Pupil

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Image:Iris.eye.225px.jpg

In the eye, the pupil is the opening in the middle of the iris. It appears black because most of the light entering it is absorbed by the tissues inside the eye. In humans and many animals (but few fish), the size of the pupil is controlled by involuntary contraction and dilation of the iris, in order to regulate the intensity of light entering the eye. This is known as the pupillary reflex. In bright light, the human pupil has a diameter of about 1.5 millimeter, in dim light the diameter is enlarged to about 8 millimeter.

The shape of the pupil varies between species. Common shapes are circular or slit-shaped, although more convoluted shapes can be found in aquatic species. The reasons for the variation in shapes are complex; the shape is closely related to the optical characteristics of the lens, the shape and sensitivity of the retina, and the visual requirements of the species.

Slit-shaped pupils are found in species which are active in a wide range of light levels. In strong light, the pupil constricts and is small, but still allows light to be cast over a large part of the retina.

The orientation of the slit may be related to the direction of motions the eye is required to notice most sensitively (so a vertical pupil would increase the sensitivity of the eyes of a small cat to the horizontal scurrying of mice).

Many snakes, such as boas, pythons and vipers, have slit-shaped pupils.

When an eye is photographed with a flash, the iris cannot close the pupil fast enough and the blood-rich retina is illuminated, resulting in the red-eye effect.

Dilation of the pupil

Image:Catpupil03042006.jpg Dilation occurs when signals from sympathetic fibers (these fibres travel from the sympathetic trunk up to the face) cause the iris dilator muscles to contract. Damage to the sympathetic tract to the face results in Horner's syndrome, a symptom of which is excessive pupillary constriction (miosis) in one eye. This disparity in pupil size is termed anisocoria.

The human pupil dilates if the person sees something (or someone) of interest or is aroused. Studies have shown that humans (especially females) are judged as more attractive if their pupils are wide open and more dilated than normal. The name Belladonna (beautiful lady) comes from the fabled use of the juices of the Nightshade plant by Italian women who would use eyedrops made from an extract of the plant in their eyes in order to enlarge their pupils and make their eyes appear more beautiful. In some cases gradual blindness has occurred through the overuse and abuse of belladonna to enhance the beauty of the eyes. Atropine, a chemical found in belladonna, is used by modern eye doctors to dilate the pupils so that they can examine the retina. Excessive dilation is called mydriasis.

Hallucinogenic drugs, such as LSD and psilocybin, and some stimulants such as cocaine also cause dilation of the pupils.

Constriction of the pupil

Image:The number of the beast.jpg When bright light is shone on the eye, it will automatically constrict. This is the pupillary reflex, which protects the retina from bright light, and is an important test of brainstem function. Also, the pupil will constrict if a person sees a thing or person which arouses anger or loathing.

The oculomotor nerve, specifically the parasympathetic part coming from the Edinger-Westphal nucleus, terminates on the circular iris sphincter muscle. When this muscle contracts, it reduces the size of the pupil.

Certain drugs cause constriction of the pupils, such as heroin.

Another term for the constriction of the pupil is miosis. Substances that cause miosis are called miotic.

See also

Sensory system - Visual system - Eye - edit
Sclera | Schlemm's canal | Trabecular meshwork | Cornea | Conjunctiva 

Pupil | Choroid | Tapetum lucidum | Ciliary body | Iris | Anterior chamber | Posterior chamber 

Retina | Macula | Optic fovea | Optic disc 

Aqueous humour | Vitreous humour | Lens 

Sensory system - Visual system - edit
Eye | Optic nerve | Optic chiasm | Optic tract | Lateral geniculate nucleus | Optic radiation | Visual cortex
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