The Weirdest Thing I Learned This Week - Hector the Tickle Robot, Eyeball Teeth, a Little Bit of ~Spice~ (and Neuroscience)
Episode Date: September 9, 2026Author and food historian Priya Mani joins the show to talk about the neuroscience of spice. Plus, Laura explains why whales have teeth on their eyes (SERIOUSLY), and Rachel gets into why a tickle rob...ot exists. The Weirdest Thing I Learned This Week is a podcast by Popular Science. Share your weirdest facts and stories with us in our Facebook group or tweet at us! Click here to learn more about all of our stories! Links to Rachel's TikTok, Newsletter, Merch Store and More: https://linktr.ee/RachelFeltman Rachel now has a Patreon, too! Follow her for exclusive bonus content: https://www.patreon.com/RachelFeltman Link to Jess' Twitch: https://www.twitch.tv/jesscapricorn Link to all of Jess' content: https://www.jesscapricorn.com/ -- Follow our team on Twitter Rachel Feltman: www.twitter.com/RachelFeltman Produced by Jess Boddy: www.twitter.com/JessicaBoddy Popular Science: www.twitter.com/PopSci Theme music by Billy Cadden: https://open.spotify.com/artist/6LqT4DCuAXlBzX8XlNy4Wq?si=5VF2r2XiQoGepRsMTBsDAQ Learn more about your ad choices. Visit podcastchoices.com/adchoices
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Hi, I'm Laura Clary, mom, chaos coordinator, and someone who has learned the hard way that back-to-school season is basically a second mortgage.
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At Popular Science, we report and write dozens of science and text stories every week.
And while most of the stuff we stumble across makes it into our articles,
we also find plenty of weird facts that we just keep around the office.
So we figured, why not share those with you?
Welcome to the weirdest thing I learned this week from the editors of Popular Science.
I'm Rachel Feltman.
I'm Laura Bicis, and I'm Priya Money.
Priya, welcome to the show.
It's so great to have you.
Welcome. Thank you so much, Rachel and Laura. So would you tell our listeners who you are?
So I'm the author of Spiced Recipes Celebrating Spices from Around the World, which is published by Fidon Press.
It's open for pre-orders as we speak, but out in bookstores around the world in October this year.
And I live in Copenhagen and my studio, which is called Appetite Studio, quite aptly, works on food and favor projects around the world.
And we do a broad arc of projects.
F&B industry-focused work with flavor and product development, but also a lot of design and
food communication work that is nuanced and culturally rooted storytelling or experimental
installations on food and nourishment.
Very cool.
Well, we love food science and we love food history and we love spices.
So we are very excited to have you with us today.
Thank you.
So let's jump right into it.
On the weirdest thing I learned this week, we start by each offering up a little tease about
some kind of fact or story we found in the course of reading, writing, reporting, cooking, et cetera,
and decide which one we just absolutely have to hear more about first.
Then once we've all had time to spin our little science yarns, we reconvene and decide what
the weirdest thing we learned this week actually was, except there's no winner.
We just kind of chat about it.
That's fine.
Laura, what's your tease today?
whale sharks have teeth on their eyeballs oh yeah eyeball teeth wow yeah great great and prio what's your teeth
well chili burns and prickly ash buzzes but it's your brain that's the one creating both sensations
oh i can't wait to hear more about this this is these are these are devices i enjoy learning about
And eating and buzzing. Interesting. Okay.
My tease, hard to pick a tease for this one, but I am going to say scientists did engineer a tickle robot.
That's a cool one.
Yeah. So I think maybe I might jump in first today with this tickle bot.
Go, go.
So yeah, there's sort of, there's a lot to this story.
But we're going to talk about tickling because a study came out.
quite recently, basically looking at the surprising universality of tickling, you might be surprised
at how kind of mysterious a phenomenon tickling is. We're not really sure why it exists and it
is pretty unique. So just kind of some background and I promise the tickle robot does come
into play. So first of all, tickling is actually divided into
two distinct phenomena.
One is nismesis, spelled with a silent K, which is nismesis.
Nis mesis.
Nis.
Yes.
And so that is very common, you know, perhaps even universal among animals.
That's when like a light brushing sensation occurs because something has stimulated your skin by moving slowly across it.
It doesn't make you laugh.
It gives you an urge to, you know, maybe scratch or pull away.
Maybe you feel a little shivery.
And we know that this occurs in many, many animals when a horse twitches their flank because
a fly has landed on them.
You know, if a dog, a dog have these reflexes when you scratch them in certain places, you
know, their legs will kind of like shake.
And that's all of this is this nismesis, the moving itch, it's sometimes called.
And it's pretty clear that that evolved as a sort of defense mechanism.
You know, this is about recognizing that something that's not you is touching you and that
it's unexpected and that maybe you want to react to that.
And so it's not, you know, it's different from feeling pain, which of course elicits a different
and perhaps more urgent response.
But it is like, oh, what's that?
But of course, that's not what most humans think of.
of when they hear the word tickling.
And the laughter provoking tickle is known scientifically as gargolisus.
I guess because of the throat, maybe gargol.
I really should have looked up, you know what?
I'm going to do a quick get a biology search because that's one thing I really should
have done that I did not.
Garglesis.
Gargolesis and related words come from the Greek gargolos, which is itching.
Okay. So yeah. Not the throat. Interesting. Not the throat. Okay. Never mind. I would have, I can't tell you where that, what the etymology of that is. So anyway, apparently we've been talking about feeling itchy, tickly feelings for a long time. This is what you're probably thinking of when you think of being tickled. It's like a very deliberate touch on particularly sensitive regions of the body. That's,
makes you laugh. You know, it's this involuntary squirming, contractions in your body,
laughter, of course. And it's not just humans. Other primates do also get tickled and react in this
way. There is also some research showing that rats might also be ticklish in this way. They
certainly have a very similar response to their bellies getting
tickles by folks in the lab.
They create 50 kilohertz ultrasonic vocalization.
So we could not hear them, but you can find basically slowed down, pitched down recordings
of this that are just rats shrieking with laughter.
So we don't know for sure that that's actually sort of a, you know, from the same evolutionary
route.
Because again, it like seems very rare even among mammals.
But we know that primates and humans, this is a weird thing.
we do. Another, you know, specific thing about tickling that makes it distinct from other kinds of
touch. And this is true for both that, you know, that little itch tickle that many animals have
and for the laugh out loud tickles that are more unique to humans. It requires surprise.
There's something about it that the reaction is about the intrusion of the sensation. It's not
expected. Yeah. Element of surprise.
Exactly. And that is why you can't tickle yourself because because you know what's coming, it does not elicit the same reaction. So there are parts of your body you might consider ticklish, but you cannot tickle yourself there. One interesting exception is that there is some research sewing that people, you know, on various parts of the the schizo type of schizo type of schizoaffective disorders, sometimes seem to. You know, the schizototype spectrum. So, you know, people with schizophrenia or, you know, other type of schizoaffective disorders sometimes seem to. You know, you know, you know,
be more capable of tickling themselves. And yeah, it's not all or nothing. It's not like everyone who is
diagnosed with schizophrenia can tickle themselves. But there is some data on this. And it's also very
strongly associated with having more symptoms like auditory hallucinations or what are called
passivity experiences. So states of mind where you struggle to strongly associate the thoughts you're having
with coming from you. So this is like not something that there's a ton of research on, but it does
sort of make sense when you think about it. That if your brain does not register that your thoughts
are coming from you, that it might also sometimes not register that your tickles are coming from you.
So you may have this strange superpower of being able to tickle yourself.
Kind of would be a good way to maybe wake yourself up in the morning. Like if you're having some trouble.
Just trying to think about where that could come in handy. Yeah. And so that we know that.
it, you know, typically when when somebody attempts to tickle themselves, the, in the cerebellum,
there are these motor command signals that essentially are like, yeah, I can predict what's coming
and suppress it. I'm like canceling it out because that's not an important sensation to register.
That's you scratching your, your armpit. You know, it's a, there's no need to have you jump out of
your skin and laugh because it's coming from you. So that certainly, you know,
feeds into this idea that tickling is part of some evolutionary sort of like situational awareness.
It's like an alarm system.
But then why do we have this added kind of tickling that makes us burst out laughing and not just the one that makes us go like what?
What was that?
This is much more of a mystery.
And it's one that people have mused about for a long time.
Socrates thought about it.
Not kidding.
Long time.
Yeah, the long time. He talked about it as being, you know, this weird intersection of pain and pleasure.
Aristotle thought that it was about areas where the skin was particularly delicate might be more ticklish.
Charles Darwin definitely talked about the element of surprise being important. So he was, you know, of course, on the right track with that.
And yeah, so there are still today, like several theories about.
about why we are so uniquely ticklish in this way. One interesting idea is that it may have
developed as a tool for play fighting that lots of species, including primates, have this sort of
mock fighting play, especially when we're young. And so this idea is that these particularly
vulnerable spots, like your neck, your armpits, your ribs might, like maybe there's
some benefit to us having a reaction when those are playfully attacked that's different from
like fear and pain because you want to continue having the play combat so that you continue to
learn.
Learn how to.
Yeah.
Learn how to protect them.
You know, it's like basically that we have this, this sort of positive, but oh,
don't touch me their response.
That is, you know, maybe a very specific sort of like learning ground for when we're young.
You know, another very common theory is that it's all about social bonding, like so many weird things that primates do.
Especially because babies become ticklish quite early in, you know, they're in their life relative to, you know, having thoughts about things and sharing them with us.
They, you know, react to being tickled and they laugh.
Not immediately, but that starts like pretty early.
And so some theories hold that this is purely like a pre-verbal bonding activity, that this is about like,
That makes sense.
Yeah, a playful thing that happens when we touch each other.
Yeah, like you are not a threat.
You are part of my group.
You are.
Yeah.
Yeah.
That like, you know, we're sort of developing this, this very, these very specific cases where it's like, oh, that touch does come from someone else.
But it's like, fun.
It's cute.
We're friends.
And all of this is preamble for this new research that just came out in August in nature,
human behavior and it is this big cross-cultural study. They looked at 444 participants from
China, the Netherlands, and Greece. So not the entire world, but like I think it's fair to say that
they picked three cultures that, you know, socially have like pretty distinct vibes. And that was
their, their goal that they, they wanted to like look at a good swath of humankind and be like,
these are people who don't necessarily, aren't necessarily socialized in the same way,
you know, don't have a lot of the same, like, learned social bonding behaviors.
You know, and so what are the commonalities going to be here?
Not there were a lot of them.
So first of all, tickling itself, 98% of people across of these three cultures had been tickled.
more than 95% had tickled others.
And, you know, I was thinking it was like, I guess that's not surprising to me because
tickling does feel ubiquitous.
But also, I don't think there are many random behaviors you could ask 448 people about that 98%
of them would be like, yeah, that's happened to me other than things you need to live.
Right.
Eating, breathing.
Yeah.
Yeah.
Yeah.
And they also found that the reactions, unsurprisingly, again, we're pretty.
universal that like you laugh you like try to escape you might scream and this was the same across the board
so then they decided they they did these like color maps where they had people like basically shade in
where they were ticklish and then they created sort of like heat maps to to be like where is everybody
ticklish and one thing that's cool is that they had them do two maps they had them do one that was like
where would a friend or family member tickle you
and one where would like an intimate partner tickle you.
So, you know, this like armpit, neck, rib area,
uh, behind the knees, feet was like universal.
And then really the only difference for, you know,
intimate romantic sexual partners was that it added in and, you know,
in some cases focused on more erogenous zones.
So, you know, like inner thighs became more, more of a thing,
which is unsurprising.
But the real takeaway is that like
where there are these places that seem to be inherently where people are ticklish.
Of course, some people are more articulish than others.
And you have your spots where you're particularly ticklish.
But like there are these places that are ticklish places.
So one thing that's interesting is that where these places are is not a one-to-one match for where we have like the most nerve sensitivity.
if that was what dictated where we're ticklish,
the palms of our hands would be very ticklish and they're not.
Do you have fingertips?
Exactly.
Yeah.
Which would be very impractical.
That's how we touch people.
So it's definitely not about just like pure sensitivity.
It's also not about pure pleasure because again,
those erogenous zones only came up as as being ticklish when we talked about
like being tickled by a romantic partner.
So it's very like, that's very like, that's very.
context specific. So it's not about just like we're ticklish in places where it feels good to be
touched. It's not that we're ticklish in places that are inherently more sensitive. We're not
ticklish in places where the skin is thinner like, I think it was Aristotle or so. I don't remember
who was Aristotle or Socrates. He thought that. But one of those dudes thought that. And that's not the case.
What the one sort of like prevailing theory for why certain places are more ticklish that this study
seem to support was that it's places that we are not touched as often just in the course of our
day-to-day life and that tracks with a lot of what Charles Darwin thought about tickly it was about
the element of surprise um so yeah sort of you know if you think about like your ribs and your neck and
you know under your arms yeah yeah like those aren't places that in the course of day-to-day activity
many people are going to reach out and like give a wiggle their fingers on.
We still don't know why tickling evolved.
You know, like I said, there are these ideas about what it might do for us, you know,
socially.
And it's also, as is always the case with random behaviors, it's possible it's a holdover
from something like it doesn't serve a purpose.
It's like just something that sort of happened by accident and that has been preserved
because it doesn't hurt us.
sensory appendix kind of sort of something like that. I feel like there is probably some,
you know, social benefit, because we know that it is something we use to social benefit, right?
And especially. And especially with like babies, you know, if you think, you know, and I mean,
what more like there, I don't think, you know, evolutionarily, like there's no more important bond than like
keeping your young happy and close to you. So that, yeah, that part of it makes a ton of sense.
Yeah, and I do. I kind of, you know, again, this is just me having vibes. But I like the idea of it being, you know, sort of a way that we learn to protect our vulnerable spots, but in a way that's fun and playful and that allows us to like learn safe touch from people that we trust, right? That like it can feel nice and be funny to be touched by people who care for you.
and who you care for, which is, you know, an important lesson to learn.
Very.
Yeah.
And so in looking at this research, I then also learned about Hector the Tickle Robot,
who as far as I know was not part of this most recent study.
In fact, I'm sure he wasn't because this most recent study was about surveying people
about, you know, their experiences being tickled, how they feel about tickling.
Hector the Tickle Robot is all about quantifying, quantifying the tickle.
So he is, I believe, in a lab in the Netherlands.
Because here's the problem is that if you want to track exactly what happens in the moment when somebody is tickled, you know, how fast it happens, you need a standardized tickle.
And so that's where Hector comes in.
S-T.
Yes.
That's where he comes in.
And basically it's like these electric motors that slide probes across the soles of the feet.
and so they're able to be like every tickle is exactly the same.
We know at the exact moment at which the tickle commenced.
I love, I love sight.
I just, what a life.
What a life.
I definitely don't recommend trying to find a picture of Hector, the tickle robot.
You'll find a lot of AI slop of people who are interested in the concept of a tickle robot for reasons that are their own business.
But anywho, this guy, he's doing his job.
There's nothing untoward.
Everybody has consented to the foot tickling and is being done scientifically.
And studies using Hector found that this response happened so quickly within 300 milliseconds of a love science tickle onset.
TEO.
Yeah, TEO.
We see breathing changes, the circumference of the chest.
They were measuring that changes within 300 milliseconds.
We see the facial expression of.
of a genuine smile, you know, the whole face smiling.
Those happen.
And then within 500 milliseconds, people actually start laughing.
So the way the robot was doing the tickling.
I apologize if he does that already.
The robot is doing it.
It's not, okay.
The robot is doing the tickling.
Got it.
Got it.
They are concurrently measuring all of these things.
Got it.
Okay.
People are hooked up to many devices, including a tickle robot.
And yeah, they also found that
the physical parameters of ticklish laughter.
So how fast, how loud, how high pitched were directly and tightly correlated with subjective
reports as to how tickled they were.
So basically, you laugh faster, louder, and at a higher pitch when you're like, I'm so being
tickled right now.
Right.
One other really interesting thing I learned that I investigated.
I tried this morning for science was that, okay, so we know that you can't tickle yourself, except in very rare cases.
So researchers looking at how that works found that if you are tickling yourself while someone else tries to tickle you, you feel less tickled.
I'm trying that today for science, for science as well.
Because basically your brain is then getting the input that the brain should be canceling out the tickle sense.
Now I am very ticklish and I don't like being tickled, which makes me sad.
I, you know, not to get into too dark a place, but I had bad experiences with someone who did not respect my boundaries about tickling.
And so now I have a very strong and averse reaction to being tickled.
So this morning I said to my husband, I said, Oliver, I need to try something for science.
And I, I, I tickled myself and I said, okay, do what you will.
And it was genuinely more tolerable for me.
Wow.
And then also was curious.
I was like, I'm scared.
The study definitely looked at whether if you're already tickling yourself and then someone
else starts tickling you, what happens?
And I was like, I'm scared to see if you start to clothe me and I tickle myself, will that help?
But we did it.
I was very brave. And I will say, I do think it also helped make the tickling less intense for me.
So people, if you are also like really, really, really intense about being tickled, this is perhaps, you know, just like wiggle your fingers in your armpit.
That might be enough to make things be okay. Yeah. So today I learn things I can use and that's cool.
And yeah, in general, research does show that I want to say that this study found that like a quarter of people say that they like are really not into being tickled, which again I can really sympathize with.
And that seems to like often be kind of a learned behavior because we do see that people are more like glitter port that they overtly liked tickling when they were children than they do as adults.
So people, even people who now say, I don't really like tickling.
And this is not necessarily people who say they hate being tickled.
But people who are like, it's not, you know, whatever.
It's not for me.
Yeah.
It doesn't bring me joy.
They, some of them will say, but it did when I was a kid.
And so again, this maybe gets back to like, is there, you know, a social evolutionary purpose to it that is very specific to like learning and bonding while we're young.
But then also I think, you know, there is this learned aversion because tickling was not the positive experience that it.
can be that it is it seems physiologically designed to be so i guess the big the big takeaway is
respect tickling boundaries or you might be the jerk who ruins somebody's tickling experience forever
but also you know if you're if you really dread being tickled know that perhaps uh some some
self-touch to a tickle zone could yeah could could save you in the moment and that hector the
tickling robot is out there doing his important work which i really love and i hope and i hope
I hope I can meet him someday. But yeah, those are my, those are my tickling facts. I, what a journey.
It's been for a ride. I actually broke up with somebody in high school for many reasons,
but one of the top one that I cited was he tickled me too much. And because I am also very ticklish.
And like, it's fun to a point, right? Like they're like that those first couple seconds. And then
when it's like, okay, I'm having some trouble breathing. Yeah. Like it, you know, yeah. So we share that a
little bit. Yeah, I honestly, I would say that multiple times is like, tickled me too much.
Yeah. Yeah. Well, because it's, you know, it's like any other, any other boundary.
If you're, right, if you're enjoying that I'm not enjoying this, that's not. That's a problem.
That's not good. Yeah, it's funny. I, because I'm so ticklish and do not like being tickled,
like to the extent that I sometimes will like react as if I'm being tickled when definitely
that's not what's happening. Did you have any of that like response when you were researching this at all?
like psychosomatically, because I've been itching a little bit during this whole segment.
Like I've noticed like, oh, my feet are a little itchy.
Well, but I definitely, I read this book when I was getting ready to become a parent called
Baby Ecology, which I do really recommend. It's a great book in terms of like sort of getting
you to just sort of stop and be like, what is it going on in this little brain and how might
that be? How can I contribute to that experience in a positive way? And I remember at one point,
It was like, yeah, that's why it's not really recommended to like to tickle kids extensively
because they can't tell you when they're really not into it.
And me feeling the way I do about tickling, I was like, oh, wow, confirmation that I should never tickle a child.
And now that I actually have a nine and a half month old, he loves being tickled in reasonable
dose.
And I really, I was so so cautious about it.
And I really needed to like have several moments of being like, oh, no, this baby is having a really good time.
And I should probably facilitate that.
So reading these studies also made me be like, yes, what that book was talking about was tickling for like a long time while your kids screaming.
That's not good.
But humans are so funny.
We do weird stuff.
We have a little rhyme in Tamil.
It goes like nandavar, teylvara, nandavarra.
you do that to little babies and it literally means well it sounds a bit scary if I
translated because it would mean opium is coming and or something like it's tropical stuff that
yeah yeah yeah what I noticed when my babies were little and now they're not that little anymore
but they don't react the first few weeks of there's simply no reaction they don't smile they don't
feel ticklish. Then as they grow older, a few weeks old and a few months old, and then it gets
really, you know, by the time they're nine months old, they absolutely love it. Yeah. Yeah. It's a daily
massage bath and a little bit of tickle time, you know, it sets your day. Yeah. Yeah. Absolutely. Yeah.
And I love, again, like how universal it is. That's so cool. Yeah. Especially given that it's
to not be universal for most animals.
It's a weird thing for,
I mean, it's decided to start to make it.
I love that there was a rhyme for it.
You know, even, yeah.
That rhyme would make my son smile.
Yeah, oh my gosh.
Well, because I think because so much of it is about the anticipation of it.
And then the, you know, I think the,
the anticipation coupled with like,
you have no control over exactly what's going to happen.
That's a surprise.
Yeah, yeah, exactly.
Yeah.
So, yeah, I think then all of this, the sort of,
expectation of maybe being tickled becomes its own whole thing, which is so interesting.
All right. We're going to take a quick break and then we'll be back with some more facts.
This back to school season, spend less on your kids with Amazon. Hi, I'm Laura Clary,
mom, overthinker, and someone who has a complicated relationship with the back to school supply list.
Can we just be honest for a second? Kids are expensive. Last year, I went all out on my daughter's
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Okay, we're back.
And Laura,
let's talk about some eye teeth.
Eye teeth.
So this was one of those fun facts that kind of rendered me completely speechless when I first heard it.
And it's an example of why I really do love what I get to do here in talking to scientists every day
and hearing all of the really cool things that they're working on.
I was interviewing marine biologist Jada Elcock about her work tagging whale sharks.
She is so cool.
She will literally just swim right up.
to these giants. You know, we're talking 50 to 60 foot long fish and put this little tag on them.
So I had to do a story just kind of learning more about how they do this, why they do this.
And luckily, towards the end of the interview, she drops this bomb on me that whale sharks have teeth on
their eyeballs. And like, I was having trouble forming words, which is not great when you work with
words for a living. So it was really good that she didn't start the interview with that. Otherwise,
I don't think we would have gotten to the tagging.
It just would have been like, tell me everything you've ever read about these eyeball teeth.
You know, we were talking about like, what does that even feel like?
Does it feel like you're closing your eyelid over like a shard of glass all the time?
Like, what's going on here?
We don't know, obviously, because the whale sharks can't talk to us.
But they really do have teeth on their eyeballs, which is just, again, completely fascinating.
And I don't know.
Maybe that won't stop everybody in their tracks.
Maybe I'm just weird, but it completely derailed the end of an interview for me a couple weeks ago.
Yeah, before we get in too much, just some background on these animals, they're honestly one of my favorites.
They are sharks, not whales, so fish, not mammals.
And they are the biggest known fish in the world.
Their maximum, their complete maximum isn't well known, but they can grow again as large as 60 feet and weigh about 11 tons.
They're mostly found across the Atlantic Pacific and Indian oceans in the tropics,
but they can become as far north as like the waters off of New York and New England.
That's actually where she was tagging the whale shark in the video that I saw.
But yeah, the tropics are kind of mostly, you know, around Florida, the Philippines.
That's really where they're spotted the most.
They are filter feeders, so they don't have like the giant jagged teeth like a great,
like a white shark or a tiger shark.
And they mostly feed on plankton with those filters.
So that in that way, they're kind of like a balean whale.
And they can live upwards of 50 years.
So they have a nice little decent lifespan.
And their teeth, their eyeball teeth, actually.
These are called dermal denticles.
And they're basically tiny teeth that cover the eyes themselves.
A team in Japan first detailed them in a study that was published in 2020 in the journal Plus 1.
And dermal denticles themselves aren't just exclusive to the eyes.
obviously you see the word derm in there, which indicates skin.
And they are found on several shark species and cover their bodies kind of along with the scales.
They're small, V-shaped, and they help decrease drag in turbulence as they swim,
helping them move faster, and also giving a little bit of defense against other sharks and critters
that might want to, you know, take a little bite out of them.
Now, when it comes to the whale sharks' eyeballs, they're, as of now, I believe, the only known
shark species that have these. I'm sure they're probably, it probably could be on some others,
but we're not sure yet. They help shield their eyes from the elements. So sun, maybe bits of
debris that can get in the water because they don't have eyelids. So that thought that I had of like,
oh man, does it feel like they're, you know, closing their eye on a nail? Probably not the case.
That was more, that would be, that's more a Laura thing. Because they don't have eyelids. And their eyes are
also positioned on either sides of their head, either size of their heads. And so they're kind of
vulnerable if they can't see something coming or if it's like not quite in their field of view.
And it protects, again, also from other animals. And their eyes are actually kind of small compared
to the size of their body. You know, you'd think like a giant squid that has, you know,
eyes that are the size of like a giant plate. These giant fish surprisingly have pretty small eyes.
So for this study, they looked at the eyes of both living whale sharks and some dead whale sharks that had washed up on shore, died of natural causes.
And they found that a single whale shark could have over 3,000 dermal denticles around their eyes alone.
Yeah. And all of them are kind of clustered around the shark's iris.
They said that they kind of looked like oak leaves, so not so much triangular like the ones that are on skin.
and some actually kind of resembled human molars, which makes it even more interesting as far as like this teeth and eyeball connection.
And yeah, it just kind of made sense that there would be some sort of like a tooth shape in there somewhere.
And so while they don't have eyelids, they can partially retract their eyes into their skulls.
And again, that's where this eye teeth and that retraction might be helpful in shielding their eyes from, you know, just from elements.
And it could also indicate something interesting about the whale sharks' evolution and survival.
As we kind of know, sharks in general are not known for their eyesight.
They're not like eagles.
They're not like other animals that can really see things.
Well, they rely more on their sense of smell.
A lot of bites on humans are kind of chopped up to mistaken identity with a shark thinking that they're going after a seal because of the way like a bodyboard or a surfboard might be shaped.
they are really mostly using smell to kind of navigate.
And the same likely goes for whale sharks.
Scientists assumed that whale sharks were kind of in that same camp where they mostly used
smell in other senses because they have such relatively small eyes compared to the rest of their
bodies.
But here's the thing.
Why have all of that protection, these eye teeth and this ability to sort of partially
retract your eye into your body, if eyesight isn't.
as important as it is to say a white shark. So it's possible that they evolved these denticles
because vision is more important to their survival than it is with other sharks. So it's just kind of like
this weird like evolutionary math problem sort of. It's like, okay, if this one, if this is important,
I have to evolve this, but it might not be here. Like it's just kind of one of those, you know,
odd little quirks of evolution that these giant fish have might, might stand out just because
their eyesight might be better than so many of the other shark species that are swimming in
the ocean, which is very cool. Yeah. And then, yeah, like they also, the fact that they're filter
feeders, they're just, they're really just a very interesting fish, even when you, even when you
take the eyeballs out of the equation, they're like, they're absolutely fascinating. Like the spots,
the patterns that they have, like, I love them. Now, I like to end.
my segments with a question because it's, you know, the other very fun part of my job is I get to ask
questions all day. If you could be any shark species for a day, which one would you be and why?
I'll give you a minute. That's a great question. I definitely have done, I have made some content
in the past about deep sea sharks and how weird looking they are. So many of them look like
they belong in like a stop motion timber movie.
Yes.
Yeah.
So those are cool.
But I think if I was going to be one, I don't remember.
Which shark is the one that's just like, like, the mouth is just open?
The basking sharks?
Maybe.
Let me think it up.
Yeah.
Yeah.
Oh, that one also has a big wide open mouth.
It is not the one I was thinking of.
Oh, okay.
Scary looking.
The hammerhead shugs, because that's my eyes.
Well, that's, oh, oh, I interviewed Anthony Mackey from the most well-known from the Marvel movies.
He did a great shark documentary a few years ago, and I asked him this question, and that was his answer, too.
I love him.
They're so cool.
They're so cool looking and the way that they move, yeah.
I have won so many of them for my kids because I just have to love that.
Yeah, yeah.
Yeah, we had a researcher on talking about hammerhead sharks.
I'll have to link to that episode in our article for this.
this one. Just incredible. I think, okay, I think that what I'm thinking of is the mega mouth shark,
which is perhaps actually is as freaky looking as the basking shark. And I just had never seen a
picture of it head on. But anyway, I just really like the idea of a filter feeding shark that just
kind of is going around always kind of like, always looking like it's about to eat a Scooby-Doo sandwich, you know?
There we go.
Yeah.
It just seems very, they seem really calm.
Yeah.
But if I wanted to really scare someone, it would be the frilled shark because those look
frightening, freaking little guys.
It's, I mean, I would say whale shark even beyond doing this story, but it also is cliche,
but being a white shark would be cool just because you have your own theme music.
I mean, you've got like a great theme written for you as you're swimming to like to the point
where one of my nieces now whenever she sees something with a shark.
shark on it will say, but um, because I do that all the time when I see a shark around her. Like,
I don't know. I think that, I think that that would be fun. But yeah, my answer would definitely
be whale shark. And that's what that was even before I knew about the eyeball teeth. Also, I just
looked up a picture of a whale shark and realized that's the shark I was thinking of. I was thinking,
I had nurse sharks in my head as you were talking about whale sharks. But no, a whale shark. Because
yeah, they have, I, I love their little mouth. They're funny. They're funny. They're a mouth. They are.
They are. They're so cool. Great. Now I have the right name for the shark. I want to eat in my head. So thank you for that. All right. We're going to take one more break and then we will back with some more facts.
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Okay, we're back. And let's talk about some spices and how they work in the brain. Why do they make our brains buzz? Please tell me more. Let's spice up our lives, shall we? Let's do that. And chilies and prickly ash are fascinating precisely for these reasons because they produce very, very different neurological sensations. So chili primarily activates our heat and pain sensing systems while prickly ash produces a
very different sensory experience. There is, there is tingling, there is buzzing, there is
vibration, and then eventually numbness too for many people. And one of the interesting things
about my book Spice is that I look at several prickly ash varieties all the way from West Africa,
via Goa, then Nepal, China, Japan and Korea. And, you know, Sichuan pepper is one
culinary expression of a much larger botanical and cultural diversity. So I would just prefer to call
them prickly ash and not just Sishuan Peppers. And I hope that's okay. Oh, it's definitely okay by us.
And I'm excited to learn more. I love Sashuan pepper and I want to hear about everything else
related. So let's go through Prickly Ash first. And then I'll jump on to chilies. And then let's
consider what happens when we put them together in our mouth, say in a plate of Maputum.
So most people know prickly ash as Sishuan pepper, as we just talked. And they've probably tasted it in a Chinese restaurant serving Sishuanese fare. A plate of Maputufu has probably become the most iconic dish using the spice. And the place itself lending its name to the spice now, right? It's Sichuan peppers. But well, it's made from, you know, the dried outer covering or botanically speaking, the pericarp of the fruits of several Xanthosylum species.
And this biodiversity of prickly ash is truly spectacular.
It belongs to the citrus family, like, wow.
And lemons and oranges and mandarins, which probably explains its very citrusy aroma.
Yeah.
So, okay, let me tell you the first time I tasted it, right?
I tasted prickly ash in Goa in India, where fresh cuttings of these small clustered green fruits
were being sold by tribal women on the roadside.
And so we stopped by the car and I bought a few bundles.
And the ladies called it Teppel, which I had certainly heard of,
but I had not tasted at that time.
And so curious, I plucked one berry and I popped it in my mouth.
And the experience was mind-blowing.
Literally, I could feel the citrus in my head, my nose, my mouth,
and thronging as if...
There was a fine spray of very potent citrus extract and it had exploded inside my head.
There was like this warm numbing sensation.
I remember that so vividly because it crept up so slowly and it spread along my tongue.
And this is freshly plucked berries, mind you.
So they're still green, they're tender.
And it's a whole other experience to the dried berries that you may have used for cooking,
which is what we get to buy in supermarkets and spice purveyors.
because these spices don't grow everywhere really, right?
And that's just a fraction of this insane potency.
So you can just imagine, go imagine that.
Actually, Rachel, when you were talking about 50 Hertz,
I remembered a study I had read a couple of years ago,
and it was by researchers led by Nobuhiro, Hagura,
and Patrick Hagar at the Institute of Cognitive Neuroscience
at the University College in London.
And they measured the thing.
singling sensation caused by Sichuan peppers to be perceived at approximately 50
hertz in a study that they did in 2013.
Wow.
Wow.
It's so interesting.
And that distinctive sensation actually comes from a large group of compounds called
sanchules, particularly one called hydroxy alpha sancho.
So instead of producing this straightforward burning sensation of chilis,
what sensual does is it goes in the series.
It starts with this tingle, which moves on to become a buzz,
and then you start feeling things vibrating,
and then there's a numbing sensation.
So there's a curious trick to this.
Yeah.
And I think it's because our sensory neurons are constantly regulating
their electrical activity at a cellular level, right?
And there is potassium channels that are part of this,
large control system. And by allowing this potassium to move out of the cell, they help keep this
neuron from becoming electrically stimulated and excited very easily. So what Sancho does is it comes in
and it interferes with some of these potassium channels. And particularly one that scientists have
called as Tresk or T-R-E-S-K. What T-R-E-S-K, what T-S-K does is it changes. It changes. It changes.
changes in neurons' electrical balance, making it easier for the sensory neuron to become active.
And so the neuron becomes very excited.
But here is the extraordinary part.
Sanchul can activate some sensory neurons, a bit like the tickling, that normally help us,
and they tell us that something is touching or moving across our skin.
And then these neurons start firing in small bursts when you eat a small pepper barrier.
And your brain receives this very strange pattern of activity.
And then it begins to interpret this as, oh, it's tingling.
Oh, it's buzzing.
And then there's a vibration.
And this happens not if you just place it in your tongue.
You have to chew it.
To like activate to kind of.
Activate it.
Exactly.
And that releases this whole thing.
because what, yeah, you know, it's the oil glands that rupture.
So when you eat Sishuan peppers, your tongue isn't actually or literally vibrating.
It's that sensation.
Your neurons are sending your brain a pattern of electrical signals that your brain experiences
as vibration, really.
And I think what happens is when you contribute, you know, when you keep digging into your Mapu
tofu, for example, that is, let me put it scientifically, this continuous.
stimulation. That pain sensing machinery in those neurons, they become less responsive temporarily.
Essentially, they start turning down their signaling after being so excited for a while.
So that's also another interesting thing that happens on your tongue. There are so many studies
that show that when the sensory neurons on the tongue are activated, it triggers this rush of saliva.
and that begins to shift how we register taste that follow.
Oh.
Heightening them even.
So, you know, food begins to taste delicious because suddenly all these taste buds are more open, more receptive.
And so go ahead, spice your food with some prickly ash and will taste delicious.
This probably explains, you know, the use of Chinese spice salts like Jiao Yan.
It's a classic Cantonese seasoning blend, which literally means pepper, salt.
Xiaoh meaning three peppers in the blend.
There's Sichuan pepper, there's white pepper, and classic black pepper.
But then there is yarn that means salt.
And the peppers are mixed with salt and blended.
And they're used in a lot of Cantonese style wok-fried dishes, pork chops,
they could be squid, tofu, shrimp.
But it's a classic seasoning.
And it's really, really quick and delicious.
There's nothing much to it, really.
Yeah, I have a jar of that that I use all the time.
It is a great, easy hack to just make most food taste even better.
Exactly. There you go.
It's such a classic and simple thing that you can easily make at home, actually.
So there is a recipe for that in the book as well.
Just as spice also showcases so many flavors of prickly ash.
You know this white arc that I just talked about
and explains how you can cook with it so that you can enjoy these berries at peak flavor.
So, you know, there was, when I had to test for the book and I sourced so many different varieties of prickly ash, traveled and therefore bought many, also heard of it from friends and then they got me many samples from different parts of the world.
There was something extraordinary that I experienced when I cooked with these different types of prickly ash berries.
Let me tell you what happened.
So when you crushed them between your fingers, they're raised oil glands rupture.
You know, and they, and this is, you know, you can try them in your kitchen with dried store-bought Sishuan peppers,
good quality, you know, prickly ash berries.
The fruits release a very heady, citrusy scent and they all different depending on which ones you're trying.
So, this is Sishuan pepper, which is sparkles like, I think like Kalamancei,
as Timur and Tinge, which grow in the, uh, the substance.
Abhimalian ranges in that region, they have a more honeyed burgom kind of smell.
And Teppel, the one that I first tasted from Goa, remember, that's by the coast.
So there's not much of an altitude there.
It's bitter and brisk, more like grapefruit, actually.
Very heavy and, you know, strong.
While Japanese sancho can smell sun-w warmed,
orange peel, a bit of resin and maybe even a bit of spice like Yuzu.
So very, very different citrus smells from different varieties of prickly ash.
And all of this also then depending on whether they are fresh or dried, right?
Yeah.
Right.
Not just the smell, it's also on the tongue.
There's an initial bitterness that I could experience when I tasted them just on their own.
But then as you begin to chew on them, there is that numbness.
There is that tendency.
That just comes in.
It comes in.
But the buzz varies.
And this is my experience.
And I would love to hear, if at all, any of you tasted, what your sensations were.
Indonesian and Daliman is quick and very prickling.
The tepal from Nepal was more witsy.
And the buzz creeps in slowly, maybe because there's more to chew, you know.
But wajaw, which is Hishuan Pepeacon.
they linger, but they linger on the lip.
Right, yeah.
So there are these different zones they were activating.
Jethor was very fascinating.
I find the ones that when it lasts on the lips, that's the heart.
I personally, that's always the one that's the most difficult.
I guess that's maybe more sensitive.
Maybe there are more nerve endings.
But that's the one that always like, you know, if I don't like a spice,
it's usually because of like that little lip linger.
Yeah. And then I learned that altitude, soil and climate affect what is known as the alchamide levels in these fruits.
So that's why I believe these tastes so different. And I think from all this experiments in my home kitchen and in my studio kitchen, I think what we've learned is that high quality prickly ash should have a balance of low bitterness and a very high citrus nose, which means
the oil glands are really fresh and rich in oils.
And then there is the tingling numbness.
So that's something that you can look for.
A very sensory experience, when you buy, you know, these prickly ash spices in your, in your grocery.
You can look at these for quality.
And now let's move on to chilies, which was the other spice we were considering.
And with chilies, capsicin is the molecule that makes chili feel hot.
Right.
But it doesn't actually make your mouth hotter.
What it does is it activates a heat sensing protein called TripV-1, which you will dispel it.
It would be TRPV-1.
We just call it Trip-V-1 on your sensory nerves.
Your nerves normally use TriP-V-V-to detect dangerous heat.
Right.
And so when capsizing switches it on, your brain receives this message, that's hot.
Even though there isn't actually a rise in temperature.
Whereas capsizing Fycine finds Tripwi1 on our pain sensing nerve endings.
And it's, you know, Tripi1 is basically an ion channel.
Think of it as a doorway, a tiny, tiny molecular doorway in the cell membrane of a nerve.
So when capsizing opens this door, all the positively charged sodium and calcium ions kind of rush into the cell.
And that makes the neurons electrical charge less negative because they were positively charged.
And this process is what neuroscientists call as depolarization, sort of like a handling of charges in a way.
And if it reaches the right threshold in this exchange, the neuron fires an electrical impulse, which then travels towards the brain.
And then the brain interprets that activity as burning heat.
Got it.
Except that there isn't any fire.
And she has simply hijacked one of our body's detection systems in a way.
So your nervous system is being persuaded to believe that it's getting harder.
And scientifically speaking, it has sort of changed the electrical state of your sensory neuron or something like that.
It's crazy to think about it.
That it's so discreet and it happens and you experience it all.
the time.
Yeah, yeah.
I see food.
There's so much that your body is coping with and talking to itself in its own way.
But I think there's one more curious question, which is not about the buzz or the heat,
which is more about why does eating more chili eventually make the burning more bearable?
It's intriguing, isn't it?
This is, I think to me, this is actually the more interesting part of the chili story,
because you might expect that the more capsizing you eat, the more you're, the more
her nervous system with cream, stop it.
Right, right.
What's happening?
Chile has this built-in paradox in a way that the molecules that initially make this pain
sensing neurons fire can with continued exposure, eat more and more, basically, make that same
neuron less responsive.
So you keep activating those trippy one neuron channels and you're pouring all this calcium
into this nerve cell.
And it sets off a whole series of...
you know, chemical messages that's saying enough already.
I'm done. I'm done.
And that's one reason that the first bite of a very hot chili can feel absolutely
ferocious, if I may put there.
But while several bites later, you may find yourself thinking, yeah, you know what?
Actually, I can handle this.
Yeah.
And that makes me think, you know, when you watch all these shows, if people come to eat super spicy chili.
Right.
I was like, that's how people get through hot ones.
There's a sport around that
And then there's a sport around watching all of that stuff
I wonder if they actually eat some super hot chilies
Kind of just condition their mouth
Because there is something about how convenient
And how easy they make it look
I'm sure there's a lot of pain bearing going on
But there could be something behind there
There's a green room chili eating speed
Or like is there like a doping scandal
like you you use the wrong types of chilies to prepare for this they were super super intense and
you weren't allowed or something like that exactly yeah well this is just my hypothesis that could be
to be i think it's solid i have been invited i have not been invited to eat any chilies in any
contest and i don't think i'm i'm a contender for that at all but your nerves haven't necessarily
become tougher just because you're eating that and so i think
there is a distinction, right? There is like, when you say that the nerve gets used to chili,
it sounds more like a sort of psychological tolerance that you're building up, but
versus putting it this way as a sensory, machinery becomes temporarily less responsive,
which is actually the neurophysiology that's going on in your brain.
Yeah. Here's the thing about Chili's. They come in a very wide range of capsizing content. So you have
very mild
chilies or you even have bell peppers
which have zero poison,
moving all the way up the scale to ghost peppers
and, you know, things that have way more heat than that.
And, you know, midpoint maybe can,
which is super common in most people's kids.
It's the standard stuff, moderate heat.
And, you know, you also have the more popular hot varieties
like there's the habanero and the scotch bonnets
that you may encounter in a hot sauce.
But then the extreme heat ones
were the ones that we just talked about,
being the sport almost, right?
Right.
So in Spised, there is a chapter on chili.
So every spice is a chapter.
The chapter of chilies is arranged in the increasing order of their heat.
So you start with traditional recipes with, say, Hungarian paprika,
which, by the way, was a chili developed to have no heat at all,
all the way to the chapter goes on to touching about Naga,
ghost peppers and traditional dishes cooked with that.
So it's a wonderful spectrum of recipes to cook with there.
If I can just plumb in back into the paprika,
maybe you want to use it later on.
Pepprica is so uniquely Hungarian.
It arrived in Hungary in the mid-16th century with the Ottoman occupation.
For a very long time, it was little more than a botanical curiosity.
The sweet peppers we know today grow across Hungary, but paprika, the spice, right,
becomes particularly associated with two places in southern Hungary, Sighet and Kalloxa,
which are on the flat, fertile plains between the Danube and the Caesar rivers.
We know that from, you know, historical records, we know that there has been intensive breeding work in this region,
together with what I find very fascinating is the first research institute for chili peppers.
Wow.
Yeah, the pepper Research Institute of California was already founded in 1917, over 100 years ago.
So it's this ecosystem of having a scientific approach, but also farmers really invested in the idea.
I'm trying to understand the breeding of chili plants and how to call.
great hybrid chili varieties for different heat needs or fruit needs.
I think it's this ecosystem that they had that really helped develop very sweet varieties
of Hungarian paprika that became so characteristic of this region.
The urban legend, or the legend goes that there was a farmer who found one pepper that was
not hot at all and then used to then, you know, develop the variety.
But I believe Europe is going to love this.
But, you know, by the late 19th century, we do have a lot of writing.
where we can see that farmers around this region
had begun using mechanized tools in the production of paprika.
So they had small machines.
It was no more a hand-done activity by shredding the peppers,
removing the seeds and grinding them,
and then adding the seeds back,
and then grinding them again to create this really vivid red powder.
So there was already machines to do this,
and today it's a proper industry, right?
But here's the fun fact.
A very big international debut moment came only when Augusta Skoffia, the legendary French chef,
with paprika from Sikert into his goulash at Monte Carlo.
Wow, that's what did it.
That's what did it.
And suddenly the intensely colored spice, very mellow, had a new international audience.
I think that's, paprika is just such a marvel, right?
You can use it in everything.
And it just brings the dish alive.
There is a cooking trick, though.
When you add paprika, and this is what Hungarian grandmas have told me,
when the oil is hot and everything is ready,
you have to pull the pan, the brazing pan away from the heat.
And then add all that paprika you need to add.
Let's say you're making a paprika.
Then put in the paprika.
So the paprika is sizzling in the warm oil, but it's not burning.
It kind of just let's go off all that color into the oil.
So you've colored the oil and the oil then colors everything else that you add to it.
You know, you could be your peppers.
There's just everything about that dish is so red.
But it's that oil and careful handling of paprika that is so important there.
But anyway, you know, when someone says paprika, there isn't just one flavor behind that word.
There's just a variety there, right?
There is the very mild ones, which are called Edis, literally meaning sweet.
and then they progressively go, I think, seven or 11 varieties, including Eros, which is the hottest
variety.
So remember that TripVe 1, the molecular doorway that Kepsycin opens, making a peensensensing
nerve fire.
You remember, Tresk, you know, we talked about it with prickly ash, this potassium channel
that San Shul inhibits.
What happens when you eat these two things together?
You eat chilies and prickly ash together.
What happens?
Have you ever thought about it?
I mean, to me, I think that's neurologically extraordinary as a situation.
Yeah.
On paper, that's what it, yeah, that it would be kind of just like a kind of explosive maybe.
That's what Mala is, right?
Yeah, exactly.
But I don't, but what's going on in the brain?
Right.
Very complicated.
Very complicated.
Because these two sensations, they arrive simultaneously and through very different sensory pathways to your brain.
The important thing is that chili and prickly
are not simply adding two kinds of spiciness.
They stimulate different sensory mechanisms at the same time.
The chili is burning you and the prickly ash is making your sensory system buzz
and your brain experiences these two together.
So it's not just hotter, it's neurologically busier.
So it's like hot and there's a lot going on.
It's like, you know, if you're tasting wine, it's like it's a more complex bouquet.
or something like that.
So what I find fascinating,
and I highlight this through numerous recipes in the book,
is this gorgeous interplay of chilies and prickly ash,
which is celebrated by so many cultures across the world.
You know, the most famous is the Chinese word for this sensory flush, if I may,
the Ma-la experience that you just said,
Ma meaning numbing and tingling, and la meaning hot and spicy.
but you see it repeat over and over again.
It's a motif. It's a spice motif that comes again and again in a go-and-gassies stew
or sprinkled on top of a Bhutanese cucumber and salty cheese salad.
It's called Goen Hogue.
Or you should try this superbly spiced Nepali condiment called Timurko Chop.
And several Sishwani's classics, of course, including some recipes for crispy chili oil that include both.
Then you have the Indonesian Sambal Tuk-tuk, which is a batak classic.
And even all the way in Japan, a classic Shichimi Togarashi would have that.
Both of them powdered into the seven-spice blend.
So, you know, it's really fascinating how so many different cultures have clicked upon the same combination.
Yeah, like tickling.
Yeah, the tickling and the heat.
And the heat is, I think it's, this is the beauty of traveling the world.
and looking at people and learning from traditions,
you see that there's not one kind of chili.
Right. Right.
Right. There you go.
They use the facing heaven chilies, which is Chowtianjiao, which is mild.
While in Indonesia, it's Chabiravit. It's pretty sharp.
Yeah.
Right. So there's different kinds of heat that you can pair with this buzz sensation.
So I think everything is game. You can experiment.
There is no rules here. Combine whatever you want.
But I think experience this thrill.
which is very, very fascinating.
Yeah, it's so fascinating.
And also, like, you know, as someone who loves, you know, this combo and this sensation in Sashwan food, I really, like, now that you're saying it, I've definitely experienced it in other cuisines.
Yeah.
But didn't really register that, you know, this was prickly ash and spice.
And now I'm very excited to, like, you know, dive into more versions of.
this and explore and also buy too many kinds of prickly ash peppercorns and berries.
I love doing that.
You know, just having varieties and then playing with it.
I think that's the best part of working with ingredients.
Yeah, absolutely.
Well, thank you so much for coming on.
This has been so fun.
And I am really excited to check out your book and to start cooking some recipes from it.
Thank you so much for joining us.
Thank you so much, Rachel and Laura, for having me.
The weirdest thing I learned this week is produced by all of our hosts,
including me, Rachel Fultman, along with Jess Bodie,
who also serves as our audio engineer and editor extraordinaire.
Our theme music is by Billy Cadden.
Our logo is by Katie Belloff.
If you have questions, suggestions, or weird stories to share,
tweet us at Weirdest underscore Thing.
Thanks for listening, Weirdos.
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