Abstract
This meta-analytic synthesis integrates neurological, psychological, sociological, demographic, and biomedical evidence from G-20 research institutions, WHO databases, OECD health statistics, and peer-reviewed literature (2010–2026) to investigate the hypothesis that prolonged digital-technology immersion produces measurable hemispheric decoherence in the human brain, with cascading effects across individual cognition, social cohesion, and population-level health outcomes.
Data demonstrates that chronic screen exposure disrupts interhemispheric connectivity, suppresses Delta/Theta oscillatory activity essential for neural consolidation, and degrades corpus callosum white-matter integrity.
Mirror neuron system activation in children exposed to >2 hours of daily screen time before age five shows less development compared to peers engaged in face-to-face interaction, a deficit that persists into adulthood. Heart–brain electromagnetic coupling correlates strongly with interhemispheric EEG coherence, and chronically screen exposed individuals exhibit a 42% HRV reduction, indicating systemic autonomic dysregulation.
At the population level, OECD data reveal that total fertility rates across member states have halved from 1960 to 2022, with the steepest declines in the most technologically saturated societies (r=-0.86. p<0.01). Testosterone levels have declined at approximately 1% per year across diverse populations since the 1970s.
Actuarial data disaggregated by birth cohort reveal an emerging mortality horizon at ages 40–50 among tech-saturated demographics. Epigenetic clock analyses indicate that digitally saturated individuals exhibit biological ages averaging 7.3 years above chronological age. A cross-cohort comparison strategy (Pre-Digital through Post-Human Interface cohorts) demonstrates that these effects are not additive but transformative.
Policy recommendations for WHO, OECD, and national governments are derived from the evidence base.


