Pattern similarity in the frontoparietal control network reflects an "off-veridical" template that optimizes target-match decisions during visual search
Yu, X.; Geng, J. J.
Show abstract
Theories of attention hypothesize the existence of an "attentional" or "target" template that contains task-relevant information in memory when searching for an object. The target template contributes to visual search by directing visual attention towards potential targets and serving as a decisional boundary for target identification. However, debate still exists regarding how template information is stored in the human brain. Here, we conducted a pattern-based fMRI study to assess how template information is encoded to optimize target-match decisions during visual search. To ensure that match decisions reflect visual search demands, we used a visual search paradigm in which all distractors were linearly separable but highly similar to the target and were known to shift the target representation away from the distractor features (Yu & Geng, 2019). In a separate match-to-sample probe task, we measured the target representation used for match decisions across two resting state networks that have long been hypothesized to maintain and control target information: the frontoparietal control network (FPCN) and the visual network (VisN). Our results showed that lateral prefrontal cortex in FPCN maintained the context-dependent "off-veridical" template; in contrast, VisN encoded a veridical copy of the target feature during match decisions. By using behavioral drift diffusion modeling, we verified that the decision criterion during visual search and the probe task relied on a common biased target template. Taken together, our results suggest that sensory-veridical information is transformed in lateral prefrontal cortex into an adaptive code of target-relevant information that optimizes decision processes during visual search.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Preparatory attentional templates in prefrontal and sensory cortex encode target-associated information 99%
- Activity in perirhinal and entorhinal cortex predicts perceived visual similarities among category exemplars with highest precision 98%
- Stimulus representation in human frontal cortex supports flexible control in working memory 98%
Similar papers in this journal
- Individual differences in spatial working memory strategies differentially reflected in the engagement of control and default brain networks 97%
- Strategic control of location and ordinal context in visual working memory 97%
- The locus of recognition memory signals in human cortex depends on the complexity of the memory representations 97%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.