Uploaded June 2016 | Updated September 2026, 2 weeks ago
Our brains lie to us. Not maliciously – they think they’re helping. Which is why smells seem to disappear: It’s olfactory adaptation. How it happens is complicated, but Lauren breaks it down.
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health.howstuffworks.com/mental-health/human-nature/perception/smell.htm
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Hi there, internet. I’m here today to tell you that your brain lies to you. Not maliciously. It thinks it’s helping. Which brings us to our question: “Why do you stop noticing smells after a while?” They’re still there. Why does your brain tell you that they’re not?
The “why” is actually simple. Experts in biology and psychology and volatile aroma compound physics (aka the science of smells) all pretty much agree that you stop noticing a smell after a short while because your brain wants to concentrate on scanning for new (and potentially hazardous) smells.
Sharp, “gross” scents may indicate that a dangerous predator is in the area, or that there’s a disease at work, or that the thing you’re about to eat should under no circumstances be eaten.
If you stick around a particular scent, your brain figures it’s already done warned you about that one and thus frees up its processing power for logging new scents and changes in scent intensity. This is called olfactory adaptation.
How your brain accomplishes this type of sensory adaptation is more complicated. When you notice a smell, a molecule of a volatile aroma compound (that is, a gaseous, smelly thing) has entered your nose. Our nasal passages are lined with somewhere around 10 million neurons. You can think of each of those neurons as a tiny tree designed to pick up on a single type of scent.
They have branches called dendrites, each covered in smaller structures (like leaves, going with the tree concept) that are called cilia. The cilia are studded with odor receptors. A molecule -- of whatever kind of scent that neuron specializes in sensing -- can bind to each receptor.
When that binding happens, it sets off an electrochemical chain reaction. In the end, the neuron sends an electrical impulse through its axon (metaphorically, its root), up into your olfactory bulb. That’s the part of your brain that processes scent stimuli and sends the information on to other parts of the brain.
Very basically, the more molecules that bind to a given type of scent receptor throughout your nasal passages, the stronger the signal to your brain will be, and the stronger you will perceive the scent to be.
But we can adapt to a scent’s presence within a few breaths. Researchers think that there are a couple things going on here. First, in those tree-like neurons in your nose, at least one chemical plays double-duty in both helping send electrical impulses to the brain and in stopping those electrical impulses. The culprit here seems to primarily be calcium ions, if you were curious.
The second thing going on here is that there’s some kind of feedback loop among your nasal neurons and your olfactory bulb. Researchers aren’t precisely sure what's going on here, but we do know it happens because they’ve conducted experiments where they’ve only exposed only one nostril to a scent. Neurons in the other nostril start adapting to it.
But there are more questions here. How do different scents and different lengths of exposure lead to different adaptations? Why can you never smell your own home the way other people experience it?
“Shenanigans” is the answer science has to give us right now. Because the perception of scent isn’t just physical; it’s psychological. What the other parts of your brain do with the scent information that the olfactory bulb sends them absolutely factor in, in ways that researchers are still trying to suss out.
SOURCES:
chemse.oxfordjournals.org/content/25/4/487.full
chemse.oxfordjournals.org/content/25/4/473.full
researchgate.net/publication/8487297_Making_scents_olfactory_adaptation
health.howstuffworks.com/mental-health/human-nature/perception/smell.htm/printable
ncbi.nlm.nih.gov/books/NBK10896
nymag.com/scienceofus/2014/08/why-cant-you-smell-your-own-home.html
Our brains lie to us. Not maliciously – they think they’re helping. Which is why smells seem to disappear: It’s olfactory adaptation. How it happens is complicated, but Lauren breaks it down.
Learn more at HowStuffWorks.com:
health.howstuffworks.com/mental-health/human-nature/perception/smell.htm
Share on Facebook:
Share on Twitter:
Subscribe: goo.gl/ZYI7Gt
Visit our site: brainstuffshow.com
Hi there, internet. I’m here today to tell you that your brain lies to you. Not maliciously. It thinks it’s helping. Which brings us to our question: “Why do you stop noticing smells after a while?” They’re still there. Why does your brain tell you that they’re not?
The “why” is actually simple. Experts in biology and psychology and volatile aroma compound physics (aka the science of smells) all pretty much agree that you stop noticing a smell after a short while because your brain wants to concentrate on scanning for new (and potentially hazardous) smells.
Sharp, “gross” scents may indicate that a dangerous predator is in the area, or that there’s a disease at work, or that the thing you’re about to eat should under no circumstances be eaten.
If you stick around a particular scent, your brain figures it’s already done warned you about that one and thus frees up its processing power for logging new scents and changes in scent intensity. This is called olfactory adaptation.
How your brain accomplishes this type of sensory adaptation is more complicated. When you notice a smell, a molecule of a volatile aroma compound (that is, a gaseous, smelly thing) has entered your nose. Our nasal passages are lined with somewhere around 10 million neurons. You can think of each of those neurons as a tiny tree designed to pick up on a single type of scent.
They have branches called dendrites, each covered in smaller structures (like leaves, going with the tree concept) that are called cilia. The cilia are studded with odor receptors. A molecule -- of whatever kind of scent that neuron specializes in sensing -- can bind to each receptor.
When that binding happens, it sets off an electrochemical chain reaction. In the end, the neuron sends an electrical impulse through its axon (metaphorically, its root), up into your olfactory bulb. That’s the part of your brain that processes scent stimuli and sends the information on to other parts of the brain.
Very basically, the more molecules that bind to a given type of scent receptor throughout your nasal passages, the stronger the signal to your brain will be, and the stronger you will perceive the scent to be.
But we can adapt to a scent’s presence within a few breaths. Researchers think that there are a couple things going on here. First, in those tree-like neurons in your nose, at least one chemical plays double-duty in both helping send electrical impulses to the brain and in stopping those electrical impulses. The culprit here seems to primarily be calcium ions, if you were curious.
The second thing going on here is that there’s some kind of feedback loop among your nasal neurons and your olfactory bulb. Researchers aren’t precisely sure what's going on here, but we do know it happens because they’ve conducted experiments where they’ve only exposed only one nostril to a scent. Neurons in the other nostril start adapting to it.
But there are more questions here. How do different scents and different lengths of exposure lead to different adaptations? Why can you never smell your own home the way other people experience it?
“Shenanigans” is the answer science has to give us right now. Because the perception of scent isn’t just physical; it’s psychological. What the other parts of your brain do with the scent information that the olfactory bulb sends them absolutely factor in, in ways that researchers are still trying to suss out.
SOURCES:
chemse.oxfordjournals.org/content/25/4/487.full
chemse.oxfordjournals.org/content/25/4/473.full
researchgate.net/publication/8487297_Making_scents_olfactory_adaptation
health.howstuffworks.com/mental-health/human-nature/perception/smell.htm/printable
ncbi.nlm.nih.gov/books/NBK10896
nymag.com/scienceofus/2014/08/why-cant-you-smell-your-own-home.html

![Where Did Neckties Come From?
Its one of the vital pieces of attire for business people across the world - but where did ties come from?
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http://home.howstuffworks.com/home-improvement/household-hints-tips/cleaning-organizing/how-to-organize-ties.htm
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It’s weird when you think about ties – imagine describing them to someone who’s never heard of them. Generally speaking, they’re decorative. A tie won’t keep you warm the way a scarf would. And, depending on the material, it’s not going to be a good napkin, mop or towel. We just tie these things around our necks and walk around as if to say “that’s right, world, I’m doing important stuff today”.
Beginning in the early 1600s, both Louis XIII and his successor Louis XIV used Croatian mercenaries during various battles. These mercenaries wore scarves or knotted neckerchiefs as part of their uniforms – finer material for officers, and more coarse for the rank and file. The scarves did have a function, in that they likely helped tie jackets together, but the King was more impressed by the mercenaries’ fashion sense. And he wasn’t the only one.
Over the next few years the scarves – which were called ‘cravates’ or cravats, swept across France. They were more comfortable than the starched linen ruffs that had been the norm, because they were loose and less restricting. As these cravats became more popular with the wealthy, they also became more intricate, with new materials like lace, increasingly sophisticated knots and so on. The cravat soon spread to other countries, earning fans like England’s Charles II.
Of course, at this point there were numerous variations on the original cravat, but these didn’t look like the relatively slim, modern ties we see today. We didn’t even call them ties. During the reign of Louis XIV the original cravat gave way to a variation called ‘the Steinkirk’, which had a single knot and a narrow shape. As the years turned into decades and the decades in centuries, the tie continued to evolve and we created variations like the bowtie.
Here’s a weird tangent: Do you remember the song “Yankee Doodle Dandy”? There’s a part in there where the verse goes “stuck a feather in his cap and called it macaroni”. Turns out that’s more than just a nonsensical rhyme. “Macaroni”, you see, described a specific type of fashion sense, and the men who subscribed to it.
In the late 1700s a group of controversial fashion aficionados known as ‘macaronis’ began tying their neckwear in certain knots and styles to indicate their tastes, which reportedly led to their cravats simply being called ties.
There are hundreds of other interesting things about ties aside from their evolution, which continues today. You can thousands of sources telling you how, where and why a tie should be worn a specific way – as well as why it shouldn’t. While their popularity may wax and wane over the decades, which is the case with most fashion accessories, it seems that ties – or something like them – are here to stay.
CREDITS:
Croatian Mercenary photo is licensed under Creative Commons:
http://upload.wikimedia.org/wikipedia/commons/7/72/Origin_NeckTie.JPG
I, Modzzak [GFDL (http://www.gnu.org/copyleft/fdl.html), CC-BY-SA-3.0 (http://creativecommons.org/licenses/by-sa/3.0/) or CC-BY-SA-2.5-2.0-1.0 (http://creativecommons.org/licenses/by-sa/2.5-2.0-1.0)], via Wikimedia Commons
Yankee Doodle is in the public domain. This recording was performed by the United States Army Chorus and is also in the public domain.
SOURCES:
The Straight Dope: “What is, or was, the purpose of men’s neckties?” http://www.straightdope.com/columns/read/439/what-is-or-was-the-purpose-of-mens-neckties
“Evolution of the necktie” http://www.tie-a-tie.net/blog/the-evolution-of-the-necktie/
Croatian History: “The Tie” http://www.croatianhistory.net/etf/cravate.html
“Academia Cravatica” http://academia-cravatica.hr/interesting-facts/history/
Tieroom History: http://www.tieroom.com/necktie-history Where Did Neckties Come From?](https://i.ytimg.com/vi/o1t6py03K7s/mqdefault.jpg)








