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Position representations of moving objects align with real-time position in the early visual response

Authors :
Johnson, PA
Blom, T
van Gaal, S
Feuerriegel, D
Bode, S
Hogendoorn, H
Johnson, PA
Blom, T
van Gaal, S
Feuerriegel, D
Bode, S
Hogendoorn, H
Publication Year :
2022

Abstract

When localising a moving object, the brain receives outdated sensory information about its position, due to the time required for neural transmission and processing. The brain may overcome these fundamental delays through predictively encoding the position of moving objects using information from their past trajectories. In the present study, we evaluated this proposition using multivariate analysis of high temporal resolution electroencephalographic data. We tracked neural position representations of moving objects at different stages of visual processing, relative to the real-time position of the object. During early stimulus-evoked activity, position representations of moving objects were activated substantially earlier than the equivalent activity evoked by unpredictable flashes, aligning the earliest representations of moving stimuli with their real-time positions. These findings indicate that the predictability of straight trajectories enables full compensation for the neural delays accumulated early in stimulus processing, but that delays still accumulate across later stages of cortical processing.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1373000608
Document Type :
Electronic Resource