An Existential Crisis in Neuroscience
21–30 of 112 posts
Re: An Existential Crisis in Neuroscience
#22What we need is a Newtonian model of the brain. A model that is incomplete and "wrong", but useful and generative. While Newtonian physics may be "wrong", is much easier to learn than quantum physics or relativity, etc. Neuroscience usually focuses on precision details, but doesn't aim to tell big picture stories. There are a few exceptions, however, like Karl Friston's free energy reduction model.
Re: An Existential Crisis in Neuroscience
#23"If the human brain were so simple that we could understand it, we would be so simple that we couldn't."
Re: An Existential Crisis in Neuroscience
#24What we need is a Newtonian model of the brain. A model that is incomplete and "wrong", but useful and generative. While Newtonian physics may be "wrong", is much easier to learn than quantum physics or relativity, etc. Neuroscience usually focuses on precision details, but doesn't aim to tell big picture stories. There are a few exceptions, however, like Karl Friston's free energy reduction model.
Re: An Existential Crisis in Neuroscience
#25Earlier quoted context omitted.
Don't we have that in the model that describes what the parts of the brain do? Proven to be wrong when you watch people with serious brain injuries re learn skills, but shown to have value by how it can predict what tumors or injuries will do to someone's ability.
Those models and explanations are not nearly as helpful as one might think. A lot of "neuroscience" explanations of everyday behaviour are mostly nonsense that sounds plausible and appealing ( https://www.nature.com/articles/nrn3817 , https://www.mitpressjournals.org/doi/abs/10.1162/jocn_a_0075... ). In this context plausible doesn't even mean plausible to a neuroscientist, it means more like consistent with the nons…
Re: An Existential Crisis in Neuroscience
#26What we need is a Newtonian model of the brain. A model that is incomplete and "wrong", but useful and generative. While Newtonian physics may be "wrong", is much easier to learn than quantum physics or relativity, etc. Neuroscience usually focuses on precision details, but doesn't aim to tell big picture stories. There are a few exceptions, however, like Karl Friston's free energy reduction model.
Re: An Existential Crisis in Neuroscience
#27Re: An Existential Crisis in Neuroscience
#28If you've seen some of the high resolution videos of neural activity captures from even simple fish, the slightest motor movements activate hundreds of thousands of cells in a chaotic pattern. Neural circuitry is not neatly laid out like a silicon chip, its a forest of inter-connectivity that resists analysis even with extremely detailed visualization and data captures.
I think it’s interesting that people think we’ll be able to make something that does more in a smaller space. As if there was something other than the laws of physics preventing natural selection from testing smaller structures. Or that there’s something (other than the demands of the computation itself) constraining the architectures that were tested through natural selection.
Re: An Existential Crisis in Neuroscience
#29Re: An Existential Crisis in Neuroscience
#30Earlier quoted context omitted.
Don't we have that in the model that describes what the parts of the brain do? Proven to be wrong when you watch people with serious brain injuries re learn skills, but shown to have value by how it can predict what tumors or injuries will do to someone's ability.
I would equate our current understanding of the brain to the common knowledge that apples fall to the ground from trees; where else would they go? People knew that long before Newton.
The ancients knew a fair bit.