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29x03 - A m*rder of Crows

Episode transcripts for the TV show, "Nature". Aired: October 10, 1982 – present.*
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Program that consists of documentaries about various animals and ecosystems.

29x03 - A m*rder of Crows

Post by bunniefuu »

Crows are found on every
continent except antarctica.

Wherever humans live,
they are there.

Their world intimately
intertwines with ours,

yet we know
so little about them.

They,on the other hand,
seem fascinated with us.

The most surprising thing
about crows

has been their ability to
recognize and remember

particular people,
and even just particular faces.

They look, they think,
they eye-ball you,

they really seem to be
sizing up the situation.

You walk outside now with
a whole 'NOTHER perspective --

NoT just that you're moving
through an animal's environment,

but that they're watching you

and learning from you
every step of the way.

Crows have
an exceptional ability

to pick a single face
out of a crowd.

But what's truly extraordinary

is what the crows do
with that knowledge...

At the university of washington
in seattle,

a team of masked researchers
fans out to conduct

an ongoing experiment

with an animal that many people
view as a schemer,

a scavenger,
and a dreaded omen of death --

the crow.

This is
a facial recognition test.

The way we go about
studying facial recognition

is to change our face.

The caveman mask
was our initial trial.

We caught seven birds
wearing the caveman mask

and watched their response
to that mask

as we would just walk casually
through a route

that included
where we had caught them.

[ Cawing 1

initially about 30°/o of the birds
we encountered

would scold us.

As we've done this through time,

now virtually every bird
you see on campus

will swoop down when you're
wearing the caveman mask

and give an alarm call.

[ Cawing 1

it was shocking that these birds
had an incredible ability

to focus on
an individual person --

so really to pick us
out of a crowd.

It's a difficult task
even for people to do.

Scientists are just
beginning to understand

how crows recognize
a single human face,

and how they use
that information.

The adult birds
are showing us

that they're very intelligent.

In essence, they've learned
a harmful face

with one trial exposure.

One catch, and they remember
that face on campus

for over two years.

What was shocking

wasn't just that the crows
could pick the scientists

out of a crowd, but that they
told each other about them.

[ Cawing 1

soon everyone in the group --

known as
"a m*rder of crows" --

knows who their friends
and their enemies are.

The crows who gather near
the small farming community

of CHATHAM, canada,
know that there are

far more enemies here

than friends.

Each fall, hundreds of thousands
of migrating crows

join local flocks to create one
of the biggest roost sites

in the world.

Crows liked what humans did
to north america --

they liked it a lot.

They like what we like --
we like open spaces with trees,

and that's what they like. So we cut
down all the forests in the east,

made them opened up, still a few
trees for nesting and all that,

they like that.

And now they're everywhere.

Crows are always watching,

learning, and remembering. They're
especially attentive on garbage day.

Crows memorize
the garbage truck routes,

learning when the best time is

to scavenge
some succulent treats.

[ Cawing 1

So we're omnivores
and we're social,

and crows are omnivores.

And sometimes we don't like
the animals

that have the same
qualities as us.

We don't like crows,

because crows are opportunistic.

And -- so are humans, though!

Crows are invasive --

crows will do
all sorts of things

that humans do that we are NoT
particularly proud of doing,

like feeding on garbage.

That long cultural

interaction we've had with crows
in a negative way

has seeped into
our modern culture.

Whenever something bad is
going to happen on a movie,

you hear a crow call
in the distance.

[ Cawing 1

The mayor of CHATHAM
tried to rid the city

of their crow infestation

by introducing
a sh**ting competition.

But as soon as
one crow was shot,

the word went out,

and they all learned
just how high to fly

to stay out of the range
of the pellets.

That's when the city turned to
ULRICH WATERMANN

and his hawk, harriet, to try to
drive the crows out of town.

The crows,
being highly intelligent,

they can figure out
a human being,

they can figure out a raptor.

But that the two work together,
that's too much for them.

They cannot comprehend
that their two worst enemies

are working together --
that freaks them out.

Oh yeah, she wants to go.

Let another one so!
[ Laughing 1

the reason that
I let that crow go

is she was NoT much harmed,

and is in good shape
to join her friends there,

and she will tell the story of
what just happened to her.

See them all,
they all are coming up now

and she is joining them now

and telling them
the horrible story.

Crows learn from
each OTHER'S misfortunes.

When one is k*lled
in a farmer's field,

it's NoT uncommon for them to
change entire migratory patterns

so that no crows
fly over that field

for as long as two years.

There is no doubt about it --
crows talk.

Professor john Marzluff
knows that crows talk.

And that is at the heart of
his groundbreaking new study.

See that nest
up there?

He wants to find out if
crows have the ability

to pass information on,

NoT just from one adult
to another,

but from one generation
to the next.

To study this, he's going to
follow several crows

from hatching
through their first year

to see how they learn.

It won't be easy.

Less than 50°/o of crows
survive their first year.

Right now all we know

is that there's eggs up there,
and it's really a gamble

whether those eggs are going to
turn into young birds

that we are then able to follow
when they leave the nest

and encounter new things
in their environment.

Before the eggs were laid,

Marzluff and his team
caught and banded

adult crows in five different
test locations around seattle.

They wore a different mask
at each location.

Now a handful of crows
at each of those test sites,

including our crow parents,
has learned that

one specific mask means danger.

What Marzluff wants to find out

is whether the parents will
pass on their knowledge

of the dangerous face
to their young,

and will the young
NoT just learn to

recognize this face,

but remember
and use this information

months from now, when their
parents aren't around?

Surprisingly, this kind of
learning in the wild

has only been proven
with primates.

We're trying to see
the fledglings in this nest.

When the team stands
in the park

without their masks on,

the crows' response
appears to be quite normal.

So those are just regular caws

communicating certainly
some excitement,

but NoT
a scolding vocalization.

Now, as part of the experiment,

he puts on the mask, and it is
a whole different story.

[ Crow scolding 1

We're in a critical part

of the study right now

because the young
are just at the point

where they're
learning everything

that they're going to need
to survive

for this next year or two. And we want
them to learn as part of this process

that some people are bad --

in particular, our face with
the mask on it is bad.

[ Cawing 1

we have to sl-low that a trait
is observed,

NoT directly experienced
by an individual,

which is what we're doing
with these young birds

as they see their parents
scold the mask.

Then we have to see if they have

learned from their parent
to respond,

and do they take that learning
and that memory with them

as they establish
in a new place?

That's really
a hallmark of intelligence

that is seen in
very, very few animals.

It's the sort of thing that is
required for culture to evolve.

If Marzluff
is able to show that

each generation of crows
is capable of

building on an earlier
generation's knowledge,

then he will prove

that crows possess a kind of
evolutionary advantage shared by

only a handful of
the world's smartest creatures.

HOW'D you score
that one, dave?

They stayed back
there swarming on me

while we were even waiting.

That was...

It was like, yeah,
that was beautiful.

While Marzluff and his
team are watching the crows,

someone else is watching them --

the u.S. Department of defense
is funding their study

because they think
the crow's ability

to recognize faces
and point out the bad guys

might have applications
beyond the bird world.

For MILLENNIA, humans have
looked upon crows

as highly intelligent creatures,
the wise guy, the trickster.

Only recently have crows become

a focus of major scientific
scrutiny around the world.

Scientists want to know
why crows,

who don't have the biggest
of all the bird brains,

are proving to be the most
intelligent of all the birds.

Crows do NoT have the biggest
brains of all birds, parrots do.

But it's crows that are
by far the top among birds.

Whether it's the american crow,
the european species,

the north american species.

Every continent of the world
has its crow,

f? H ' 'I'll! ' 7-" ' v]

That's at the top
of the rankings

for that particular area
of the world.

The idea that
crow intelligence

was worth studying
came from a tiny french island


off the coast of new ZEALAND,

that's home to arguably

the smartest crow species
in the world.

In 1993, scientists from
the university of auckland

discovered that
new CALEDONIAN crows

had an ability
long thought to be

the domain of humans
and great apes --

the ability to use tools.

It's a bit of puzzle --

why is it that it really is

just this one species of
new CALEDONIAN crow,

stuck on a relatively small
island in the pacific,

that uses these
really complex tools?

Russell gray
is part of the team

that made that first
astonishing discovery,

and he continues to return
to the island

to study these remarkable birds.

Alex taylor has spent
the last two years on the island

living with the crows
and conducting experiments.

In terms of biodiversity,

it's on the kind of top ten
hot spots of the world.

There's just so much stuff here
that doesn't live anywhere else.

And especially with
the insects and plants,

there's tons that's
NoT even been documented.

So it's kind of
a really special place.

What's truly remarkable

is that new CALEDONIAN crows
don't just use tools,

they make them, as well.

It was really amazing to see

that they'd go through
this long,

complex sequences of actions.

It wasn't just one step,

like, rip off a stick,
and it wasn't even two steps.

It was breaking off
at a difficult place

the branch below a fork,
trimming off the side branches,

and then crafting away
at the base of the fork

to get a really functional
hook tool.

And that was really amazing
to see an animal,

knowing there's some food there,

putting all this effort
into getting its tool

just right for the job.

There's really
three species that make tools --

elephants, chimpanzees,
and new CALEDONIAN crows.

So just three out of, like,
you know,

six million or whatever
there is on the planet.

People went wild
when jane goodall found

that chimps could actually
use tools at all,

and the chimpanzees have never
been found to use hooks

in any kind of way,
so to find a crow species

that's using tool use
and making tools

in a much more sophisticated way
than the chimps,

really, I think
it hit everyone's radars.

Sometimes you see
really complex things,

but there's some
simple trick to it,

some lower level behavior
that underlies it.

Well, any behavior you see
like that in the wild

makes you think,
it makes you think,

"I really need to do
an experiment."

First we put the meat
into the hole,

then we put the long stick
in the tool box,

right at the back,
out of reach of the crow,

and we put a short tool

in front of the box.

It's one thing
to use a tool to get food,

but to use a tool
to get another tool

to get food requires much more
complex cognitive powers.

This "meta tool use,"
as it's called, is considered

to be crucial
in the evolution of humans.

Well, the thing that sparked

the technical evolution
in humans

was when we started using rocks
NoT to crack nuts or bones

or other bits of food,

but used them to crack
other rocks.

So it's really interesting
to find that

a crow species can actually do
this meta tool use,

because then we start having
some kind of idea

of the kind of
cognitive abilities

that, you know, our early
ancestors might have had.

Just how smart are
these crows?

In an experiment that has
never been tried before,

this crow will be challenged

to push its abilities
to the next level.

We're looking to see if the crow
can act out a three-step plan,

think, like, three chess moves
into the future,

and pull up the string
to get the short tool,

take the short tool

to get the long tool,

and then take the long tool
to get the food.

This should be really --
I'm really fascinated by this.

I really, I really want to see
if they're able to do it

because, I hope they can,
but they may just,

it may just be too --
be, like, too long a distance

between their first action
with the string

and the time they're getting
THEFOOD,

so they're going to kind of
forget what they're doing

once they're up
and string pulling,

so, yeah, I'm really curious to
see how this is going to go.

This is the first time

this experiment
has ever been attempted,

and our cameras are there
to record what happens.

The crows have done
amazingly well,

really surprisingly well.

We didn't expect them to be this
good at these kind of problems.

They've performed
at the highest levels

with tasks requiring
technical intelligence

out of pretty much any animal
on the planet.

Crows are very intelligent
for animals.

Their brain size
relative to their body size

is of the same caliber
as many primates.

So it really is appropriate
to think of these animals

as feathered apes.

Back in seattle,
john MARZLUFF'S test crows,

who hatched two weeks ago,
are growing up fast.

Marzluff checks the nests daily.

One nest catches his eye

because it's home to a baby crow
unlike all the other nestlings.

With a distinct band of white
on her wings,

she's immediately given the name
"white wing."

Their ever-attentive parents
are kept busy feeding them,

but they're NoT the only ones...

Some pairs of crows have what
we call helpers at the nest.

Those might be a young male
or perhaps a female

that remains in
the natal territory

for a year or two,
and they help their siblings.

Having so many family members

providing food and protection

allows the baby birds
to concentrate on growing

and learning --
and this, scientists believe,

leads to an acceleration

in brain development.

Crows have
very interesting social systems,

and it's actually probably more
like western human civilization

than any other animal
on the planet.

There are no primates that have
what we have

in western civilization,

which is essentially
a mated pair, right?

Monogamous male and female,
more or less,

with their kids --

offspring from a bunch of years

and extended families,
where you know your relatives.

The basic social unit
is the family.

The whole family spends hours

standing guard
in nearby trees

and keeping an eye out

for predators
who might want to harm

their defenseless young.

At three weeks old,
the baby crows

are almost ready
to leave their nests.

Kind of
a tight spot here!

Now it's the time
in the experiment

to put leg bands
and radio tags on them.

The team is ready on the ground
to catch any crows

who might decide to
make a break for it.

All right, dave,
get ready!

O kay.

Get ready, heather!

There he goes,
dave, right at you!

We got him!

I'm coming down.

These guys are so calm.

Probably the best way

to understand
the development of intelligence

is to follow a young bird

as it's gathering
its intelligence.

How was your climb, john?

Either the trees
are getting taller

or I'm getting older,

or a little of both...

Really without a radio tag
where you can reliably,

every day,
find that individual,

see what it's doing, compare to
what it did yesterday,

understand its experiences
for accumulating life --

without that,
you really can't understand

its development of cognition.

They band eight birds
from five different nests.

There he goes!

There, you got him,
good job.

That one's got the white wings,
that's awesome.

Oh, wow!

White wing,
welcome to science!

All right, we need to get these
kids back to their family.

These young birds
are about to experience

a lot of new things

in a relatively short
period of time.

Crows have shown a great ability
to adapt to change

in some unusual ways.

[ Cawing 1

as tokyo has grown into
the world's largest city,

humans and crows

are thrust
closer and closer together.

It's NoT been an easy
accommodation -- for humans.

Crows and humans
are at w*r with one another.

The crows' resourcefulness
comes from their intelligence.

Their adaptability
is their strength.

A japanese species of
crow known as jungle crows

is one of nature's best

construction workers.

Inventive scavengers,

these jungle crows are
constantly on the lookout

for new building materials
for their nests.

In japan, where laundry is done
almost daily,

it's a common sight
to find clothes

drying outdoors
on metal hangers.

For crows,
this 1s an opportunity

far too tempting to pass up.

For crows,

th ese are ideal thickness
for nesting material.

This is too thin
for their beaks.

This is too thick.

This is the perfect thickness.

It is exactly the thickness
of a wire hanger.

Jungle crows
shape their nests

to fit the female's body --

the crow manipulates the hangers
to create her own

made-to-measure nest.

Using hangers

as nesting material might be

a clever adaptation to life
in an urban jungle,

but when the crows opt to locate

their nests in some place
other than a tree,

it can lead to
shocking consequences.

Nun.

Have stopped high-speed trains
in their tracks,

and caused blackouts
in entire neighborhoods.

So the japanese have come up
with their own clever response.

Preventing power interruptions
is the patrol's first priority.

Number one.

The crow patrol

of the kyushu
electric power company

fans out with a single mission,

to find and destroy the homes of
destructive squatters.

They outsmart us humans.

We remove their nests
as we find them,

but they see this
and circle above,

waiting to build a new one.

It's tough to outwit crows.

When we work hard to develop

a strategy against them,

crows develop counter-strategies
to foil it.

All we can do
is to look for new methods

based on our experiences,

apply them, and deal with
the outcomes.

That's the only way
we can manage.

I think the crows
are as smart as we are,

so we feel challenged,

we think we have to
fight against them.

We are competing with the crows,

th ese smart birds,

as our intellectual equals
in this fight.

NoT long after
Marzluff and his team

have returned the newly banded
test babies to their nest,

they're ready to head out
on their own.

Young crows don't leave the nest
because they know how to fly,

they leave because
it's too dangerous to stay.

Life on the ground

is only marginally safer.

[ Cawing 1

the most important lesson
a young crow learns

is when to move
and when to stay still.

This parent's verbal signals

could mean the difference
between life and death.

[ Cawing 1

crows have
different warning calls --

one for cats,
and one for hawks,

and another for humans.

Scientists have identified
over 250 distinct crow calls.

In addition,

each crow has
an individual voice

with at least
two different dialects.

One loud version
for the general crow community,

and a separate quiet dialect
for talk just within the family.

These types of
sophisticated language skills

are found only among
the most intelligent of species.

White wing and her brother have
managed to survive their first month.

They might look fully grown,

but they're at the equivalent
stage of a toddler.

Their blue eyes
have yet to turn black,

and their beaks have
the telltale red skin

of a young crow.

They're at the very beginning of

learning what it takes
to be a crow.

Nobody's really studied
the acquisition

or the learning process

at this initial stage
out of the nest,

but it's got to be phenomenal.

They're encountering all sorts
of things at that time --

new foods, new dangers.

They're learning all about
their world

in a very short,
hectic time.

When they are NoT
very coordinated,

so they're also learning
how to hold themselves

and move through this
three-dimensional world.

Even once white wing


she continues to beg and rely on
her family for food.

Crows can spend up to five years

with their parents --

the longest natal period
amongst bird species.

Like humans,
the proper nurturing

and education of their young
takes time

and gives youngsters more time
to observe and learn.

This luxury of time is a huge
contributing factor

to a crow's
cognitive development.

The family provides for
almost every need --

food, grooming,
and perhaps even affection.

By the time white wing
is three months old,

she's starting to
really test her wings.

And yet she still clings to
her mother's side.

Crows seem to need to be
close to each other,

especially their parents.

By the time white wing
is four months old

she's starting to find food
on her own.

She, like all crows,

quickly develops an appetite for
a wide variety of foods.

And this kind of diverse diet

has a direct impact
on brain development.

A lifestyle
that's more complicated

because you're eating
a wider diversity of foods

is something that explains
part of

the intelligence of
some primates,

and also part of
the intelligence of some birds,

so it's the same principle,

the fact that
you're an omnivore,

that seems to be pushing
the brain towards having

bigger areas to cope with
the extra amount of information.

If an animal only eats fruit,

then it only has to
learn about one food group.

Crows eat
fruits, vegetables, and meat,

so they have to be able to identify and
learn how to work with all th ese foods.

Walnuts, for example,
are a bit of a challenge,

but crows have figured out
NoT just how to

get the husk off them,

th EY'VE mastered the art of
how to crack a tough nut.

As they fly, they gauge
the weight of each nut

and drop it from
just the right height

to have it crack but NoT shatter

as it hits the pavement.

Then they follow the nut down
to make sure no one steals it.

They've even refined this
remarkable talent further --

they make sure that
the walnuts hit the road

just when the traffic signals
turn red,

eliminating the risk

that either they,
or their walnuts,

fall victim to
the passing traffic.

White wing is starting to master

some of the skills of
being an omnivore.

Clearly, it's a big
learning curve.

Our test crow's worlds
are expanding.

White wing is leaving
the safety of her parents

to go off
and play with others.

Like a teenager, she is eager
to seek adventure with friends

but reassured that,
come evening,

she can return to
the safety of family.

Social animals
are typically

some of the most intelligent
animals, and it makes sense --

being social has a lot of
demands on you

that require your ability
to learn and remember things.

You have to
learn and remember

the relation of the other
to yourself,

plus it would be very good
if you also learn and remember

or even infer the relations
among others,

that exist among others.

So the more the group
is structured by

different types of
relationships,

the more brainpower you need

to calculate all those different
types of interactions.

Scientists at
the konrad lorenz institute

in the austrian alps

have for more than
half a century

studied the social behavior
of a variety of birds.

Now they're turning
their attention to crows.

They're so destructive birds.
I hate you.

Anna BRAUN is working
on an experiment

to test crows'
reasoning abilities.

This kind of test has been used
on children, apes, and dogs.

Th ese are the first trials
to be conducted on crows.

This is a touch screen,

which we are just starting to
work with the carrion crows,

and here you see
a two choice procedure

in which the birds get
the option between

two different icons --
one is positively rewarded,

and one negatively rewarded.

Th e wash bucket?

They learn through experience,
they just peck on it,

and on one they get food,
and on the other they don't,

they get a red screen.

So this is the right one
in this case...

No, that's the wrong one.

And then
a picture combination

appears on the screen

with an image the crow has
never seen before.

It now has to infer which image
will bring the reward.

When this task
was presented to children,

they mastered it
after just a few tries.

Dogs took as many as 7O attempts
to solve the puzzle.

Crows surprisingly figured out
this experiment

almost as quickly as children.

But they already come very far,

and that's the big surprise
for all of us.

They come from a behavioral
point in the cognitive tasks,

they come on the level that is
reached by some ape species,

Thomas
BUGNYAR has previously worked with apes.

His current interest in crows

is focused on something
psychologists call

"theory of mind,"

a creature's ability to
recognize that other creatures

might have differing ideas
from their own.

Theory of mind is a huge step
of NoT only thinking about yourself,

what you yourself know,
what you yourself feel,

what you yourself experience,

but also just to extrapolate

and think about others
as being their own creatures

with their own kind of
mental life.

Crows clearly demonstrate

this kind of agile thinking when
it comes to storing their food.

First, they hide it.

Scientists call this
food caching.

When they cache,

they are on the look out
for any clues

that another crow

might be spying on them.

Over there,
he just did a food cache,

very close to the others,

but then he recovered it again

and moved up the hill,
and now he's caching again.

He left the cache site,

and now he is sitting
over there,

as proud as he could be,

watching, paying attention
to what's going to happen,

if the birds will approach.

If they suspect
they've been seen,

crows will move their cache,

defend it, or they may even
fake cache --

keep food in their pouch
and ONLYPRETENDTO bury it.

These are all highly complex

cognitive behaviors.

So a kind of cognitive
arms race

is starting between those that
try to prevent pilfering

and prevent the others
from watching,

and those that have to watch
for pilfering.

And we are talking now NoT only
about behaviors,

but we are talking also about
the mental state.

At five months,

white wing is reaching
the end of her adolescence.

She appears to have
an understanding of caching,

and she's venturing further
and further from home

and testing her wings.

One behavior that intelligent
animals appear to all share

is play.

Play allows the mind to learn
unexpected things,

and young crows love to play.

These flights of fancy

are more than
just fun seeking, though.

White wing and her pals
are building up strength

with these cannonball rolls,

and these loop-de-loops
are the perfect way

to evade a hawk in hot pursuit.

They also provide a pretty good
way to IM press a mate.

Attracting a mate is perhaps

the most important event
in white wing's life,

because crows mate for life --
a life that might last

as long as 2O years.

It looks as though white wing
has found herself

a promising candidate.

Marzluff is having trouble
finding one of his young crows

at another of the test sites.

[ Static 1

well, we're
getting closer.

So it's still NoT that close,
I got the gain up fairly high.

Yeah, this doesn't
look good to me.

Like the sort of place somebody
would come to eat somebody.

Oh, there's the culprit.

Cooper's hawk.
Cooper's hawk?

Laughing, there it is,
right there.

Yeah, it could be eating
that crow right now.

Hope it chokes on it.

With this young
test crow dead,

only three crows remain
in the study.

He knew from the start

it wasn't going to be easy to
follow young crows for a year.

And it's NoT just the young
who perish.

One of the parents was found
shot NoT far from the nest.

Death is NoT insignificant
in the crow world.

People have witnessed
a mysterious scene

that they can only describe
as a crow funeral,

where crows gather together
en MASSE

to mark the site where

one of their own has died. They
sit silently for a few minutes,

and then they take off
without a sound.

"Eerie" is how
it has been described.

Animals seem to feel pain. Social
animals seem to feel social pain,

they seem to grieve for a while
when their partners die.

And that's NoT surprising,
you know,

that's evolutionarily
the same tools.

The same evolutionary tools

are working for people
as it is for animals.

Few crows make it
out of adolescence,

and unfortunately, that was
the case for white wing.

When she was 6 months old, she was
hit by a car NoT far from home.

With white wing dead,

there's only one crow left
in MARZLUFF'S experiment.

The success or failure
of the experiment

now hinges on a single crow.

But first
he has to find his subject,

“tn m? '.1! F. I.

This bird is extremely
difficult to find.

It's in an area

that has lots of places

it can hide from
a ground-walking person.

If we could fly, it'd be a lot
easier here,

but this bird
is all over the place,

it's expanding its range,

and it moves very quickly
out of our sight

and out of our telemetry range.

Yeah, it's a needle in
a haystack.

VVE have a little better line
on the bird

because we have a radio on it,
but it's an awful lot of luck.

We had a signal
coming out this way.

I don't know,
it could be anywhere in here.

I got nothing here.

Let's try it this way.

Do you guys hear birds at all?

No?

I hear 'em in my dreams now.

Nothing.

These observations are extremely
difficult and rare to get

where we have the bird in
a place where we can see it.

This is the only one of
the seven or eight we had tagged

that was exposed to a mask
with its parents

that is now still alive,

and so what we're hoping to see

is a clear response to us
with that mask,

and we're still hoping this bird
will do what we expect,

but it may NoT.

Oh! It's stronger over here.

Let's just see from this corner
where we get it.

That's exciting?

That's a million-dollar crow.

Why?

Well, we've just put a lot of
effort into finding him.

Oh, okay, well,
I'm glad you found him.

He looks great,
the antenna looks good.

Well, there he just flew now,
he's perched right there.

I think if we walk from here
it'd be pretty good.

The final stage of
MARZLUFF'S experiment begins.

As he walks back and forth
within sight of the last crow,

the subject's reaction
is one of benign indifference.

I'll go back by
with the mask on,

and see if we can see
any difference.

As he was growing up,
this young crow

repeatedly saw his parents
scold researchers

wearing a particular mask. Now
Marzluff puts that same mask on.

He's NoT expecting
the same reaction

he got with the crow's parents.

This is a young bird --
naive and inexperienced,

and trying to learn to cope
on his own.

If he makes any call at all,
it would be significant.

But MARZLUFF'S fear is
he might just fly away.

For a moment, it seems like he
has done just that,

but then the bird

takes another perch higher up,

keeping a close eye on
Marzluff and his mask.

[ Cawing 1

and then, there it is.

To many, just the tentative
scold of one young crow...

[ Cawing 1

but to john Marzluff,
it's a major milestone.

That was PRETl'Y exciting.

You'll never get
a better exposure than that,

I don't think --
that was clean.

To me what it indicates is that

that bird clearly recognized
this face,

which the only way it could have
learned about this face

as being anything unique was
from its parents' behavior.

So I think that shows the first
step of social learning.

There he's really
looking down at me, yeah.

There he's scolding.

This is the first
scientific evidence

that crows are able to
learn, remember,

and put to use information
gained

months earlier
from their parents.

This is a huge
evolutionary advantage

that until now
has only been proven

in a RARIFIED group of

the smartest creatures
on earth.

This year has been
really full of discoveries,

I would say, for us --

we have learned that crows are
able to recognize

and distinguish
many different people

and remember the deeds
we've done to them,

be they good or bad,
for a long period of time.

And now we're learning
something about

how they share information
with their young,

which has been something

that we really haven't
understood at all.

And with this radio-tagged crow
that we've been following,

coming to the roost
here tonight,

that bird has taught us
a tremendous amount,

that, indeed, just hanging out

with your parents,

a young crow soaks up
a lot of information,

and they learn that
very rapidly.

I feel great that this bird
has survived

long enough to join
the full community of crows.

It's NoT surprising that

animals have some of
the same abilities as us,

because we're built from
the same building blocks.

And we as people,
we tend to think that,

"oh, well, only people do this."

Well, we haven't found
anything like that yet.

We may be unique in having
the whole cluster of

things that we can do,
but what we got to find out

is if other animals
out there can do some of that.

And, if we figure out
the way to ask the questions,

we might be surprised at
the responses we get.

[ Crows cawing 1

Crows share a lifestyle with us.

If we can understand the link
between that lifestyle

and the evolution
of intelligence,

and the evolution of brains,

we've advanced in our
understanding of brains,

intelligence in general,
which includes us.

Crows have been WATCHINGUS

for a very, very long time.

Only recently have scientists
begun to watch back,

and what they're finding
is a creature

that's far more complex,
more intelligent,

and more like us, than we could
have ever imagined.

To learn more about
what you've seen

on this "nature" program,
visit pbs.Org.