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Paper   IPM / Cognitive Sciences / 16778
School of Cognitive Sciences
  Title:   Task-dependent neural representations of visual object categories
  Author(s): 
1.  A. Farzmahdi
2.  F. Fallah
3.  R. Rajimehr
4.  R. Ebrahimpour
  Status:   Published
  Journal: European Journal of Neuroscience
  Vol.:  04
  Year:  2021
  Supported by:  IPM
  Abstract:
What do we perceive in a glance of an object? If we are questioned about it, will our perception be affected? How does the task demand influence visual processing in the brain and, consequently, our behaviour? To address these questions, we conducted an object categorisation experiment with three tasks, one at the superordinate level (�¢??animate/inanimate�¢??) and two at the basic levels (�¢??face/body�¢?? and �¢??animal/human face�¢??) along with a passive task in which participants were not required to categorise objects. To control bottom-up information and eliminate the effect of sensory-driven dissimilarity, we used a particular set of animal face images as the identical target stimuli across all tasks. We then investigated the impact of top-down task demands on behaviour and brain representations. Behavioural results demonstrated a superordinate advantage in the reaction time, while the accuracy was similar for all categorisation levels. The event-related potentials (ERPs) for all categorisation levels were highly similar except for about 170�¢??ms and after 300�¢??ms from stimulus onset. In these time windows, the animal/human face categorisation, which required fine-scale discrimination, elicited a differential ERP response. Similarly, decoding analysis over all electrodes showed the highest peak value of task decoding around 170�¢??ms, followed by a few significant timepoints, generally after 300�¢??ms. Moreover, brain responses revealed task-related neural modulation during categorisation tasks compared with the passive task. Overall, these findings demonstrate different task-related effects on the behavioural response and brain representations. The early and late components of neural modulation could be linked to perceptual and top-down processing of object categories, respectively.

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