✨Our work on BrainACTIV has been accepted at ICLR 2025!✨
Brain Activation Control Through Image Variation (BrainACTIV) is an fMRI-data-driven method for manipulating a reference image to enhance/decrease activity in the visual cortex🧠using pretrained diffusion models🤖. (1/5)
(1/2) We’re excited to announce the Algonauts Project Challenge 2027 with CNeuroMod: How The Human Brain Makes Sense of Video Games 🎮🧠
Launching end of 2026. Top 3 teams will present at CCN 2027 in Edinburgh.
https://t.co/nlbRc7oSR3
#Algonauts2027#NeuroAI#CompNeuro#fMRI
A wide selection of work from the lab at #CCN2026! Excited to share what we’ve been working on and looking forward to the discussions, questions, and feedback over the next few days.
Before ICLR 2025 comes to and end tomorrow, a few #NeuroAI impressions from Singapore. First, very happy to present our work on TopoLM as an oral, here with @neil_rathi
https://t.co/ETNkw9YDRM
paper: https://t.co/4EVAKJysWO
code: https://t.co/MeWXfYXhVZ
We'll be at #ICLR2025 in Singapore this week to present our work on BrainACTIV!
Come by our poster to see how we manipulate images to (de)activate certain parts of the brain 🧠🖼️
📆 Sat 26 Apr, 10:00 - 12:30
Poster session 5 (#60)
✨Our work on BrainACTIV has been accepted at ICLR 2025!✨
Brain Activation Control Through Image Variation (BrainACTIV) is an fMRI-data-driven method for manipulating a reference image to enhance/decrease activity in the visual cortex🧠using pretrained diffusion models🤖. (1/5)
(5/5) This work is part of a collaboration through @Ellis_Amsterdam between Amsterdam (@iris_groen, @sargechris, @PascalMettes) and Frankfurt (@gemmarono, @Omorfiamorphism).
Huge thanks to everyone involved!
See more cool examples in our preprint: https://t.co/cE2N2lfbbV
✨Our work on BrainACTIV has been accepted at ICLR 2025!✨
Brain Activation Control Through Image Variation (BrainACTIV) is an fMRI-data-driven method for manipulating a reference image to enhance/decrease activity in the visual cortex🧠using pretrained diffusion models🤖. (1/5)
(4/5) Manipulating an image with BrainACTIV creates reliable stimulus-control img pairs. Besides a straightforward visual interpretation, this facilitates quantifying differences in semantic and mid-level image features, highlighting those preferred by a brain region of interest.
🌟 Get to know the ELLIS MSc Honours students 🌟
👩🎓 We interviewed 13 MSc Honours students and highlighted how the programme helped them reach their academic goals and their key takeaways from the programme. 👨🎓
🔎 Find the post here: https://t.co/ddw0fuJdUN