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Cone Effect

2023-12-17 16:50:56

First of all, the definition of my "conical effect" is that all media contents are exaggerated, then sent to publications or broadcast to individual advertisements with different perceptions, and "perceived media reality" It is to bring a life. . I believe that this means that we are media, that the media is us, that we are one. If we all see our lives, we are only a bunch of monotonous sentences. In my opinion, we are all media from the moment of birth to the day of death.

Conical Monochrome: This rare form of color vision anomalies is due to the failure of two of three conical photochromes. It has a monochrome red cone, a monochrome green cone, and a monochrome blue cone. People with conical monochromaticity are difficult to distinguish between colors, as the brain needs to compare signals from different types of cones to see color. This comparison is impossible if there is only one type of cone. Blue conical monochrome people can also reduce the condition known as sight, myopia, and uncontrollable ocular movements, nystagmus. Conical monochromaticity is an autosomal recessive inherited disorder

Conical monochrome: This occurs when two of the three conical cell pigments (red, green, blue) do not work. When working with only one type of cone, it is difficult to separate one color from another. If one of your defective cones is blue, your eyesight may not be as sharp, you may be myopia, and you can move uncontrollable eye movements - nystagmus There is a state known as. Rod monochrome: also known as full color blindness, it is the most serious form of color blindness. There is no photochrome available for your conical cells. As a result, the world looks like black, white, and gray. Bright light may hurt your eyes, and you may have uncontrollable eye movements (ocular tremor)

People with "wrong" three color vision are staggered to a certain extent and are called abnormal three colors. For those in such a situation, all three cone types are used to sense bright colors, but one type of cone sensing light is slightly off. Various kinds of effects. Look at the lower two color image - about half of people with abnormal trichromaticity will see the world just like dichroism, but their ability to perceive color improves under good light , Worse in dark places. Usually, perception of those colors may be as bad as those of dichroic.

The cone is responsible for color vision. You need a brighter light than the light bar. There are three types of cones that are most sensitive to long wavelength, medium wavelength, short wavelength light to humans (sensitivity peaks are not actually these colors, but usually they are called red, green, and blue, respectively ). The color seen is the combined effect of stimulation and reaction of these three pyramidal cells. Cones are mainly concentrated in the fovea centralis and its surroundings. There are very few on both sides of the retina. When their image strikes the fovea, the object appears most clearly, as if you are watching the object directly. The cones and rods are connected to nerve fibers of the optic nerve via intermediate cells of the retina. When rods and cones are stimulated by light they are connected by adjacent cells in the retina and send electrical signals to the optic nerve fibers.