How much bandwidth does the spinal cord have?
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But I think the peripheral nerve system uses firing frequency to encode intensity, so I'm not sure you can really equate 1 firing with one bit.
For example, over 15 refractory periods there could be anywhere between 0 and 15 firings, thereby encoding 16 different possible intensities. That would effectively be only a 4 bit message per 15 periods, not 15 bit per 15 periods.
In the end there is really "bandwidth" which is how much symbol "space" is available and various levels of "goodput" which is the rate of whatever you're calling useful data.
Fiber often uses 8b/10b. Over copper it's much more complicated.
USB 3.0 is an example of simple 8b/10b. 4Gbps data, sent at 5Gbps.
Ethernet over twisted pair, well...
10mbit Ethernet turns each bit into either a 01 or a 10 and sends those on the line.
100mbit Ethernet applies 4b5 encoding to get a 125MHz signal, then it uses this to drive an encoding called MLT-3. In MLT-3, the final output cycles through -1, 0, +1, 0 over and over, and each bit decides whether it advances or doesn't advance.
Gigabit Ethernet does a complicated encoding to turn batches of 8 bits into 4 separate voltages from -2 to +2 (so 5 levels). It then sends these simultaneously over all four wire pairs at a grand total of 125MHz.
So, max frequency is encoding 100% as fast as possible, but this means it’s possible to have effectively 15x100% or 14 at 99.99%, 99.97, 99.98 ... or really any combination depending on when each pulse specifically ends.
This means you need to decode how accurate the timing information is to figure out the bandwidth but each pulse encodes a floating point number not a bit.
PS: For the most ridiculous upper limit. If a neuron could fire 500 times+ a second with a 1ms refractory period each encoding a number between 0 to ~10^40 or ~2^130 as the plank unit of time beyond the minimum. That’s ~50,000+ bits per neuron per second.
So if we assume a similar bit rate for spine neurons, we get 7.5 GBps, not 16.625 GBps.
Vision: 10Mb/s => 100Mb/s
Hearing: 30Mb/s
Touch: 135Mb/s
Smell: 100k neurons
Taste: 100kb/s
Proprioception: ??
Balance: ??
Total: ~10Mb/s=>~1Gb/s
Internal brain bandwidth is also worth mentioning as this is the last remaining wetware advantage over hardware due to the three dimensionally fully connected heterogeneous cortical substrate. I can't seem to find a figure on that though.https://www.quora.com/How-much-bandwidth-does-each-human-sen...
Shouldn't this basically just be the bandwidth of a headphone signal which is at the lowest quality where you can hear degradation if it goes any lower?
For me that's something like 3MB per minute, per well-compressed ogg files, or 50KB per second. Yet that answer says my hearing bandwidth is actually 600x higher than that.
I can imagine some small difference, but to say my ear has evolved to transmit 600x more sound data than I can actually perceive sounds off.
One issue with this approach is that it's very hard to tell the difference between data that was never sent versus data that is there but our developing brains were trained to ignore because it didn't turn out to be useful.
A simple example of this would be language differences, where certain important language features simply aren't noticeable to non-native speakers, despite having the same sensor-hardware.
Or going in the opposite direction - do our hearing neurons transmit data that the brain throws away? If so, then the bandwidth goes higher than 50KB/s.
Lossy encodings, on the other hand, all work on the basis of a model of perceptibility that throws away information deemed less perceptible.
What is the resolution of our Eyes?
Ans: 576 Megapixels [1]..... Holy..... And here we are, trying to rely on couple of cameras for autopilot.
In other words, it isn't that your eyes and brain are so good that you can still drive at an Atari level--it's that the Atari level is optimized for your eyes and brain.
Our brain creates a model of the surroundings based solely on memorized bits of the environment (allowing us to blink without the world going dark, and to track things in our peripheral views) plus prediction, which is something Atari exploits so we can convince ourselves the bars and dot have motion. We even temporarily convince ourselves that the blooping is the sound of impact.
A long way to say that our sensors don't send complete objects like an OOP function would. Instead, they transmit just enough info (hints, maybe) to refresh the mental model. Similar to how we can see 4 dots and mentally translate it into a square laying in some particular direction in 3D space, even without lines or actually being 3D.
The "bit" analogy breaks down when you consider this aspect. The data our brain works with isn't the same as the data a computer works with.
I’m skeptical. Since the human eye has less than 150M sensor cells, and our sensors aren’t as good as 8 or 10 bit resolution pixels, that answer is overestimating by at least 4x, and possibly a lot more. https://en.m.wikipedia.org/wiki/Photoreceptor_cell
It's mostly irrelevant for cars TBH, since crashes are quick events.
BTW, 24 bit colors that are carefully done, paying proper attention to color space and gamma, have been specifically designed to be at the JND (just-noticeable difference) with a 1-bit change in value. If you can always and reliably see the difference between any pair of 24 bit colors that are only 1 bit different, then you have abnormally good color vision. It’s statistically unlikely for that to be true, but some people do have it.
We only have high resolution at the point of gaze point. Everything else is blur, so it's not all comparable with a camera.
(not saying Musk isn't full of shit)
https://news.ycombinator.com/item?id=18750902
Speaking of spines and copyright issues:
In K W Jeter's excellent dark cyberpunk novel "Noir", intellectual property theft is viewed as literally killing people by removing their livelihood, so copyright violators were punished by having their still-living spinal cords stripped out and made into high quality speaker cords in which their consciousness is preserved, usually presented to the copyright owner as a trophy.
"In the cables lacing up Alex Turbiner's stereo system, there was actual human cerebral tissue, the essential parts of the larcenous brains of those who'd thought it would be either fun or profitable to rip off an old, forgotten scribbler like him."
https://marzaat.wordpress.com/2018/01/27/noir/
>There’s a lot to like in the novel.
>My favorite section is the middle section where the origin of the asp-heads is detailed via McNihil’s pursuit of a small time book pirate and the preparation of the resulting trophy. The information economy did, in this future, largely come to place. As a result, intellectual property theft is viewed as literally killing people by removing their livelihood. Therefore, death is a fitting punishment. McNihil, in his point by point review of the origin of asp-heads, notes that even in the 20th Century there was the phrase: “There’s a hardware solution to intellectual property theft. It’s called a .357 magnum.”
>Actually it’s decided that death is too good and too quick for pirates.
>Their consciousness is preserved by having their neural network incorporated in various devices. (Turbiner likes to use stripped down spinal cords for speaker wire.)
>This sounds like a cyberpunk notion but, in other parts of the novel, Jeter takes a swipe at such hacker/information economy/internet cliches as information wanting to be free (McNihil destroys a nest of such net hippies) or the future economy being based on information. Villain Harrisch sneers at the notion stating that information can be distorted but atoms – and the wealth they represent – endure.
>Still, his novel is chock full of the high-tech, low-life that characterizes cyberpunk.
(I'd quote some more, but as a high-tech, low-life net hippie, I'm afraid of having my nest destroyed and getting my spine ripped out!)
Nor is it clear what the endpoint of a communication is. This is another issue. Does information get counted twice if it's used by both unconsciously by the brainstem as well as rising into awareness and is used by the neocortex? The list of questions can go on.
This bandwidth thing is one of the questions I find frustrating, on par with people wondering if a simulated piece of brain has feelings (the answer is NO). Why is left as an exercise for the reader.
> This bandwidth thing is one of the questions I find frustrating, on par with people wondering if a simulated piece of brain has feelings (the answer is NO). Why is left as an exercise for the reader.
Now this is a hot take.
Smolensky's pdp paper modeled presymbolic processing with the harmonium, the first restricted boltzman machine.
You have a piece of copper and circuitry between your house and your ISP. Back in the day, there was no digital processing. It's just copper, amplifiers, filters, and mechanical switches. Why did dial-up internet never exceed (within a factor of 2) 30 kbps? Because that's the bandwidth of the channel. It's not that modem designers missed a more complicated, neuronal, way to encode the information.
It's really amazing that information and bandwidth can be as fundamental as temperature and mass. There's nothing symbolic about it in that lens. Symbols only come in because we know how to do important computations in the digital domain.
Analog television, FM radio, telegraph lines, telephone lines, smoke signals, the human vocal tract, all of them have bandwidths.
From the wiki page on QAM: "Arbitrarily high spectral efficiencies can be achieved with QAM by setting a suitable constellation size, limited only by the noise level and linearity of the communications channel." [https://en.wikipedia.org/wiki/Quadrature_amplitude_modulatio...]
You're absolutely right that SNR plays a role. But I don't see why you need to map to symbols.
Dialup internet did exceed 30kbps -- and that's because the bandwidth of the channel (the copper wire) was not the limiter. That's why DSL works and can in theory reach 1 gbps (https://en.m.wikipedia.org/wiki/Digital_subscriber_line)
I believe it is the channel plus the receiving mechanism plus the sending mechanism plus the encoding mechanism that determine the bandwidth. I am not asserting this, but that is my understanding.
56kbps modems and the like relied on digital telephone lines. I'm not sure where the 30kbps number comes from though - earlier pre-digital modems did go faster than that. Although you could argue those were 'pre-internet' as well...
But the other end of the local copper pair switched and became digital, which changes the channel in my eyes at least. There was then a series of bandwidth increases in the digital realm, giving significantly more efficient and effective use of the channel.
https://aeon.co/essays/your-brain-does-not-process-informati...
The author correctly points out that past eras developed metaphors to explain how the mind might work based on the technological innovations they were familiar with, but I think there's a lot more nuance in the computational theory of the mind.
Namely that the notion of computation is much more abstract, and potentially more portable across disciplines, than some of the historical examples that the author of that Aeon piece brings up.
Anyway, obviously I don't have any real answers but for whatever reason the brain-as-a-computer theory rings pretty true for me and I've enjoyed reading essays and watching talks about the topic [2] [3].
[1] https://medium.com/the-spike/how-to-find-out-if-your-brain-i...
[2] https://medium.com/the-spike/yes-the-brain-is-a-computer-11f...
[3] https://www.youtube.com/watch?v=lKQ0yaEJjok
^-- This is the first part in an ongoing series of lectures that Joscha Bach has been giving at the Chaos Communication Congress; if you watch it and find it interesting you should check out the proceeding installments.
https://medium.com/the-spike/your-cortex-contains-17-billion...
One of the final points the author makes is that the brain might be a neural network made up of as many as 89 million neural networks.
That's a staggering concept.
If true, I wonder how anyone stays sane with that level of entropy in the system!
> The better we could communicate on a mass scale, the more our species began to function like a single organism, with humanity’s collective knowledge tower as its brain and each individual human brain like a nerve or a muscle fiber in its body. With the era of mass communication upon us, the collective human organism—the Human Colossus—rose into existence.
I like thinking about us this way too, as being both individuals but at the same time also forming a sorts of organism together.
What originally got me thinking about us this way was something that Sun Tzu wrote in his book The Art of War.
I think this might be the part of that book that made me think of it like this:
> The skillful tactician may be likened to the shuai-jan. Now the shuai-jan is a snake that is found in the ChUng mountains. Strike at its head, and you will be attacked by its tail; strike at its tail, and you will be attacked by its head; strike at its middle, and you will be attacked by head and tail both.
> Asked if an army can be made to imitate the shuai-jan, I should answer, Yes. For the men of Wu and the men of Yueh are enemies; yet if they are crossing a river in the same boat and are caught by a storm, they will come to each other's assistance just as the left hand helps the right.
> I like thinking about us this way too, as being both individuals but at the same time also forming a sorts of organism together.
You may be interested in Paul Stamets' thoughts on this, essentially, that the invention of the Internet was an evolutionary inevitability.
Where he says... "From this simple exercise, we can begin to build the framework of a metaphor-free theory of intelligent human behaviour"
Um, why?
I don't get why the dollar bill example somehow means that we don't store memories in our neurons?
What am I missing?
Thanks in advance for helping me grok this!
The piece talks about transmitting 4k movies over nerve fibers. I take that to mean: if you removed the nerve from the body and use it purely as an OSI level 1 physical layer. There is no neural net. There is no processing.
We actually have no idea how a bunch of atoms interacting create qualia, or even whether they do. There's no math to tell us that a configuration of atoms makes qualia, or what qualia it makes. We have no way of distinguishing between a conscious being who experiences, and a philosophical zombie with the same behavior but no internal experience.
Therefore we can't know whether a simulation of atoms actually does capture what's necessary for qualia.
It does have a sort of abstract mapping to something that looks like me, but since I have no idea what produces qualia, I have no way to know whether something essential is lost in that mapping.
>Please don't submit comments saying that HN is turning into Reddit. It's a semi-noob illusion, as old as the hills.
Allow me to point out a few characteristics of this post:
* A submission to reddit
* No actual scientific or academic details supporting his statements. Just some known other quantitive data about the spinal cord. OP even characterizes most of his statements as "gross assumptions"
* This post to HN has been upvoted.
Here is a scientifically reasonable perspective on this subject:
https://www.reddit.com/r/askscience/comments/7l56sb/how_much...
Hope that doesn't qualify as a spoiler.
So does brain have massively parallel architecture where key things have their own core?
However, when it comes to peripherals like heart and lung, the distribution goes beyond just the brain - the heart, for example, has a built-in pacemaker called the sino-atrial node [1], which produces a periodic signal with high precision; the brain just sends it signals to control the period of its oscillations.
Similarly, a number of reflexes which involve responses to physical danger (withdrawal from burns, knee-tapping) aren't actually handled by the brain; the spinal cord sends the reflex commands as soon as the sensory information hits it, to avoid the round trip all the way to the brain.
Not sure that’s that true though (I’ve heard about thus before). I can definitely consciously burn myself.
On the other hand I can’t stop myself from moving my foot when it’s tapped.
That sounds like consciously overriding the reflex[0] withdrawal though, as opposed to accidentally touching something hot, and withdrawing reflexively.
Adding anecdata: I've definitely touched something hot and withdrawn my finger/hand/whatever quickly enough to avoid getting burned when I by all rights should have. You know, something hot enough that anything but incidental contact would result in a burn.
[0] Reflex is probably not the right word. I can't consciously override the kneecap/kick reflex, for instance.
I don't know what that has to do with consciousness, since I didn't decide to suppress anything.
another stupid perspective: think of how many clever algorithms and how much computational hardware would be necessary to simulate a small rock from a QM level up. now, what if there was a bespoke piece of super-custom application-specific technology that could efficiently simulate that small rock? there is: it's the rock itself.
Maybe the task being rhythm-related offsets the increased delay.
*sober I mastered Hard but had some trouble on the harder songs on expert, under the influence was the first time I managed to do several of them in expert.
I could type 10 WPM faster than I usually could but my companion couldn't get above 15 WPM (He's usually bad not that bad). Once you get going it seems to be manageable, as if you have thought-momentum, i.e. Maybe it's a movement issue rather than literally reaction time directly.
> Maybe the task being rhythm-related offsets the increased delay. I think that may have an effect. I can play actual guitar fairly well (I can still play pretty fast Yngwie stuff) under the influence but only once I've "warmed up" but then I'm effectively just reciting motion from memory rather than reacting to anything
There are papers/research on this but they're all behind paywalls, which I can't be bothered to get around rn.
So really to calculate bandwidth is kind of pointless. One the neurons use more dimensions than just on and off electrical signals as their state and two, neurons don't really pass information along when you think about it they just trigger circuitry.
Maybe in the future we'll have... Spinal Tap