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Ultraviolet Bird Photography uvbirds.com

rwmj11 hours ago

My favourite blue tit fact is that they are sexually dichromatic under UV light only. The male crown is brighter in UV and females prefer males with brighter crowns. Mere humans can't tell the difference.

Comes from this rather brilliantly titled paper: Blue tits are ultraviolet tits https://pmc.ncbi.nlm.nih.gov/articles/PMC1688906/

rglover9 hours ago

> Comes from this rather brilliantly titled paper: Blue tits are ultraviolet tits https://pmc.ncbi.nlm.nih.gov/articles/PMC1688906/

Made my day. Love it when you can tell they could have titled it something else but decided the joke was technically accurate and worth it.

rao-v7 hours ago

Read this as "Male humans can't tell the difference." and found it comic

mc329 hours ago

They UV will sharpen them up and get them ready for a bit of the old Ultraviolets.

andai10 hours ago

I read a passage in a book growing up, I can't remember what book it was, but it was about how crows are only black to humans, they can see different colors than we can so they're very colorful to each other, covered in all sorts of brilliant colors.

Another fun fact: bees can see utraviolet, and flowers are "designed" for bees, so many of the patterns are invisible to humans, but visible under UV photography:

https://en.wikipedia.org/wiki/UV_coloration_in_flowers

https://www.wildflower.org/magazine/native-plants/a-differen...

blululu10 hours ago

I have heard this too but I have never seen it validated. I was hoping this project might take aim at a crow and confirm/deny this hypothesis.

wahern7 hours ago

https://www.binghamton.edu/news/story/6207/beyond-black-rese...

> It turns out that crows lack UV-reflective patches, and that the sexes really do look the same, plumage-wise. However, the research in Yorzinski’s lab unearthed subtle changes that indicate age: On the sides, back and even under the tail, feathers changed in hue, both in the human visual range and in the UV or violet range as the birds reached the age of 3.

trhway7 hours ago

While seeing the same wavelength range, human tetrachromats (4 types instead of 3 RGB receptor cones in retina) recognize 100M colors instead of the standard 1M.

Tagbert13 hours ago

I'm a little surprised at how little difference there is.

Yes, some of the colors shift due to the false-color addition of the UV channel but there were no new patterns or highlighted areas.

unselect591710 hours ago

Check the budgie.

>The common parakeet or budgie has some interesting UV features. There is a small UV reflective patch on the chin, which appears dark violet to humans. Also, unlike most yellow birds, the yellow feathers on the head of the parakeet strongly absorb ultraviolet light.

nomel14 hours ago

Daytime birds are tetrachromats (as are some reptiles), and have dedicated receptors for UV, so they see each other VERY different than we see them!

https://www.webexhibits.org/causesofcolor/17B.html

mwambua11 hours ago

If you want a nice take on what that would be like for humans - Greg Egan has an interesting short story called “Seventh Sight” about people bio hacking themselves to gain expanded spectral perception. It’s in his Instantiation Anthology.

glaslong9 hours ago

So much of the world passes us by out of sight

Oh to be a mantis shrimp, have 16 different photoreceptors, and see not only into IR and UV, but the polarization of light too!

_doctor_love14 hours ago

Very different vibe but reminds me of The Oatmeal's tribute to the mighty Mantis Shrimp.

https://theoatmeal.com/comics/mantis_shrimp

nomel13 hours ago

A fact related to something in the ocean, cephalopods have photoreceptors that are oriented neatly with nerves in the back, as you would expect. But mammals have the nerves coming out the front, in the way of the path of light! [1]

So, cephalopods have sensors that match a modern camera that's "back illuminated", with metal layer/routing out of the way, and humans have a old type "front" illuminated sensor [2].

[1] Nice image here: https://www.facebook.com/groups/10150112797390640/posts/1017...

[2] https://www.digitalcameraworld.com/features/what-is-a-bsi-se...

schaefer13 hours ago

> reminds me of...

As long as we are already on a tangent about rods, cones, and visual perception: one of my favorite fact is that the occasional genetic mutation that creates color blindness in men sometimes leaves a woman with "tetrachromacy". Four sets of rods and cones which increases color perception from some one-million colors to one-hundred million colors.

_doctor_love13 hours ago

There was a neat story on the San Diego local news some years ago about a woman artist who was a tetrachromat. Fascinating interview. This woman said that the downside of perceiving additional colors is that something like the cereal aisle in a common supermarket could be a total sensory overload. But she of course said also that she appreciated the extra things she could see. :)

kulahan9 hours ago

One fun fact I learned recently.

The cavitation bubbles mantis shrimps create when they strike? We use that same technology to perform direct field manipulation in eye “surgery”. I put it in quotes because I’m not sure if that’s an appropriate word anymore! There is no mechanical slicing! We just place the energy where it needs to be, and thousands of cavitations reshape the eye!

The process is called SMILE.

peterleiser14 hours ago

Wow. That is a worth a glance, folks.

number_man13 hours ago

Be thankful we're not mantis shrimp. Color displays and cameras would be such a pain to make

croisillon11 hours ago

they could at least show cassowaries!

throwaway575212 hours ago

Happy to realize this did not say ultraviolent. A small but confusing Clockwork Orange reading mistake.

NopIdoN4 hours ago

a cassowary can disembowel a droog but a woodpecker is pure weapon

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