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Retina

184 Sentences | 10 Meanings

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The retina contains specialized cells called photoreceptors that are responsible for detecting light.
The retina on this camera model is larger than on older models.
The retina is responsible for sending visual information to the brain.
The disease caused damage to the patient's retina, resulting in vision loss.
The retina is responsible for color vision, and the cones in it detect different colors.
The retina is responsible for transmitting visual signals to the brain.
In some eye diseases, such as glaucoma, damage to the retina can cause irreversible vision loss.
The retina is essential for the visual processing that allows us to see and interpret the world around us.
A retinal detachment occurs when the retina becomes separated from the back of the eye, leading to vision loss.
The retina contains cells called rods and cones.
The retina is responsible for distinguishing colors and shapes in our visual field.
The retina converts light into electrical signals that the brain can interpret as images.
The retina is one of the few parts of the body that can be directly viewed and examined through a non-invasive procedure called an ophthalmoscopy.
Rods and cones are two types of cells found in the retina.
The surgeon carefully placed the artificial retina on the back of the patient's eye.
The retina can detect light patterns that are as small as one photon.
The retina sends visual information to the brain via the optic nerve.
The retina is located at the back of the eye, near the optic nerve.
The retina is an essential component of the visual system.
The retina contains specialized cells called rods and cones that are responsible for detecting light and color, respectively.
The retina is a nerve that sends messages from the eye to the brain.
The retina is made up of several layers of specialized cells that work together to capture and process visual information.
The retina is a highly sensitive structure that can be damaged by exposure to bright light, such as staring directly at the sun.
The retina is a key target for gene therapy in the treatment of inherited retinal diseases.
The retina is responsible for converting light into neural signals.
Damage to the retina can be caused by exposure to bright light.
The retina is an amazing part of the eye that helps us see the world around us.
The retina has two types of cells, rods and cones, that help us see in different conditions.
A disease that affects the retina can lead to vision loss.
The retina is affected by many eye diseases, such as macular degeneration and retinal detachment.
The retina is a complex structure that is essential for our vision.
The success of an artificial retina implantation depends on various factors, such as the patient's age and the severity of their eye condition.
The contact lens with a simulated retina layer can provide clearer vision for some patients.
The implantation of an artificial retina requires skilled surgeons and specialized equipment.
The thin layer that coats the surface of the contact lens is designed to mimic the texture and function of the human retina.
The retina plays a crucial role in allowing us to see light and distinguish shapes and colors.
The optometrist recommended an eye exam to check the health of the retina.
The use of an artificial retina can significantly improve the quality of life for patients with degenerative eye diseases, such as age-related macular degeneration.
The doctor examined the patient's retina with a special tool.
The doctor advised the patient to rest their eyes to reduce strain on the retina.
The artificial retina was developed to treat patients with degenerative eye diseases.
The retina of an artificial eye implant is designed to mimic the function of a real retina.
The retina is a complex structure that contains several layers of cells, each with its own specific function.
The creation of an artificial retina involves complex processes, such as microfabrication and tissue engineering.
The development of an artificial retina involves interdisciplinary collaboration between scientists, engineers, and medical professionals.
The manufacturing of contact lenses with a simulated retina layer requires advanced technology and precise quality control measures.
The development of an artificial retina that can self-repair and adapt to changing environmental conditions is a promising area of research in the field of ophthalmology.
The retina in this device allows for the conversion of light into an electrical signal.
The device's retina converts light into an electronic signal.
The company's patent for a new type of retina was granted by the patent office.
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