Reposted by Amir Ozhan DehghaniHafez Ghaemi @hafezghm.bsky.social · 19/09/2025Excited to share that seq-JEPA has been accepted to NeurIPS 2025! 2172
Reposted by Amir Ozhan DehghaniPouya Bashivan 🇮🇷🇨🇦 @bashivan.bsky.social · 09/08/2025We’ll be at CCN next week with two posters, one contributed talk and one satellite talk! If you are interested in neural coding in primate hippocampus, modeling visual search, or cortical topography come and talk to us! See👇for details: 1204
Reposted by Amir Ozhan DehghaniShahab Bakhtiari @shahabbakht.bsky.social · 31/07/2025A few years ago, with @tyrellturing.bsky.social @patrickmineault.bsky.social and others, we showed one single objective (prediction) was sufficient for explaining specialized pathways of mouse visual cortex: tinyurl.com/2vsjbve7 Super cool to see the same observation now for human visual cortex.proceedings.neurips.ccThe functional specialization of visual cortex emerges from training parallel pathways with self-supervised predictive learning 2398
Amir Ozhan Dehghani @amirozhan.bsky.social · 23/04/2025📌 Poster Session: When📅: Friday, April 25 from 10:00 AM to 12:30 PM Where: Hall 3 + Hall 2B #60 Check out our project page: amirozhan.github.io/CBSOM/ See you soon! @mila-quebec.bsky.social 011
Amir Ozhan Dehghani @amirozhan.bsky.social · 23/04/2025I’ll be at @iclr-conf.bsky.social presenting our work “Credit-based self organizing maps: training deep topographic networks with minimal performance degradation” — if you're into #NeuroAI, cortical topography, vision, or just up for a good convo, drop by and DM me! 🧠✨ 181
Reposted by Amir Ozhan DehghaniShahab Bakhtiari @shahabbakht.bsky.social · 14/03/2025📢 We have a new #NeuroAI postdoctoral position in the lab! If you have a strong background in #NeuroAI or computational neuroscience, I’d love to hear from you. (Repost please) 🧠📈🤖 25940
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/2025People who might be interested: @taliakonkle.bsky.social, @mschrimpf.bsky.social, @apurvaratan.bsky.social @nancykanwisher.bsky.social 020
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/202511/ Last (but not least), this work wouldn’t have been possible without the help of my collaborators @Xinyu Qian, @asafarahani.bsky.social and research advisor @bashivan.bsky.social ⭐️ 110
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/202510/ Our results signify the potentially critical role of top-down assigned credits in shaping the topographical organization within the cortex. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20259/ Finally, we show that compared to other baselines including classic SOM (AB-SOM) and TDANN, CB-SOM shows substantially higher alignment with neural activity in the visual cortex of both macaques (Brain-Score) and humans (NSD). 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20258/ Similarly, the model’s deeper layers replicated the organization of the higher-level visual cortical regions according to category-selectivity, resulting in category-selective filter clusters in these layers. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20257/ We also observed an exponentially decaying pairwise correlation between filters as a function of their distance on the simulated cortical sheet. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20256/ Our model replicated the topographical organization seen in the primary visual cortex topographical organization, including smooth transitions in selectivity according to stimulus orientation and spatial frequency. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20255/ With this approach, our ResNet-18 model achieved a substantial performance boost while preserving topographical organization. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20254/ We proposed an alternative approach based on self-organizing maps, Credit-Based Self-Organizing Maps(CB-SOMs), where the competition mechanism is guided by the importance of the assigned credit to each weight – i.e. filters with the highest gradient norm in each conv layer. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20253/ Previous approaches to simulate topographical organization in neural networks involved using various objective functions, but this often results in weaker performance on object categorization. cell.com/neuron/fullt... pnas.org/doi/10.1073/... arxiv.org/pdf/2308.09431cell.com 110
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/20252/ Cortex in many animals, including humans, is topographically organized, where functionally similar neurons are spatially close to each other. We sought to understand the computational principles underlying this visual topographical organization. 100
Amir Ozhan Dehghani @amirozhan.bsky.social · 09/03/2025I am excited to share that my undergraduate research has now been accepted to #ICLR2025. 📎: openreview.net/pdf?id=wMgr7... 🧑💻: github.com/BashivanLab/... Tweeprint🧵⬇️ 1174