bioRxiv · 10.64898/2026.01.27.702083
Attention-like regulation of theta sweeps in the brain's spatial navigation circuit
Abstract
Spatial attention supports navigation by prioritizing information from selected locations. A candidate neural mechanism is provided by theta-paced sweeps in grid- and place-cell population activity, which sample nearby space in a left-right-alternating pattern coordinated by parasubicular direction signals. During exploration, this alternation promotes uniform spatial coverage, but whether sweeps can be flexibly tuned to locations of particular interest remains unclear. Using large-scale Neuropixels recordings in freely-behaving rats, we show that sweeps and direction signals are rapidly and dynamically modulated: they track moving targets during pursuit, precede orienting responses during immobility, and reverse during backward locomotion--without prior spatial learning. Similar modulation occurs during REM sleep. Canonical head-direction signals remain head-aligned. These findings identify sweeps as a flexible, attention-like mechanism for selectively sampling allocentric cognitive maps.
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Vollan, A. Z., Schellenberger, M. F., Moser, M.-B., Moser, E. I.. 2026-01-28. Attention-like regulation of theta sweeps in the brain's spatial navigation circuit. https://doi.org/10.64898/2026.01.27.702083
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