Earlier quoted context omitted.
What's ethically wrong about this?
The end game here is developing a mind reading device. The endeavor device is ethically questionable because such a device would have a lot of ethically wrong/questionable applications.
High-res image reconstruction with latent diffusion models from human brain
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Re: High-res image reconstruction with latent diffusion models from human brain
#12Re: High-res image reconstruction with latent diffusion models from human brain
#13Earlier quoted context omitted.
What's ethically wrong about this?
The end game here is developing a mind reading device. The endeavor device is ethically questionable because such a device would have a lot of ethically wrong/questionable applications.
Everybody remembers what happen when online dna hit mainstream.
Re: High-res image reconstruction with latent diffusion models from human brain
#14Creepy and cool at the same time. It goes into the bucket of things that are not ethically right, same ways as implanting chips to read monkeys brains. But technically interesting and well-executed.
Why is it unethical to put chips in monkey brains?
Re: High-res image reconstruction with latent diffusion models from human brain
#15The best evidence for this is a picture(1) from page 6 of the paper. Look at the second row. The building generated by 'mind reading' subject 2 and 4 look strikingly similar, but not very similar to the ground truth! From manually combing through the training dataset, I found a picture of a building that does look like that, and by scaling it down and cropping it exactly in the middle, it overlays rather closely(2) on the output that was ostensibly generated for an unrelated image.
If so, at most they found that looking at similar subjects light up similar regions of the brain, putting Stable Diffusion on top of it serves no purpose. At worst it's entirely cherry-picked coincidences.
Re: High-res image reconstruction with latent diffusion models from human brain
#16Re: High-res image reconstruction with latent diffusion models from human brain
#17Re: High-res image reconstruction with latent diffusion models from human brain
#18Re: High-res image reconstruction with latent diffusion models from human brain
#19Either way, if I'm understanding right, it's very impressive. If the only input to the model (after training) is a fMRI reading, and from that it can reconstruct an image, at the very least that shows it can strongly correlate brain patterns back to the original image.
It'd be even cooler (and scarier?) if it works for novel images. I wonder what the output would look like for an image the model had never seen before? Would a person looking at a clock produce a roughly clock-like image, or would it be noise?
All the usual skepticism to these models applies, of course. They are very good at hallucinating, and we are very good at applying our own meaning to their hallucinations.