After reading through all comments as of 2024/05/11 I (as a professor at some major university) am quite surprised that not one single comment has asked the obvious question (instead of dishing out loads of (partial) "textbook knowledge" about brain functions, the difference between mammals and birds, AI and LLM etc.), which would be: what do all those strange structures and objects do which we know nothing about wha…
Cubic millimetre of brain mapped at nanoscale resolution
181–190 of 205 posts
Re: Cubic millimetre of brain mapped at nanoscale resolution
#182Earlier quoted context omitted.
I think it's actually "What you should do in order for us to make more rapid progress is to make the electron microscope 100 times better" and the state of art at the time was "it can only resolve about 10 angstroms" or I guess 1nm. So 100x better would be 0.1 angstrom / 0.01 nm. We have made some progress it seems. Googling I see "up to 0.05 nm" for transmission electron microscopes and "less than 0.1 nanometers" fo…
Resolution is only one aspect of EM that can be optimized.
Re: Cubic millimetre of brain mapped at nanoscale resolution
#183More project details: https://www.ll.mit.edu/sites/default/files/other/doc/2023-02...
Re: Cubic millimetre of brain mapped at nanoscale resolution
#184After reading through all comments as of 2024/05/11 I (as a professor at some major university) am quite surprised that not one single comment has asked the obvious question (instead of dishing out loads of (partial) "textbook knowledge" about brain functions, the difference between mammals and birds, AI and LLM etc.), which would be: what do all those strange structures and objects do which we know nothing about wha…
I'm in awe at the complexity and unknowability of it all, but I also have to chuckle at the thought that some portion may be vestigial. I'm particularly fond of the "Egg shaped object with no associated processes". :)
Re: Cubic millimetre of brain mapped at nanoscale resolution
#185Earlier quoted context omitted.
Humans are an n=1 example, is my point. And there's no direct competition between bird brain architecture and mammalian brain architecture, so there's no reason for one architecture to 'win' over the other - they may both be interesting local maxima, which we have no ability to directly compare. Human brains might not be all that efficient; for example, if the competitive edge for primate brains is distinct enough, t…
> And there's no direct competition between bird brain architecture and mammalian brain architecture By and large It’s not direct competition but we are stamping our species at an alarming rate and birds are taking a hammering.
There's too many confounding factors to say that the human brain architecture is actually 'better' based on the outcomes of natural selection. And if we kill all the birds, we will lose the chance to find out as we develop techniques to better compare the trade-offs of the different architectures.
Re: Cubic millimetre of brain mapped at nanoscale resolution
#186The interactive visualization is pretty great. Try zooming in on the slices and then scrolling up or down through the layers. Also try zooming in on the 3D model. Notice how hovering over any part of a neuron highlights all parts of that neuron: http://h01-dot-neuroglancer-demo.appspot.com/#!gs://h01-rele...
My god. That is stunning. To think that’s one single millimeter of our brain and look at all those connections. Now I understand why crows can be so smart walnut sized brain be damned. What an amazing thing brains are. Possibly the most complex things in the universe. Is it complex enough to understand itself though? Is that logically even possible?
LLMs that work at a very crude level of string tokens and emit probabilities.
Re: Cubic millimetre of brain mapped at nanoscale resolution
#187After reading through all comments as of 2024/05/11 I (as a professor at some major university) am quite surprised that not one single comment has asked the obvious question (instead of dishing out loads of (partial) "textbook knowledge" about brain functions, the difference between mammals and birds, AI and LLM etc.), which would be: what do all those strange structures and objects do which we know nothing about wha…
I'm in awe at the complexity and unknowability of it all, but I also have to chuckle at the thought that some portion may be vestigial. I'm particularly fond of the "Egg shaped object with no associated processes". :)
Re: Cubic millimetre of brain mapped at nanoscale resolution
#188Earlier quoted context omitted.
I'm in awe at the complexity and unknowability of it all, but I also have to chuckle at the thought that some portion may be vestigial. I'm particularly fond of the "Egg shaped object with no associated processes". :)
Tech debt in our own brains.
Re: Cubic millimetre of brain mapped at nanoscale resolution
#189Earlier quoted context omitted.
Isn't that kinda obvious? A baby that grows up in a sensory deprivation tank does not… develop, as most intelligent persons do.
> A baby that grows up in a sensory deprivation tank Now imagine a baby that uses an artificial lung and receives nutrients directly, moves on a wheeled car (no need for balance), does not have proprioception, or a sense of smell (avoiding some very legacy brain areas). I think, that such a baby still can achieve consciousness.
Re: Cubic millimetre of brain mapped at nanoscale resolution
#190> cut the sample into around 5,000 slices — each just 34 nanometres thick — that could be imaged using electron microscopes. Does anyone have any insight into how this is done without damaging the sample?
Using a Microtome ( https://en.m.wikipedia.org/wiki/Microtome ).
It's also the tome as in book, more properly one volume of a multi-volume (or multi-part) set, though it now generally simply means any large book.
https://www.etymonline.com/search?q=tome>