Generation Alpha (born ~2010–2024) is the first cohort whose critical windows of dopaminergic maturation overlap entirely with mass exposure to AI-optimised short-form looping video platforms. Despite a robust epidemiological signal linking social media to depression, anxiety, attention deficits, and sleep disruption in youth, direct causal neurobiological data remain absent. This narrative review synthesises evidence from developmental neuroscience, mesolimbic dopamine physiology, sleep medicine, and longitudinal neuroimaging cohorts to articulate a mechanistic framework: chronic exposure to algorithmically engineered variable ratio reinforcement schedules may produce homeostatic D2/D3 receptor downregulation in the developing striatum, functionally analogous to the neuroadaptations observed in substance use disorders. This deficit state, characterised by anhedonia and acquired attentional dysregulation, is plausibly amplified by algorithmic disruption of slow-wave sleep—the biological window for glymphatic metabolite clearance and synaptic homeostasis. Converging evidence from the Adolescent Brain Cognitive Development (ABCD) Study documents associations between screen behaviour and grey matter volume, reward-circuit activation, and executive function trajectories across early adolescence. Because direct in vivo measurement of D2 receptor density in children using PET radioligands is ethically prohibited, we propose a cross-species, multimodal longitudinal research framework. This integrates a novel nonhuman primate digital self-administration paradigm with human cohort studies utilising computational phenotyping of algorithmic dosage, polysomnographic sleep monitoring, and annual reward-task fMRI. Current evidence justifies both urgent regulatory action and a dedicated research programme to characterise the neurobiological consequences of a uniquely 21st-century exposure.
Fang et al. (Fri,) studied this question.