The Eye Structure and Physiology. The eye is in the orbit of the skull for protection. Within the orbit are 6 extrinsic eye muscles, which move the eye.

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Presentation transcript:

The Eye Structure and Physiology

The eye is in the orbit of the skull for protection. Within the orbit are 6 extrinsic eye muscles, which move the eye. There are 4 cranial nerves: Optic (II), Occulomotor (III), Trochlear (IV), and Abducens (VI). People of Asian descent have an EPICANTHIC FOLD in the upper eyelid; no functional difference. THE EYE EPICANTHIC FOLD

Visual Accessory Organs Eyelid Conjuctiva Lacrimal Gland Extrinsic Muscles

Eyelid Covers and protects the eye, thin skin Skin will not protect you from intense radiation, that’s why we use special goggles in a tanning bed

CONJUNCTIVA is like a covering around the eye and under the eyelids. PINK EYE PINK EYE - also known as CONJUNCTIVITIS (from bacteria, very contagious)

LACRIMAL GLANDS are the largest set. They are on the superior lateral eyelid and they produce tears, which drain into the nasal cavity via the LACRIMAL DUCT. The function is to moisten and lubricate the eye surface, and it has enzymes to kill bacteria (which thrive in warm, moist conditions).

Figure 16.5b

Extrinsic Eye Muscles Moves the eyeball

Outer Tunic Cornea - transparent, focuses light rays – functions to attach the eye muscles Sclera – continuation of cornea, going toward the back of the eye (white of the eye) – functions to attach eye muscles Optic Nerve – exits at the optic disk and transmits visual information from the eye to the brain.

Middle Tunic Choroid Coat – contains blood vessels Ciliary Body – holds the lens in place Lens – focusing Iris – colored portion of the eye Aqueous humor – liquid surrounding the lens Pupil – opening for light to enter

Inner Tunic Retina - visual receptor cells, the region of sight Fovea Centralis - region of the sharpest vision (aka, macula) Optic Disc – where nerve fibers leave the eye, creating the blind spot Vitreous Humor – supports internal parts, fluid

Eye Chamber 1. Vitreous Chamber: larger posterior chamber vitreous humor filled w/ vitreous humor = very thick and jelly like 2. Aqueous Chamber: smaller anterior chamber 1. Aqueous humor = thinner nutritive fluid

Figure 16.7a

Retina The retina is made up of PHOTORECEPTORS, which are sensors for light.

Rods = monochromatic (b&w) Cones = color vision

Light Refraction Light bends around objects Occurs at: 1.Cornea 2.Aqueous humor 3.Lens 4.Vitreous humor Images viewed by the eye are upside down

R.O.Y.G.B.I.V Rainbows are seen after rain because light is passing through water droplets. This separates the white light into the individual colors of the spectrum

The Eye as an Optical Device Figure 16.14a–c

Accomodation Lens changes shape to facilitate focusing Shape change is dependent upon the suspensory ligaments

Vision Problems Farsightedness = hyperopia Image “perceived” behind eye difficulties with close vision Corrected with converging lens

Nearsightedness = myopia Problems with distance vision Corrected with diverging lens Vision Problems

Do you see….a frog or a horse?

We have difficulty interpreting images that are upside down Which one is the real mona lisa?

Fun Fact: -When you are looking at someone you love, your pupils dilate, and they do the same when you are looking at someone you hate.

What causes red-eye? The flash on a camera is bright enough to cause a reflection off of the retina -- what you see is the red color from the blood vessels. Many cameras have a "red eye reduction" feature. In these cameras, the flash goes off twice -- once right before the picture is taken, and then again to actually take the picture. The first flash causes people's pupils to contract, reducing "red eye"

Problems with the Eyes Cataracts - Clouding of the lens leads to a clinical condition known as CATARACTS.

Treatment is to remove the lens and replace it with a plastic one (which is not flexible either).

The function is to constrict or dilate the pupil (opening) to allow light in. Therefore, it regulates the amount of light passing to the visual receptors of the eye. Problems with the IRIS and PUPIL ANIRIDIA = a condition where a person is born without an iris

Why are all babies born with blue eyes? Melanin is a brownish pigment that adds color to your hair, eyes, and skin. At the time babies are born, melanin hasn't yet been "deposited" in the eyes' iris. Hence, they appear blue. After about six months, eyes change color depending on the amount of melanin. If you have a lot of it, your eyes will turn dark brown. If you have little, they'll stay blue. And if you have no melanin, your eyes may appear pink (albino).

How we see… 1. Light is focused primarily by the cornea — the clear front surface of the eye, which acts like a camera lens. 2. The iris of the eye functions like the diaphragm of a camera, controlling the amount of light reaching the back of the eye by automatically adjusting the size of the pupil (aperture). 3. The eye's crystalline lens is located directly behind the pupil and further focuses light. Through a process called accommodation, this lens helps the eye automatically focus on near and approaching objects, like an autofocus camera lens.

How we see… 4. Light focused by the cornea and crystalline lens (and limited by the iris and pupil) then reaches the retina — the light-sensitive inner lining of the back of the eye. The retina acts like an electronic image sensor of a digital camera, converting optical images into electronic signals. The optic nerve then transmits these signals to the visual cortex — the part of the brain that controls our sense of sight.

Colorblindness A genetic trait that affects boys more than girls. The location of the gene is on the X chromosome

The region where the optic nerve and blood vessels goes in and out of the eye has no photoreceptors = BLIND SPOT. Hold your hands out at 45° and that’s the location of the blind spot. You can still see your hands because the other eye sees it. Close your right eye and look for your right hand and you’ll find the blind spot.

FLOATERS are when a capillary breaks and cells break off. Floaters don’t actually move, the eye just tries to track them.

Glaucoma Glaucoma is the second most common cause of blindness in the United States.

HYPEROPIA (far-sighted) eyes are too short MYOPIA (nearsighted)eyes are too long

ASTIGMATISM ASTIGMATISM is when the cornea has an irregular shape. Part of the field of view is out of focus.

Lasik Surgery