Science Vs - We Solve the 49ers Viral Conspiracy Theory
Episode Date: August 13, 2026Is an electrical substation contributing to injuries on the San Francisco 49ers?? A bunch of people on the internet seem to think so, claiming that electromagnetic field waves could be to blame for pl...ayers getting hurt. We partner with the Pulitzer Prize-winning journalists at Pablo Torre Finds Out to get to the bottom of it. We talk to Peter Cowan, Dr. Ken Karipidis, and Dr. Zachary Binney. Find our transcript here: https://tinyurl.com/SVPTFO49ERSEMF This episode was produced by Rose Rimler, Wendy Zukerman, Chris Tumminello and Bradley Campbell, with help from the rest of the Pablo Torre Finds Out team and the Science Vs team: Ekedi Fausther-Keeys, Meryl Horn, and Michelle Dang. We’re edited by Blythe Terrell. Wendy Zukerman is the executive producer. Fact checking by Marlowe Starling. Video editing and sound mix by Bobby Lord. Music written by Bumi Hidaka, Peter Leonard, Emma Munger and Bobby Lord. Thanks to the researchers we spoke to for this episode including Dr. Joachim Schüz, Dr. Alexandra von Meier, Nekane Sandoval Diez, Prof. Eva Monsma, Dr. Dan Baaken, Professor Frank de Vocht, Professor David Carpenter, Professor Beatrice Golomb, Professor Rodney Croft, Dr. Mitchell Newberry, Professor Tony Blazevich, and Dr. Andrew Ross. Special thanks to Srishti Prabha, the San Jose Public Library, as well as Humdinger Studios in Melbourne, and Wolff Island Studios in New York City. Science Vs is a Spotify Studios Original. Find us on YouTube at ScienceVsPodcast, TikTok at @wendyzuk and Instagram at Science_Vs. Learn more about your ad choices. Visit podcastchoices.com/adchoices
Transcript
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Hi, I'm Wendy Zuckerman, and this is Science Verses.
Today on the show, a weird medical mystery that whipped the internet into a complete frenzy.
And we at Science Verses went so deep to get to the truth behind this mystery that I know the internet says this all the time,
but I am telling you, we found out things that no one else is talking about.
And we did all of this with the show Pablo Torre finds out.
They're a team of Pulitzer Prize-winning sports journalists.
So let's just jump in.
You're going to meet the fabulous Pablo Torre.
Welcome to Pablo Torre finds out.
I am Pablo Torre.
And today we're going to find out what this sound is.
Right after this.
Want to talk ETS with the people behind them?
Join me, it's Jean-Jean Jean-Cabouchard on the Upside Ticker Talk.
We dive into what's moving markets with timely analysis,
trends, and answers to ETF questions you've actually been thinking.
about. Hit play on the upside ticker talk and elevate your ETF investing IQ.
This is foreign territory for me, not merely the fact that you're across the world in Australia.
Wendy Zuckerman, and thank you for doing this, by the way.
Thanks for having me.
This is all a little strange. The studio is not my studio. You're a person. I'm only really
getting to know in the course of this very different kind of episode. I should explain for our
audience who is just meeting you now. Who are you exactly?
I'm the host of Science Verses, which is a podcast that for 10 years has been taking things on the internet, whether it's a diet or a new drug that everyone's saying you should take.
And we're really interrogated.
We've won fancy awards, audiences really trust us.
We did an episode on the fertility cliff and people had babies as a result of it in Publai.
So they sent us photos of children.
So that's how...
You brought life into the world.
Exactly.
That needs to lead any resume.
I am responsible for untold numbers of pregnancies.
That's right.
Elon Musk would be very proud of me.
And I want to acknowledge that you are an NFL fan, question mark.
Look, if I had to choose a sport with a strange oblong-shaped ball,
it would have to be Aussie rules football.
That's all I'm saying there.
So you're a football fan in a different sense, and I fell into a trap already.
Great.
Wonderful.
If I say footy in reference to NFL, I apologize in advance.
But a consistent thing about the mission of this show that you're kindly doing with me today
in this collaboration with yours is that we use journalism to solve mysteries.
Yes.
And the mystery that we have been flooded by here at Pablo Torre finds out, the thing that we
have been requested over and over again to investigate, is a global.
viral mystery that has clearly hit your shores in Australia.
Oh, yes.
We are talking about the San Francisco 49ers,
one of the most iconic franchises in the NFL,
in American football,
that also happens to be plagued by injuries
in a way that has made me contemplate
what the fuck I'm supposed to believe anymore.
This was a wild one when you guys came to us and said,
can you help us solve this?
You know, I may not be into NFL,
But oh boy, am I into science and into cracking mysteries just like this.
Well, as you know, it's been another 49ers season plagued by the injury bug,
and there's a wild theory circulating on social media that attempts to explain what's going on.
The theory's pretty straightforward.
The 49ers have a high number of injuries compared to the rest of the league,
and there's this big massive electrical substation sitting right next to their practice facility and their stadium.
Every camp highlight has the massive substation in the back.
background and all you see now is the substation.
The thought is that these EMF waves from the electrical substation are making the 49ers players
less healthy and more at risk of injuries.
This question about what is hurting the 49ers, why do they have all these injuries?
Could it be the substation?
That is right down our alley.
Add everything up across this entire 90-man roster and roughly 20 separate players
are currently injured and unrued.
unavailable to San Francisco in some capacity.
I thought I was going to be able to just dismiss the substation theory as this nothing burger,
which is what the general manager of the 49ers, John Lynch, himself, has called it, Wendy.
It basically was a big nothing burger.
You know, we're safe.
Like, we're in a safe place at work.
They say that they've hired an independent scientist to conduct their own study.
they've now categorically said
there's nothing to see here
the substation injury theory is not a thing
the scientist has not yet been named
and the raw data have not been published
and football fans
to say perhaps the most obvious part
of this whole entire saga
they're not buying any of this
I don't know what the hell's going on
but the whole damn roster's injured again
look I didn't think there was anything to
the electrical substation theory
Hell, I got to be honest.
What is going on?
The electrical substations, if you have one near any of your facilities, even just near your house.
If there's one near your house, I'd be worried getting out of your car every single day.
There is way more to this story than simply the 49ers getting injured.
That's for sure.
And now people are saying, well, the World Health Organization says that this stuff coming from substations,
these electromagnetic waves possibly cause cancer.
We're like, what is going on here?
We really want to get to the bottom of this,
because we all have substations.
You have many of us in our neighborhoods.
There's one right down the road from me.
I don't know if the substation near you
has the same rating on Google Maps
that the Niners one does.
The rating at last check here, 2.7 stars,
as one guy wrote, quote,
would not recommend this substation,
ruin my fantasy football career,
and ruined my life.
I really want to know what substation he does recommend.
But the thing that felt harder to dismiss than all of this was the cascade of articles and headlines and posts about data,
about how the injury rates for this team are, in fact, an outlier.
And not just that, they're the worst in the league by far.
And you go through your memory banks as a football fan and you're like, okay, there was the time.
that Dre Greenlaw...
Drey Greenlaw, getting ready to run onto the field after that punt,
who's the star linebacker for the Niners,
just snapped his Achilles while untouched in the Super Bowl.
And he planted his left foot, and it looks,
and I don't want to speculate,
but it looked like it could have been an Achilles injury
that it may have just popped as he was running onto the field.
And then there's the time that Jimmy Yerapel, the quarterback,
tore his ACL in 2018.
There's a time that Compenso-L-L-Norman, Nick Bosa,
tore his ACL in 2020.
There's a time that the other quarterback,
Brock Purdy,
tore his UCL in 2023.
Brandon Nyuk, the wide receiver.
He had an ACL and an MCL tear in 2024.
And if you go and talk to these players,
the guys who work in the shadow of said substation
with a terrible rating,
one of them being wide receiver,
Kendrick Bourne,
they also want answers.
What the hell's going on
with all the injuries
that the Niners have every year?
Power plant.
Do you buy it?
that? I kind of buy it. I'm a conspiracy theory, so I don't know, bro. Our grass is brown on that side
and the soccer field. On the other side is green. So that kind of trips me out a little bit.
Yeah, and in case you think that the grass is always greener theory is unique to Kendrick
Bourne, here is Harvard-educated fullback Kyle Eusecheck on the same subject.
It's one of those things that it's just so hard to say because the science is not clear behind it.
And like, I'm very much just like a science-driven person and like I want to see the numbers
and the statistics and, like, I mean, is it a coincidence that, you know, that we've led the NFL
and injuries for the last, like, decade?
I want to see what someone who truly understands that field, what they have to say about it,
and just be curious to know.
Wow.
Welcome to the party.
That is us.
That is us.
So, Wendy, this whole thing, I believe, started with a guy.
Yes.
The person, the human being, who's actually.
behind the viral post and headline that has started all of this.
My name is Peter Anthony Cowan, and I run my own wellness business,
and environmental health is really my focus.
Peter Cowen, as a matter of, I think, just journalistic rigor,
I want to know what his deal is?
Yes, yes, I did as well.
So Peter Cowen, he grew up in the Bay Area,
so he's always been a casual 49ers fan.
I don't know the names of the position.
really. I just, I watch
these beautiful angles and motions
and it's like ballet to me.
And by the way, he's a musician
and he actually wrote this
and recorded it. This is Peter.
We're listening to Peter Cowan
tinkling the ivories right now.
That's correct. This is Peter.
So he's watching this ballet
of football and
he starts seeing his beautiful
prima ballerinas getting injured.
The 49ers in particular
are getting hammered.
with injuries, always having this trouble.
And somewhere along the way, Peter stumbles across a radio interview
on a local Bay Area sports station that he likes to listen to.
And it's an interview with ex-49ers player John Feliciano.
This is September 2025.
It's 95.7 the game in San Francisco, and John Feliciano is the guest.
For 49er fans where it seems like, and actually the data suggests it doesn't seem like,
It's fact.
Usually, and almost always, the 49ers are one of the most injured teams in the league.
And the hosts are talking about all of these injuries that the 49ers are getting.
And it's gotten to the point where people are like, it can't just be dumb luck.
Like, there's got to be something to it.
We used to joke that it was the power plant behind the practice fields.
It's important to say that it's not a power plant near...
the 49ers side.
Okay, so please explain the difference
between a substation and a power plant?
So a power plant generates the energy,
creates the energy,
and then it transmits it over to a substation.
What it does is it converts the voltage
into a voltage that then your house can use, basically.
So it changes the voltage
and then transmits that electricity
to your home or your business
so that you can power your heater,
your lights, your computer,
any form of electricity in your home
is basically coming from electricity
that's come through a substation.
This really stops Peter in his tracks
is because he is worried
that substations emit electromagnetic fields.
And basically these fields are waves
of electric and magnetic energy
that move together.
And Peter wonders, what if John Feliciano is right?
what if those fields are harming the players and increasing their risk of getting injured?
Because it's not just that the substation is close to the practice field.
It's also that the stadium, that the players play at, Levi Stadium, it's also so close.
And when you go up, you walk up the back steps, you're looking right over the substation.
It's just you can hear it buzzing and stuff.
So how much buzzing are we really talking about?
Great question. We actually sent a reporter to the site, and look, she went to the loudest point that she could find, and here's what she sent this.
I feel like data centers have been absorbing a lot of the criticism for just ungodly noises emitted by electrical facilities.
I feel like the substation is rightfully now in the conversation.
I mean, it's not birds tweeting. It's not a nice sound. That's for sure.
It's not piano and ballet. And so Peter can't get this idea out of his mind. Could this substation,
be causing the injuries.
Right.
So I think it's really important
to know about Peter's backstory here,
which is actually fascinating.
I like to start with this one.
I dropped out of high school,
and I went on to
become a hacker.
I was into coding.
You would have been an early hacker.
You would have done well, I imagine.
Yeah, we did,
and I'm pretty sure the statute of limitations
for wire fraud is only 25 years,
so I think I'm good.
No, it was...
It was the 90s, man.
Like, it was a wild west.
The statute of limitations for wire fraud is actually only five years.
So Peter is absolutely fine.
This is very reassuring.
So, bigger picture, Peter is not a scientist per se,
but he grew up, moved on from hacking,
and then eventually went down a path that many hackers from the 90s went down,
which is you get into software engineering.
He did end up working for a wireless networking company,
and he starts writing firmware,
for Wi-Fi routers, just like the Wi-Fi router that you might have at your home.
And Wi-Fi, by the way, also emits electromagnetic waves.
Yeah, I should say there's a whole world of people who turn off their Wi-Fi at night
because they're worried about the waves.
And Christian McAfrey, who's to start running back for the Niners,
is apparently one of these people.
He's talked about this very publicly.
You turning your Wi-Fi off at night is, you know, does it help?
I don't know.
Someone said it will.
It can't hurt.
So let me try.
That's really my thought.
Am I now worried as we proceed through this story about my own Wi-Fi?
Peter did. Peter did start worrying about the electromagnetic waves being emitted from his Wi-Fi.
He told us he had some medical issues that doctors couldn't really explain.
It was stuff like panic attacks, difficulty sleeping, cold sweats, shakes.
And he started thinking, could it be from the Wi-Fi router?
Could it be from electromagnetic waves more generally?
And so I started looking into literature and realizing,
there's actually more to it than that.
And so the idea is that we are increasing the amount of free radicals,
which long term creates more oxidative stress.
The thing he's saying is that, okay, what if these EMF waves coming from Wi-Fi and substations and stuff,
what if they, through oxidative stress, were the things attacking the tendons?
of these athletes, of these San Francisco 49ers players?
This is exactly where Peter is going.
So he starts thinking that this oxidative stress could weaken collagen.
Collagen is a protein.
It's also found in tendons and ligaments.
It's super, super important.
So if indeed electromagnetic waves are weakening collagen,
then that could increase the risk of tendon, ligament injuries.
And he ultimately decides to go to the practice area and measure the electromagnetic waves.
Okay, we're here at Levi's Stadium.
So, towards the end of last year, he drives up to the substation, parks nearby, and he starts measuring.
So this is the closest I could get.
But even right here, I'm reading almost 9 milligoths.
definitely a concern.
And this is what he told us.
Well, first I started measuring,
just to kind of see what I was dealing with.
And I started finding elevated fields all over the place.
The reading I had was between 8.5 and 9 milagouse.
So the first thing I'm thinking when I see that is
that's way higher than I would want to be exposed to.
And so a milligouse as a unit of measurement,
that is a lot?
Normally, if you're just on your couch, say,
you'd be exposed to about one or two milligouse.
So eight or nine, it is higher than normal.
And at one point, he actually measures 50 milligouse
coming off what's called a feeder line,
which he thinks is running underground
from the substation under the stadium.
Now, I'm just a guy who's learning about what a milagouse is
in the last two minutes.
Right.
But 50 feels.
feels like a fuck ton to use another unit of measurement.
Peter reckons he's onto something here.
He thinks kind of this is evidence now
that the 49ers are getting pummeled
with these dangerous electromagnetic waves.
This is a piece in the puzzle here.
Now this is where I got to say
that the owner of the San Francisco 49ers, Jed York,
has been asked about the substation
And his go-to response is, this thing has been around for years, right?
I mean, this is something that predates this certain run of injuries that we've been describing.
Right.
I mean, this has been around since the 80s, when they were, like, winning titles very helpfully.
It hasn't been around since the 80s.
Another fact check there, even though it has been widely reported that.
We fact-checked it.
But it has been around for decades.
I think it was there since 2005.
So, Peter had thought about this.
and he read that the substation actually expanded in 2014.
And this has been reported widely.
As we know, there were renovations done on this substation in 2014.
It's officially called the mission substation.
It's in the New York Times, ESPN, CBS.
And so now Peter figures, you know,
butter-bing, butter-boom, substation expands.
2014 starts emitting more of these electromagnetic waves.
and that is around the time when people are talking about
that the 49ers start getting more and more injured, right?
Yes.
So Peter writes all of this in a series of substacks,
citing scientific evidence to back up his claim
and noting that since 2014,
the 49ers have been decimated by injuries.
I'll quote, Peter Substack here,
suffering, quote,
far more full Achilles and Patelotendent ruptures
than league average, end quote.
he says, along with, you know, nasty hamstring and calf tears,
he wrote these kinds of injuries, quote,
turned into an annual right of passage, end quote, for the 49ers.
Yeah, this was sort of their identity.
And then in January this year, Peter Press is published,
along with posting it on X.
And then he told me, funnily enough,
he actually doesn't think that much about the post.
He celebrates this Irish tradition called Little Christmas on January the 6th,
hangs out with his kids.
I just like that there's another tradition
on January 6th that is
not the one I think of at this point.
Shout out to Little Christmas.
The rebrand. We could take the rebrand back.
Exactly. But eventually,
Peter does check to see how his post is doing.
And I open up my computer and it's at 500,000 views
and I'm just shocked.
This post will eventually reach
more than 22 million views.
It just completely blows up.
Yes.
You've got Joe Rogan talking about it.
So that's where the electrical substation is, and there's the field.
I mean, cut the shit.
Whoa.
That can't be good.
So it's literally radiating onto them.
That can't be good.
You've got players reaching out to Peter himself, the NFL responding.
What I would tell you, Eric, because it deals with allegedly, you know, the health and safety of our players,
I think you have to look into everything.
The 49ers hiring the independent scientist, and you and me, Pablo, spending months of
of our lives trying to get to the bottom of this.
And Peter told us that, actually, what is driving him?
Our studies that he reckons are connecting power lines and substations to our health more generally,
including things like childhood leukemia.
Did I get into this field because I was concerned about athletes snapping their tendons?
Not really.
I'm more concerned about oxidative stress,
mitochondrial damage in general contributing to just a sea of chronic diseases across the population,
across the world.
Yeah, and I got to say, I appreciate Peter's concern.
My issue is just that he's, again, not an insult, he's just not a scientist.
Yeah.
At all.
So I think it's time to talk to a scientist.
So we spoke to a handful, probably more researchers, but one guy,
I want to introduce you to now is Dr Ken Carapini's.
Okay, so my name is Ken Carapides.
I'm the Assistant Director of Health Impact Assessment
at the Australian Radiation Protection Nuclear Safety Agency
and I'm also the vice chair of the International Commission
on non-ionising radiation protection.
He has never received money from industry.
This is something that people who are sceptical of electrical,
of electromagnetic waves, worry about big tech,
getting their pores into the research.
Ken really knows his stuff here.
He has spent more than 20 years researching,
reading the studies on whether the kinds of electromagnetic waves
being emitted from substations, power lines,
also the Wi-Fi in your home,
whether it is dangerous and you need to worry about it.
One of the first things he said is it is really important
to know whether these waves are dangerous or not,
because they're obviously not.
just near the 49ers practice area.
They're all around us because we're surrounded by electrical things.
I mean, in this room right now, we're so, you know, we've got, so it's ubiquitous.
You know, you're never not exposed to.
So right now, you, Pablo, you've got electrical stuff all around you, your laptop, the microphone,
everything.
So these kinds of electromagnetic waves that are coming off the substation, they're really long,
they're called extremely low-frequency electromagnetic waves,
and they are also getting emitted from the electrical equipment around you and in your home.
So the lights, the computer, the microphone, your TV, electric blankets,
everything is emitting these electromagnetic waves.
So as somebody who is sleeping on top of his cell phone, most nights,
it sticks to me, and I have to peel it off when I wake up.
the morning. Is this an issue? Am I in danger? Okay. So that is the question. I ask Ken,
what happens when these waves waft through our body? They are creating little currents
inside our body. Everywhere, little currents. Correct, little currents, but they're really low,
so you don't actually fill them. So electromagnetic fields tickle ions in our body,
and this actually makes little currents. But like Ken said, right,
now, you and I, we can't feel them, but...
If the current is high enough, you get electrostimulation.
What does it feel? Have you had it done?
No, because the power level, it's like getting electrocuted, basically.
So, you know, if you touch a live...
I mean, it hasn't happened to me.
I don't know if it's happened to you.
No, but I've seen Jurassic Park, so I know.
So in other words, like, the Jurassic Park test is, if I touch this thing and it's not
shocking me, am I okay?
Like, what does it mean given that Peter with his gouse meter was recording, you know,
a 50-millimeter rating.
So I asked him, what about the 50-millimeters?
Is that high?
How worried should we be here?
So 50-migaus is higher than what's normally encountered.
However, it is still below much, much lower than the limit.
So the limit for the general public is 2,000 miligalus.
Whoa, oh, okay.
And what happens at 2000?
Well, nothing happens at 2,000 million hours.
Right.
because the safety factors built within the limer.
So this is an enormous development for my numeracy around the milligouse.
You were worried that 50 milligouse was a shi-ton.
For narrative tension purposes, I didn't reveal that actually 50 milagouse is not particularly high.
Thank you for not calling me out for being an idiot.
No, I mean, well...
That's so many more milligous before we have to worry.
Yes.
One thing that we know can happen when you put the power up,
when you crank it up too high of these kinds of electromagnetic waves
is that they can stimulate cells in your retina
and you can get kind of stars in your eyes.
You know, when you rub your eyes and you see those little white thingies?
So from experiments, that can happen when people are exposed to more than 50,000 milligouse.
Okay, significantly more.
That's a thousand times more than the highest point
that Peter measured.
Then you want to go even higher.
You've got nerve stimulation
where you might feel a bit tingly or twitchy.
That's happening at hundreds of thousands of millie cows.
And so this now brings us to, again,
the 49th general manager, John Lynch,
who, when he announced this independent study
by an independent scientist
that has very few details publicly otherwise,
he did say,
you know, we're safe.
Like we're in a safe place of work.
the levels are, I think I read in there 400 times less than unsafe zones.
And I guess, Wendy, if you're taking that a face value,
he's saying that whatever your threshold is for safe,
were 400 times below whatever that would be.
Yeah, exactly.
And so to this, Peter would say,
I don't like these levels because they're not including perhaps more subtle effects
like oxidative stress.
The erosion of our tendon and ligaments
with the collagen stuff from before.
That's Peter's argument.
And so then my question became,
and I think it's a good question,
is so what do we know about
whether electromagnetic waves
at this power level,
this thereabouts,
can actually cause oxidative stress?
And you can go online right now
and find scores of stress.
studies showing that electromagnetic waves at this basic power level, they do increase oxidative
stress. These are the kinds of studies that Peter is pointing to and that he's worried about.
The issue is they are not studies in people. Wait a minute. What are we studying, Wendy?
We are studying cells, a cell in a dish. What these studies do is they take a cell, a blood cell,
maybe sperm, and then they will expose it to electromagnetic waves
and then measure for markers of oxidative stress
and sometimes they say, yes, look, we found it.
Right.
But the thing is, you can also find studies
that find the exact opposite.
They'll do basically the same thing
and find that now it lowers oxidative stress.
These electromagnetic waves are helpful.
So you're saying that this is bad, but it's also good?
What I'm saying is you need to be.
be careful when you're looking at science and that you don't cherry-pick your data. So what you find
is that people who really are worried about electromagnetic waves, they will dismiss the studies
that show, look, it's actually helpful. They collect the studies that show that it's harmful and say,
look, get all this data. But the broader point is that these are studies in cells. And cells
are not people. Even you take a study in rats, and if we think about, say,
you know, drug development.
We're constantly curing cancer in rats.
And then you take that whatever chemical they're testing
and you try it out in humans.
And the chance it's going to work is so, so low.
What I'm finding out is that the lab rat
has it pretty good.
The lab rat has it so bad.
Long maligned, the lab rat has it better than us people.
But I think the broader point is you really,
really need to look at studies in people. If you want to make a claim like electromagnetic waves
are harming collagen, increasing the risk of injuries, increasing oxidative stress, the cell studies,
the animal studies, they can help you out, but you need the studies in people. I did ask Peter,
what studies do you have in people that really prove your point that these waves cause oxidative
stress. And he sent us a couple of papers, and I want to go through them a little deeply here.
So you want to grade some papers right now?
No, I want to have some fun with science, Pablo.
So, all right, study one comes from India. And basically what the researchers did is they got
people that worked in a substation. They were doing maintenance or installing power lines.
Then they took some blood samples from them, measured markers of oxidative stress,
inside their blood, and found that workers installing the power lines had higher levels of
oxidative stress than a group of admin workers.
Which follows Peter's theory.
Follows Peter's theory, yes.
People are being dosed with EMF waves and look what's happening.
Right, okay, but then if you actually read the guts of the paper, you go deeper than that, you know,
abstract.
Yeah, we're getting out the all 22 feet.
We're examining all the angles of the play here.
You'll notice the researchers didn't actually measure how much of these electromagnetic waves
anyone in this study was exposed to.
And Ken said this is a problem because instead what they did is they just based it on someone's
job title and made an assumption.
Sometimes somebody might have job title as maintenance,
but they might be the boss, just work in the office, you know.
Right, yes.
So again, job titles are people use it as a de facto, as a de facto.
is a de facto measure of exposure.
Yeah.
But studies have shown that they're really poor.
So...
Ken said that's a bad idea
because we know from other research
that you might have a job title
that's like power line installer,
but you're actually a manager
and you sit in an office all day.
Or you might look like your admin staff,
but actually you are on site all day.
Yeah, this is like how a podcast producer
is not getting credit for actually being your therapist.
Similar, yes.
And then there are some bigger issues that Ken pointed out.
When you look at all the tables, the numbers don't add up.
Oh, no.
Just silly things like that.
It's a really big red flag.
Yeah, where are these missing people?
Where are all these missing numbers?
So in the abstract, for example, they tell you that there's 142 substation workers that they're studying.
Then you start looking at the tables.
They've only got blood samples for 130 workers.
So you're like, where's the other 12?
Maybe you couldn't get blood samples from them, sure.
But then you look at the actual things they were measuring in the blood,
the so-called markers of oxidative stress.
And now all of a sudden you're losing more samples.
There was in one of them there was only 117 workers.
And without explanation in the paper of where are the missing numbers,
It's tasting poisonous.
What you're saying is that it is conspicuous when a nice abstract summarizes neatly a phenomenon,
but the numbers don't actually justify those findings.
That's exactly right.
I wouldn't be using this study even as a hypothesis for you.
Okay.
Okay, moving on to the other study.
Please.
So that was the Indian study.
He's shaking your head.
You said you weren't grading papers, and you guys are violently grading papers.
But we're also having fun with science, aren't we?
You are.
Like football, science can be violent and fun.
So, this other paper, this is actually an error that you see in a lot of stuff online.
Super important people understand it.
This paper got power plant workers, measured various markers of oxidative stress again,
but then they went further, and they also gave everyone a test to see how depressed and burnt out they were.
then they compared that data to hospital admin staff
and ultimately reported that the power plant workers
had higher rates of depression and what they called burnout syndrome
and they said this quote may be caused by exposure to magnetic fields
possibly from oxidative stress.
I am but a humble sociology major
but it does feel like correlation and causation not quite the same thing.
Yes, yes.
That's it. That's it. So we basically have no idea from a study like this. If electromagnetic
waves caused the depression and the burnout syndrome had anything to do with these symptoms,
with a study like this where you're just capturing people at one point in time,
it's actually impossible to make a claim like that. But there are things that you can do
statistically to rule out what else might be causing the burnout. You know, are we sure it's the
oxidative stress or perhaps could it be?
It could be that working in a par plant is actually quite, you know, it gives you a burnout.
Yes, it's stressful.
Stressful and you get, you know, quite a stressful job.
Yes.
So, you know.
And that then leads to oxidative stress in your body.
Well, maybe.
Nothing to do with the electromagnetic waves.
Maybe.
Correct.
So both of these studies are examples of they're just rubbish.
Yeah.
What should we do with them?
Not consider them.
Not even.
mom would say you can wipe your ass. Yes, maybe you should do that. I mean, I do like how the big
insight is. Maybe your job just sucks. In this case, the power plant workers were shift workers.
And the admin staff at the hospital weren't. There was so many things I could reach to before I go to
EMF waves. The confounding variables are also just lingering in the air somewhere. Exactly. And meanwhile,
we do have good quality studies where people have looked at power plant workers and substation
workers and looked for various issues with their health, including cardiovascular issues,
which is also related to oxidative stress, by the way, and they're really not finding much.
And when you look at studies in people, let's go to collagen.
What we actually find is that if you use electromagnetic waves in this particular way,
where you pulse them, you can actually boost collagen production,
not harm it.
The complete opposite to what this theory is.
So here's Ken on that.
You've got to remember, when it comes to collagen,
there's actually more studies showing an improvement.
Yeah, yeah, yeah, yeah, that's right.
So there's actually more studies showing a therapeutic effect.
So I ask Ken.
Okay, so knowing what you know,
would you feel comfortable playing football for the 49-9?
I could be ecstatic.
Imagine how much money.
I could make way more money than sitting here talking about the adverse effects of life.
What about your Achilles?
No, I wouldn't be worried.
I talked to Peter about, it's kind of more broadly that I just didn't think the evidence was there,
that substations were.
I mean, you said you'd wipe your ass with the studies.
It's very gentle of you to now say that you approach Peter delicately with ever.
but you wipe your ass with his evidence.
I mean, look, the anus is a delicate tissue of the body.
So let me play a bit of penis response.
I'm not wedded to it being an EMF, honestly.
I'm not.
I would say that to a certain extent I've staked my reputation on the fact that it needs
more study, that it's important to look into it, and that I am not certain of anything.
I'm not...
So I don't want to be serious here for a second because...
it's really important.
I love that you did this,
that you went to him and said,
hey, the evidence is lacking,
and you are the guy that we are all citing here.
So how do you reconcile this?
Yes.
And his answer is we need more study.
And I suppose, like,
it raises the follow-up question of, like,
what about the thing he was caring about the most this whole time?
the thing that he wanted us all to study and care about,
which is the whole, you know, we might be getting cancer from this stuff.
How about that part of it?
Here is where we actually do have good quality studies,
and it's not just garbage.
And maybe we take a break, because this is half time.
You're learning how football works so quickly.
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So he left us with a hell of a cliffhanger.
Are we all getting cancer, I believe, was the gist of what I was left wondering
about what these electromagnetic waves are actually doing to us.
So what should we know?
So all over the internet right now is this claim that the World Health Organization
has classified these electromagnetic waves as possibly carcinogenic.
And this is true.
So over 20 years ago, the International Agency for Research on Cancer,
which is part of the World Health Organization,
did classify these waves as possibly carcinogenic,
and they never reclassified them.
So in fact, we should be worried about this.
Let me just explain everything because I really don't want people to be freaked out.
So this all started in 1979.
When a study came out showing that kids in Colorado
who had died from childhood cancer, especially leukemia,
were more likely to have lived near power lines and substations compared to other kids.
But since then, since this time, 1979, long time ago,
scientists took this very seriously
and started researching it over and over and over.
again all around the world.
And curiously, the link, it does keep popping up.
And not all studies find it, it's important to say, and it's not a strong link.
So it's not like everyone living near a power line is going to get leukemia far, far from it.
So some research suggests that power lines and substations could maybe explain one
to 4% of childhood leukemia is out there.
Another way to think about that number is a German researcher did this rough estimate
saying that in a country like Germany, which has 13 million children at the time of this assessment,
and it said out of those 13 million children, maybe six cases of childhood leukemia
might be attributed to electromagnetic fields.
You have put a podcast host in a tricky position now
because one child, of course, suffering from this is way too many.
That's my political position.
I want that on the record, Your Honor.
Yes.
But at the same time, I'm doing the math of six in 13 million,
and that is a small number.
Researchers don't see a connection between electromagnetic fields
and any other type of cancer, by the way.
not even adult leukemia.
They have looked and they cannot find a link here.
Right.
But let's go back to the 49ers.
So I think one of my favorite kinds of,
what's call it a conspiracy theory online,
is where you have a little bit of truth
and then a whole lot of not truth.
So we've got a seed of doubt here.
but now it's time for our touchdown.
That was so painful.
So smooth.
So thanks.
So smooth.
That segue.
So, all right.
You know how one reason that this caught the Internet's attention
is because of the timing of the substation getting an upgrade
with when the 49ers injuries start ratcheting up, right?
around 2014.
As we know, there were renovations done on this substation in 2014.
It's officially called the Mission Substation.
Right, no, 2014 is the year that we've circled as like the turning point.
Exactly, exactly, exactly.
The timing is very, very important because if the substation didn't get an upgrade in 2014,
then it really doesn't make sense why it could have ticked off these injuries.
Right.
So, like I said, we fact-checked.
everything. And so
senior producer of Science
versus Rose Remler was looking into
did the substation get an upgrade in 2014
as has been reported
ad nauseum. And this took Rose on one hell
of an adventure.
Come on down, Rose.
Hello. Hi, Papa.
Hello. I do like how
this is a truly global operation
you guys have running.
Oh, yeah.
Wendy in Australia, Rose is now sitting next to me.
What was your adventure?
All right.
So widely reported that the substation was expanded in 2014.
Yes.
I first Googled that, right?
I came across this podcast saying exactly this.
They called out the website for a contracting service who built a substation in Santa Clara,
where the 49ers play in 2014.
The mission substation and 60K.
Underground Extension was the largest substation undertaken by Silicon Valley Power.
And I read that note about what they did when they built the substation, and they said that
they put in some of the equipment running under California's Great America.
It was installed along the maintenance road of California's Great America Park, which had to remain
open during construction.
So California's Great America is the amusement park.
It's an amusement park.
I had my senior ditch day there.
I'm from the Bay Area, but that's neither here north.
there, but it's not really that close to Levi's Stadium or the practice field. No, I've never
enjoyed the Panda Express there on a senior ditch day, but it does seem that Google Maps is making
very clear, not close. No, and so I was like, well, then why would the lines go that far south,
to the substation that's right next door? Then I found a presentation by Silicon Valley Power,
that's the utility that owns the substation, and it has a map of all the different substations,
And the substation in question that was expanded.
Did you make this graphic?
No, no, I got this from the PowerPoint presentation.
He looks so disgusted by this graphic.
Look, they're not the Silicon Valley graphic design.
I was going to say, this is a bunch of triangles.
It looks like they just, like, made in like Microsoft Word.
Yeah, but I was so happy to find this because it actually names where all the substations are
because there's substations everywhere, right?
So there's the one right next to Levi Stadium.
It clearly says it's called the NRS.
Mostly it's called the Northern Receiving Station.
But the one that we just read this whole thing about like,
oh, it was this big expansion, da-da-da, the mission substation,
it's a way over there.
So people were saying a substation upgraded in 2014,
but it is a different substation.
It's a different substation.
This admittedly terribly made graphic does make clear
that the thing that apparently has expanded,
which is called Mission Substation,
is off in the bottom left-hand corner
and not at all the substation
or either of the substations
near Levi's Stadium.
It's not the same one.
How far away is that?
It's like a mile away,
which is really far
in the world of electromagnetic radiation
because that field drops off
extremely quickly with distance.
The final thing I can tell you,
I did find, and Peter helped me with this,
and by the way, Peter has been very gracious
and, like, you know, also working with this.
And he's like, oh yeah, I guess I did get that wrong
because he wrote some of the stuff with a substact.
That's really encouraging that Peter is like
working with the fact checkers to make sure that, like, yeah, I should admit that I didn't get this right.
And he actually found this graph. It's from a slide presentation about data center use in Silicon Valley from Silicon Valley Power that shows basically the growth of the use of power and electricity in the area.
And you can see it's going up. But what I would look for to explain some change that happened in 2014, I would look for some kind of inflection point in this graph. And I don't see that.
So I think from all of this adventure,
we've learned that all of this reporting
about the substation expanding,
they were talking about the wrong substation.
It's not the one near the 49ers.
And we have to not have a clear moment
where power cranks up at the substation
near the 49ers practice area.
Bam, injuries start plaguing the 49ers.
We do not have that.
And as we kept looking,
into the law around this story. You know, it wasn't the Achilles tendons that were rupturing.
It was the whole story here.
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It's down to blow the way.
And it's time for you to meet Dr. Zachary Binning.
He's an assistant professor of epidemiology and data science at Emory University in Atlanta.
And he has been looking into the injuries of the 49ers.
Are you a 49ers fan?
I am not.
I am a Miami Dolphins fan.
God help me.
So it's been a dry couple of decades, especially relative to the Niners.
So Zach doesn't have pigskin in this game.
He doesn't hold a 40-year grudge from when the day.
dolphins met the 49ers in the Super Bowl in 1985. Don't say I didn't try to care about NFL.
Yeah, thank you for doing research. There's so many more things to be depressed about if you're
a Dolphins fan than losing to the Niners in 85. Right. So Zach is the curator of FTN Fantasy's
NFL injury database. It's this huge spreadsheet. It's been tracking injuries in football
stretching back to 2007. Basically, most football injuries have to get publicly reported, which is
important for betting and fantasy football.
Yes. And so Zach and his team take those public reports and then pop them into a spreadsheet,
including who got injured, their position, the kind of injury, yada, yada, yada.
And so I just asked him, over the years, have the 49ers even had more injuries than other teams?
So if you're just talking about the raw number of injuries, like the number of players getting hurt,
They actually don't.
They're a little bit above average.
Oh.
But they actually don't have the most players, the most injuries happening.
I just like Howard now.
We're now realizing that everything about this story is a paper that needs to be regraded.
It is a mess.
It's bad.
And over the past decade, if you are looking at games lost due to all injuries,
Zach said the Giants lead the way.
San Francisco is second.
Yeah, I got to say, like, as a New Yorker,
this feels like a missed opportunity
for the Giants to also be deeply aggrieved.
Well, I mean, Zach said there's an obvious reason
why no one seems to be crying about the Giants.
Frankly, there have also been a worse team over that time period.
So I think fans don't feel as much pain
when the players on a team that's already kind of struggling
get hurt as they do when the Niners
who have competed for and in Super Bowls
in the last decade suffer these injuries.
So how wrong is the data on the Niners then?
Like, how do you even arrive at that mistaken conclusion?
I mean, I can hear fans saying,
what is she talking about?
Like, we know this, we know the 49ers of the worst.
I've seen stats saying that.
And so we looked around as well.
Yeah.
And we contacted Aaron Schatz,
who's the chief analytics officer at FTN Fantasy.
And he said that when you change the way you analyze the stats
and you adjust them,
so you just focus on the starting players, important players.
You also consider if maybe a player is injured
and they're going to be on the field,
but they're not going to be playing at their best.
If you start sort of adjusting for that sort of,
of stuff. Then the 49ers do look the worst over the last decade, but, and this is critical,
it's not by a lot. I should acknowledge, however, that it is pretty funny and admittedly
quite suspicious that the 49ers, according to the athletic, earlier this year, are, quote,
exploring a possible nearby relocation for their now infamous practice facility. Although the given
reason there is that the Niners are running out of space at their current address, as opposed to
running out of patience for memes about how the substation is looming over the practice field like
the eye of Sauron, which may not be great for attracting free agents. But in fairness to the
substation, I suppose, that stat Aaron Chats was just referring to, adjusted games lost, which
gives more weight to losing starters due to injury. That statistic, it's
self-opens the door to other confounding variables.
Variables like, you know, playing time
and other undeniably human decisions
that put human ligaments in jeopardy.
There could be other, much cleaner explanations,
like, I don't know, culture, coach.
Or both.
For instance, how many practices in a row
49ers head coach Kyle Shanahan
was mandating during training camp in 2025.
The way to build your body to make it through a year
is building that callus.
I really believe in three practices in a row
as we go through camp.
I can't always do it because of scheduling and stuff,
but that's what our goal is.
The more we can practice three days in a row
and fight through soreness and stuff
is the more you build that callus.
But this is yet another human decision
that Kyle Shanahan now says
is becoming a bit more relaxed
because the 49ers are no longer.
longer practicing three days in a row.
Kyle Shanahan is changing his mind.
He's now limiting it to two.
Now, it is worth noting, of course, that the most narratively inconvenient variable of all
in this story is fundamentally sheer randomness.
As Shanahan himself is aware at this point, as well as anybody, given that he survived a now
infamous car accident just last month.
And while that accident in Palo Alto figured even more jokes about the substation's power,
it also raised lingering questions about human error and how lucky Kyle Shanahan is to have survived.
I do think at the backdrop of all of this is the randomness of life.
That is unsatisfying, Randy.
I mean, I find it super satisfying because I think part of the,
the reason that theories like the substation thrive is because it gives you a singular thing to blame.
And it's, it gives you comfort and it gives us this something to focus on.
But the truth is that sometimes shit just happens and injuries just happen.
And, you know, you look at the stats, the 32 teams, 16 of them are going to be at the bottom half.
That's just stats, right?
There is this concept Pablo in psychology called the deep story,
and it's basically the story that everyone believes,
this emotional story that everyone's pulled into,
whether it's true or not.
And so I think the deep story here is that the 49ers are played year after year,
after year with crazy amounts of injuries.
When really, when you look at the stats,
they're not doing great.
I'm not out here saying that, like, this is,
that they're the best in the league, healthiest in the league. Absolutely not. But they are not doing
crazy bad, crazy enough that we need to reach for substations to explain what's going on.
You are as a non-NFL expert getting to explain the NFL in ways that might be cutting to the core of the
psychology of the people who love America's foremost cultural institution. I'm doing my best.
So I think bottom line, we could say,
say the substation, the evidence just isn't there that that is to blame for the injuries the
49ers have had.
This feels comprehensive in a way that a blowout loss tends to feel in this very American game.
And also, I kind of feel dizzy.
So the full NFL experience.
Yeah, we've done our job.
We've hit you over their head with the facts.
This has been Pablo Torre finds out, a Metal Arc Media production.
And I'll talk to you next time.
I hope you like this episode that we made with the team at Pablo Torre finds out.
If you do, share it with someone who's into the NFL, into science, into Taylor Swift,
conspiracy theories about EMF waves, let people know.
And I really do want to hear what you thought about this episode.
So let us know you can find us on Instagram.
TikTok, YouTube. All the links are in the show notes.
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