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Do we actually know how the memory is coded specifically? Is it a specific firing of a neuron (or a neuron ensemble), is it the specific answer you get from exc
by davidktr 4y ago
Do we actually know how the memory is coded specifically? Is it a specific firing of a neuron (or a neuron ensemble), is it the specific answer you get from exciting the neuron(s)? Or any combination thereof?
- nicoburns 4y ago> Do we actually know how the memory is coded specifically? No, we don't.
- the_only_law 4y agoMan I wish I became a neuroscientist or something. Seems like there’s so much work to do in that field if we ever want to understand the human brain, which I have my doubts. I’d probably do it if it didn’t involve basically a vow of poverty.
- Terry_Roll 4y agoMy opinion is that its the evolutionary process of chemical organisation in an environment. We see gene differences but we also see many parallels in other species. Unlock every effect a chemical has and you can unlock consciousness.
- kanzure 4y agoThere are a few proposals for how memory might work, but it's still early. https://diyhpl.us/~bryan/papers2/neuro/The%20mechanical%20basis%20of%20memory:%20the%20meshcode%20theory%20-%202020.pdf https://diyhpl.us/~bryan/papers2/neuro/The%20mechanical%20ba...
- mtlmtlmtlmtl 4y agoIANA neuroscientist, so please correct me if I'm wrong or oversimplifying: IIRC one of the main cellular mechanisms thought to underlie memory is LTP(Long Term Potentiation) in glutamatergic neurons. There are different kinds of glutamate receptors, but we're interested in the two subtypes of ion channel based(ionotropic) Glut receptors, AMPA and NMDA. AMPA is sort of your main receptor for propagating signals: it's activated first. NMDA is much more complicated in that it requires binding both glutamate and another neurotransmitter, glycine, for the ion channel to open. But this ion channel can also be blocked by Mg²+ ions, which for reasons that currently escape me, is removed when the neuron depolarizes. Once NMDA is open, it has the downstream effect of upregulating the AMPA receptor, making more sensitive to future transmission, hence serving as a kind of "memory" of previous signals. I think the open question is more about understanding how memory as we know it emerges out of networks of these neurons, and less about the basic cellular mechanisms. And this is probably only one mechanism of LTP, then you have its opposite, Long Term Depression, which is also involved. Of course, in science the answer is always more complicated than what can be gleaned from the hand-wavey explanations of some programmer on HN :)
- mattkrause 4y agoThis is all true (as far as we know), but it's tricky to suss how exactly how this works in a living brain. It's relatively easy to induce spike-timing dependent plasticity in vitro, where the background activity is low and the experimenter has almost total control over the pre/post-synaptic neurons' activity. However, in vivo neurons are often bombarded with input from thousands of synaptic partners, breaking the clear correspondence that underlies a lot of LTP/LTD rules. People have gotten them to work, after a fashion, in vivo: Yang Dan's group shifted the orientation of V1 neurons and Dan Shultz's group has some cool backwards conditioning stuff in rat barrel cortex. However, the effects are small and often require a heroic, unphysiological amount of effort, so....there must be more to it than that.