> Kim and Sejnowski found that good working memory required both that long-timescale neurons be prevalent, and that connections between inhibitory neurons–which suppress brain activity–be strong. When they altered the strength of connections between these inhibitory neurons in their model, the researchers could change how well the model performed on the working memory test as well as the timescale of the pertinent ne…
Computational Model Reveals How the Brain Manages Short-Term Memories
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Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#22No, a model models, does not (and can not) reveal anything.
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#23> Kim and Sejnowski found that good working memory required both that long-timescale neurons be prevalent, and that connections between inhibitory neurons–which suppress brain activity–be strong. When they altered the strength of connections between these inhibitory neurons in their model, the researchers could change how well the model performed on the working memory test as well as the timescale of the pertinent ne…
As a neuroscientist, I can tell you with high confidence that many if not most neuroscientists would agree with you. You might also be interested in "Could a Neuroscientist Understand a Microprocessor?" https://journals.plos.org/ploscompbiol/article?id=10.1371/jo...
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#24> Kim and Sejnowski found that good working memory required both that long-timescale neurons be prevalent, and that connections between inhibitory neurons–which suppress brain activity–be strong. When they altered the strength of connections between these inhibitory neurons in their model, the researchers could change how well the model performed on the working memory test as well as the timescale of the pertinent ne…
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#25Anyone can point out that autistic, schizophrenic or very old people lack certain inhibitions. But it's downright fascinating to think it may be explained by dulled inhibitory neurons or hypersensitive "regular" ones. That could be an easy fix!
> That could be an easy fix! Famous last words?
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#26> Model reveals No, a model models, does not (and can not) reveal anything.
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#27> Kim and Sejnowski found that good working memory required both that long-timescale neurons be prevalent, and that connections between inhibitory neurons–which suppress brain activity–be strong. When they altered the strength of connections between these inhibitory neurons in their model, the researchers could change how well the model performed on the working memory test as well as the timescale of the pertinent ne…
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#28> Model reveals No, a model models, does not (and can not) reveal anything.
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#29Earlier quoted context omitted.
I agree with this sentiment. To be fair though, the authors did attempt to generate a biologically plausible RNN, which they published in a previous article... https://www.pnas.org/content/pnas/116/45/22811.full.pdf I'm not fully sold on this model, but the article is fairly dense and I dont fully understand it. (Sejnowski, the senior author, was on my dissertation committee; he fell asleep during my defense lol)
Oh god, what he calls constraints are the "spiking nature of biological neurons", then he happily proceeds, just like you'd guess, to create this abomination of 'spiking RNN' and train this pretty much plain vanilla RNN via backpropagation, completely disregarding the energy spent, learning mechanism, and actual biological plausibility or relevance of this horrendous architecture as memory model. The first author kno…
Re: Computational Model Reveals How the Brain Manages Short-Term Memories
#30Earlier quoted context omitted.
> That could be an easy fix! Famous last words?
In one sense, almost certainly. But in another sense, any plausible fix is easy compared to the current situation.