In this work, we investigate the dynamic competition between bottom-up saliency and top-down goals in the early visual cortex using rapid invisible frequency tagging (RIFT).
📄 Check it out on bioRxiv: www.biorxiv.org/cgi/content/...
In this work, we investigate the dynamic competition between bottom-up saliency and top-down goals in the early visual cortex using rapid invisible frequency tagging (RIFT).
📄 Check it out on bioRxiv: www.biorxiv.org/cgi/content/...
I'll show data, demonstrating that synesthetic perception is perceptual, automatic, and effortless.
Join my talk (Thursday, early morning.., Color II) to learn how the qualia of synesthesia can be inferred from pupil size.
Join and (or) say hi!
I'll show data, demonstrating that synesthetic perception is perceptual, automatic, and effortless.
Join my talk (Thursday, early morning.., Color II) to learn how the qualia of synesthesia can be inferred from pupil size.
Join and (or) say hi!
@attentionlab.bsky.social @ecvp.bsky.social
Preprint for more details: www.biorxiv.org/content/10.1...
@attentionlab.bsky.social @ecvp.bsky.social
Preprint for more details: www.biorxiv.org/content/10.1...
🧠✨ Our work focused on dynamic competition between bottom-up saliency and top-down goals in early visual cortex by using Rapid Invisible Frequency Tagging
@attentionlab.bsky.social @ecvp.bsky.social
🧠✨ Our work focused on dynamic competition between bottom-up saliency and top-down goals in early visual cortex by using Rapid Invisible Frequency Tagging
@attentionlab.bsky.social @ecvp.bsky.social
Thanks everyone for your contributions 💜
Thanks everyone for your contributions 💜