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EYE WITH ORBIT

MODEL NO : AGN-EO-48

EYE WITH ORBIT

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Technical Specifications

The Eye with Orbit Model from AGN Enterprises is a detailed anatomical teaching aid designed to demonstrate the human eyeball together with the surrounding orbital structures. The model helps students understand the relationship between the eye, extraocular muscles, optic nerve, orbital cavity, and associated anatomical structures.

It is suitable for medical colleges, nursing institutes, optometry colleges, ophthalmology departments, paramedical institutions, biology laboratories, anatomy departments, and health-science training centers.

Eye with Orbit Anatomy

The Eye with Orbit Model provides a three-dimensional representation of important structures of the human eye and orbit.

Depending on the specific model configuration, represented structures may include:

Eyeball

Cornea

Sclera

Iris

Pupil

Lens

Retina

Choroid

Optic Nerve

Extraocular Muscles

Orbital Structures

The exact structures, removable components, colors, and anatomical details may vary according to the supplied model.

Human Eyeball

The eyeball is the principal organ of vision and is positioned within the protective bony orbit.

Its wall consists of several specialized layers that contribute to protection, nourishment, and visual function.

The model provides students with a clear three-dimensional representation of these structures and their relationships.

Cornea and Sclera

The cornea is the transparent anterior portion of the fibrous outer layer of the eye and plays an important role in refracting incoming light.

The sclera forms most of the tough outer coat of the eyeball and provides protection and structural support.

Where represented, students can clearly compare these two continuous but functionally different regions.

Iris, Pupil and Lens

The iris is the colored portion of the eye and surrounds the pupil.

The pupil is the central opening through which light enters, while the lens helps focus light onto the retina.

The model helps learners understand the spatial relationship between these important structures involved in vision.

Retina and Choroid

The retina is the light-sensitive neural layer lining the inner portion of the eye.

The choroid is a vascular layer situated between the retina and sclera and contributes to the nourishment of ocular tissues.

Where represented, the model helps students study the layered organization of the eyeball.

Optic Nerve

The optic nerve carries visual information from the retina toward the brain.

It exits the posterior region of the eyeball and passes through the orbit toward the cranial cavity.

The model provides a useful anatomical reference for understanding the relationship between the eye and the central nervous system.

Extraocular Muscles

The extraocular muscles control the position and movements of the eyeball.

Major muscles include:

Superior Rectus

Inferior Rectus

Medial Rectus

Lateral Rectus

Superior Oblique

Inferior Oblique

Where represented, the model helps students understand how these muscles are arranged around the eye within the orbit.

Orbit

The orbit is the bony cavity of the skull that contains and protects the eyeball together with associated muscles, nerves, vessels, connective tissues, and other structures.

Studying the eye together with its orbit provides a more complete understanding of ocular anatomy than studying an isolated eyeball alone.

Educational Benefits

The Eye with Orbit Model provides students with a three-dimensional approach to studying ocular and orbital anatomy.

Teachers can use it for lessons involving eye anatomy, orbit anatomy, extraocular muscles, optic nerve, cornea, lens, retina, visual pathways, ophthalmology, and optometry.

The model supports anatomical identification, spatial visualization, practical demonstrations, and examination preparation.

Why Choose AGN Enterprises

AGN Enterprises supplies anatomical models, eye models, sensory-organ models, biological teaching aids, scientific instruments, and educational laboratory equipment for medical colleges, nursing institutes, optometry programs, schools, and professional training centers.

Our anatomical teaching models provide clear three-dimensional representations for practical and classroom-based medical education.

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