Skip to content

Shared subcortical arousal systems across sensory modalities during transient modulation of attention.

Aya Khalaf, Erick Lopez, Jian Li, Andreas Horn, Brian L Edlow, Hal Blumenfeld

Neuroimage May 15, 2025 DOI: 10.1016/j.neuroimage.2025.121224 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Observational cohort Peer reviewed
Sample size 1,561
Population Participants performing visual, auditory, tactile, and taste perception tasks
Keywords Arousal Attention modulation Consciousness Subcortical networks FMRI Brain imaging Sensory processing
Citations 6
Key findings A shared circuit of subcortical arousal systems shows early transient increases in activity in the midbrain reticular formation and central thalamus across visual, auditory, tactile, and taste perception modalities.

Abstract

Subcortical arousal systems are known to play a key role in controlling sustained changes in attention and conscious awareness. Recent studies indicate that these systems have a major influence on short-term dynamic modulation of visual attention, but their role across sensory modalities is not fully understood. In this study, we investigated shared subcortical arousal systems across sensory modalities during transient changes in attention using block and event-related fMRI paradigms. We analyzed massive publicly available fMRI datasets collected while 1561 participants performed visual, auditory, tactile, and taste perception tasks. Our analyses revealed a shared circuit of subcortical arousal systems exhibiting early transient increases in activity in midbrain reticular formation and central thalamus across perceptual modalities, as well as less consistent increases in pons, hypothalamus, basal forebrain, and basal ganglia. Identifying these networks is critical for understanding mechanisms of normal attention and consciousness and may help facilitate subcortical targeting for therapeutic neuromodulation.