUNY·JournalNature Machine Intelligence·TypeComputational simulation/modeling·DateOct 17, 2022

New research shows children exposed to natural disasters in the womb have higher rates of developmental psychopathology in a sex-specific manner

Researchers found that children prenatally exposed to Superstorm Sandy had substantially increased risks for depression, anxiety, and attention deficit disorders. Male children had elevated risks for attention deficit and disruptive behavioral disorders, while female children had elevated risks for anxiety disorders.

SourceThe Graduate Center, CUNY·JournalJournal of Child Psychology and Psychiatry·TypeObservational study·DateSep 21, 2022

Scientists are unravelling the mystery of the arrow of time

Researchers at CUNY Graduate Center explore how particles and cells give rise to large-scale dynamics that we experience as the passage of time. They found that the arrow of time emerges from simple interactions between pairs of neurons, not large groups. This discovery has implications for physics, neuroscience, and biology.

SourceThe Graduate Center, CUNY·JournalPhysical Review Letters·TypeMeta-analysis·DateAug 22, 2022