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Listen to native speakers pronounce “fovea” in real conversational contexts with synchronized timestamps and subtitles.
Here's the right eye, it's turned in.Its fovea is not looking at the rattle.Its fovea is looking at the block.
Its fovea is not looking at the rattle.
Its fovea is looking at the block.
The 1% is the fovea.
So it yanks the fovea right over there because it might be a leopard.
Having to use the fovea on one eye, and, use some ex-foveal point as the reference.
What's on the fovea.
It puts the foveal image of eye on to the blind spot of the other, a beautiful adaptation.
Your thumbnail spans the size of your fovea on your retina.
Every nerve cell in the fovea sends one fiber.
They're not both in the fovea.
The rattle is falling on the fovea.
Its image is cast on the fovea of one eye.
On the central part of the retina called the fovea.
Much bigger target to aim for than the very tiny fovea.
It's just that they're not both foveal, right?
That is to say there are 158,000 cone cells per square millimeter in your fovea, in the center
But half of that map is devoted to processing from the 1% fovea area and the other half is for the rest.
then , where other images fall relative to the fovea on both eyes, becomes important.
But, because images that fall outside of the fovea are less well resolved, and are seen less well, it's not the same as combining two foveal images.
the reading, fell on the fovea.
So, if one eye is foveating the rattle, and the other eye is foveating the block, the result is you see the rattle and the block in the same place in space.
The other reason is that in your retina, every cone cell in the fovea sends a fiber out to the optic nerve that goes
So let me tell you, the resolution of the human eye at the fovea is approximately 300 dots per inch at arm's length.
The default way that the brain works, is to say that the two foveal images must be in the same spatial location.
Also, as you know perfectly well, you can only see detail on the fovea.
So, is it really, is there something biologically intrinsic about the fovea that lets you know that that's where the two corresponding images should be?
And, then, like I showed you in this picture here, if we use the fovea then as our reference,
This distance, "X", is a number of degrees from the fovea of the left eye that's different
than this distance, "Y", or angular distance "Y" number of degrees from the fovea on the right eye.
And, you might say, " well if you can do that why donít you just put the two images on the fovea?"
So that the image is close that you want to fixate, falls on corresponding retinal locations on the fovea of both eyes.
In our fovea in the center of our retina we process high
But, if the second eye is turned, that image is now falling on a non-foveal point.
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