Sensory Stimulation
sensory stimulation
Anton Arkhipov
The Scientist will develop bio-realistic network simulations at the level of a cortical area and the whole cortex, leveraging our multimodal datasets on brain composition and connectivity and training models on in vivo data using AI approaches. The goal is to use modeling together with experiments from our collaborators to understand the mechanisms underlying brain responses to sensory stimulation, including periodic sensory stimuli and the resulting entrainment of neuronal populations.
Biological and experience-based trajectories in adolescent brain and cognitive development
Adolescent development is not only shaped by the mere passing of time and accumulating experience, but it also depends on pubertal timing and the cascade of maturational processes orchestrated by gonadal hormones. Although individual variability in puberty onset confounds adolescent studies, it has not been efficiently controlled for. Here we introduce ultrasonic bone age assessment to estimate biological maturity and disentangle the independent effects of chronological and biological age on adolescent cognitive abilities, emotional development, and brain maturation. Comparing cognitive performance of participants with different skeletal maturity we uncover the impact of biological age on both IQ and specific abilities. With respect to emotional development, we find narrow windows of highest vulnerability determined by biological age. In terms of neural development, we focus on the relevance of neural states unrelated to sensory stimulation, such as cortical activity during sleep and resting states, and we uncover a novel anterior-to-posterior pattern of human brain maturation. Based on our findings, bone age is a promising biomarker of adolescent maturity.
Robust Encoding of Abstract Rules by Distinct Neuronal Populations in Primate Visual Cortex
I will discuss our recent evidence showing that information about abstract rules can be decoded from neuronal activity in primate visual cortex even in the absence of sensory stimulation. Furthermore, that rule information is greatest among neurons with the least visual activity and the weakest coupling to local neuronal networks. In addition, I will talk about recent developments in large-scale neurophysiological techniques in nonhuman primates.
Sensory stimulation boosts brain dynamics fluidity and memory performance in Alzheimer’s disease mice
COSYNE 2025
Multisensory stimulation improves target tracking in zebrafish during rheotaxis
FENS Forum 2024
Non-invasive sensory stimulation mitigates stress-induced neuroimmune responses in a sex- and frequency-specific manner
FENS Forum 2024
A novel multisensory stimulation setup for refuge tracking in weakly electric fish
FENS Forum 2024