
Clear Lens Extraction (CLE) is a surgical procedure that involves the removal of the natural lens of the eye and replacing it with an artificial lens implant, also known as an intraocular lens (IOL). CLE is primarily performed to correct refractive errors, such as nearsightedness, farsightedness, and astigmatism.
Clear Lens Extraction is similar to cataract surgery, where the natural lens is removed and replaced with an IOL. However, in CLE, the lens is clear and not clouded as in the case of cataracts. The procedure begins with the administration of local anesthesia to numb the eye and ensure a painless experience for the patient.
Once the eye is numb, a small incision is made on the cornea, which is the clear front surface of the eye. Through this incision, your eye surgeon accesses the lens and carefully removes it. The artificial IOL is then inserted into the empty lens capsule. The IOL is specifically chosen to correct the patient's refractive error, providing them with improved vision.
After the IOL is implanted, the incision is closed with tiny sutures or self-sealing techniques. Following the surgery, patients are usually prescribed antibiotic and anti-inflammatory eye drops to prevent infection and reduce inflammation.
Before deciding to undergo Clear Lens Extraction, there are several factors that need to be considered. Firstly, it is crucial to have a thorough eye examination to determine if you are a suitable candidate for the procedure. Your optometrist will evaluate your overall eye health and discuss your expectations and goals for vision correction.
Age is another important factor to consider. CLE is typically recommended for individuals over the age of 40 who have developed presbyopia, a condition that affects near vision. It is also important to have stable vision, as any changes in prescription can affect the accuracy of the IOL power calculation.
Additionally, it is essential to understand the potential risks and complications associated with the procedure. While CLE is generally safe, there is a small risk of infection, bleeding, and retinal detachment. Your optometrist will discuss these risks with you and address any concerns you may have.

Visual field testing is an important part of most standard comprehensive eye exams. Also sometimes known as perimetry testing, Visual field testing is a method to measure the entire scope of vision of an individual, including their peripheral/side vision.
Visual field testing is one of the most effective diagnostic treatments in the detection of glaucoma. This is because when patients are affected by glaucoma, it is usually the peripheral vision that is affected by their condition first. However, it can also be used to detect central or peripheral retinal diseases, eyelid conditions such as drooping, optic nerve damage and conditions that affect the visual pathways from the optic nerve to the area of the brain where this information is processed into vision.
Visual field testing is also an important part of monitoring for people who are considered to be at risk for vision loss from disease and other problems, including those who have been diagnosed with the following:
Multiple sclerosis
Hyperthyroidism
Pituitary gland disorders
Central nervous system problems (such as a tumor that may be pressing on the brain)
Stroke
Diabetes
High blood pressure
There are a variety of methods that can be used to perform visual field testing, including:
Static automated perimetry. This is where a machine is used to quantify how well the patient is able to detect flashing lights of varying size and brightness in different areas of their visual field, while they concentrate on a central point. The patient responds by pushing a button when they see the light.
Kinetic perimetry. This involves points of light that are fixed in size and intensity and are presented along the patient’s peripheral vision, before being gradually moved inwards to determine their field of vision.
Visual field testing is non-invasive, painless and doesn’t require patients to have their eyes dilated. The results, which are usually presented in a series of charts, are digital and sent directly to your eye doctor for interpretation. Depending on the outcome of your results, you may be recommended for further diagnostic testing which could include blood tests. If you have been diagnosed with glaucoma, you will probably be recommended to have several visual field tests each year, which will help your eye doctor to monitor the progression of your condition and recommend treatments to slow it.
If you would like more information about visual field testing, or if you have concerns about your peripheral vision, please don’t hesitate to schedule an appointment with our experienced and knowledgeable eyecare team today.

Astigmatism is a common refractive error that occurs when the cornea or lens of the eye is not perfectly spherical. Instead of having a uniform, rounded shape, the cornea or lens has a slightly more curved or irregular shape, resembling more of an oval or football-like appearance.
This irregular shape causes light to bend or refract unevenly as it enters the eye, leading to blurred or distorted vision. Astigmatism is often present from birth, but it can also develop later in life due to various factors, such as eye injuries, certain medical conditions, or the natural aging process.
If you have astigmatism, you may experience a range of symptoms that can impact your daily life. Some of the most common symptoms of astigmatism include:
Blurred or distorted vision, especially at a distance or when reading
Difficulty seeing clearly at night or in low-light conditions
Frequent headaches or eye strain
Sensitivity to glare or bright lights
Double vision or the appearance of halos around lights
These symptoms can vary in severity and may become more pronounced over time, especially if the astigmatism is left uncorrected.

Prokera and CAM360 from BioTissue are FDA-approved cryopreservered amniotic membrane tissue used to treat various corneal conditions, to help with anti-inflammation, anti-scarring, and promote healing on the front surface of the eye. The amniotic membrane is provided by a tissue bank that undergoes rigorous quality testing and regulated by the FDA.
What can it be used to treat?
dry eyes and ocular irritation
keratitis
corneal scarring
chemical burns
post-surgical recovery (LASIK or cataract)
corneal injuries, ulcers, and recurrent corneal erosions
These treatments work by reducing inflammation and minimizing scarring, helping to restore your cornea to its normal, healthy state with its regenerative abilities.
reduces inflammation
improved eye health
regenerates corneal nerves
faster recovery from infection and surgery
Prokera is a cryopreserved amniotic membrane supported by a soft ring worn under taped lids for 1-3 days. It must be removed by your doctor. CAM360 is a similar ringless version that dissolves on its own in roughly 48 hours. Your doctor will discuss which option is best for you during your visit.

Corneal refractive therapy, also known as CRT, is a simple, painless treatment for refractive eye errors like myopia and has two core benefits. First, it can be used to help patients see clearly during the day without using glasses or contact lenses, giving them the freedom and flexibility that they need to live life to the fullest. Second, CRT has been shown to help slow the progression of myopia, keeping prescriptions under control and potentially reducing the likelihood of patients developing serious eye health problems associated with high myopia in the future.
Here’s everything that you need to know about corneal refractive therapy and what it means for you.
Refractive eye problems like nearsightedness, farsightedness and astigmatism are extremely common, with nearsightedness – also known as myopia – being the most common of all. Patients with myopia can see nearby objects clearly, but those further away become progressively more blurred. Refractive eye errors occur when the shape of the clear dome covering the front part of the eye, called the cornea, impair the light-bending and focusing process in your eyes. This leads to the light ending up in the wrong place inside the eye, and the message that is sent to our brain from our eyes is muddled, causing blurred vision.
Corneal refractive therapy was initially developed as a treatment to correct and slow the progression of nearsightedness. However, it has also been found to be effective at controlling other refractive errors, including farsightedness, astigmatism and an age-related refractive condition called presbyopia.
CRT is a non-invasive, painless and straightforward method of correcting patient vision so that they don’t need to wear contacts or glasses, and they don’t need laser vision correction surgery to see clearly. CRT uses special contact lenses that are worn overnight and apply light pressure to the cornea in order to reshape it so that light is refracted correctly, and the image sent from the eyes to the brain is clear. The cornea is able to retain this new shape even after the contact lenses are removed the next morning, meaning that you can continue to see clearly for several hours. The more consistently you wear your CRT lenses overnight, the longer your eyes will learn to retain their new shape and eventually, patients can enjoy up to 48 hours of clear vision without using prescription lenses. However, the effects aren’t permanent so if you stop wearing the lenses, your vision will gradually return back to normal over the course of a few days.
Another key benefit of CRT is that it can actually help to slow the progression of myopia. Most people who are nearsighted find that their eyesight gets progressively worse as they get older. This deterioration may not be rapid, but it can end in patients requiring high prescriptions. Studies have found that patients who have high myopia are more likely to develop serious eye problems in the future, including glaucoma, macular degeneration, cataracts and a detached retina. Regular use of your corneal refractive therapy lenses could help keep your prescription stable and lower your risk of developing these problems.
You may be a candidate for corneal refractive therapy if you:
Have a myopia prescription within specific parameters
Have a prescription for hyperopia, presbyopia or astigmatism within specific parameters
Have stable vision, which means that your prescription hasn’t changed during the last two years
Are not a suitable candidate for laser vision correction
Have a job that makes it impractical or unsafe to wear glasses or contact lenses
Enjoy hobbies that make it impractical or unsafe to wear glasses or contact lenses
Have healthy eyes and are generally in good health
For more information, please contact our friendly and knowledgeable team today.

In the realm of eye care, surgical co-management has emerged as a collaborative approach that aims to provide patients with comprehensive and seamless treatment. This concept involves the joint efforts of optometrists and ophthalmologists, each bringing their unique expertise to the table. By working together, these eye care professionals strive to enhance patient outcomes and deliver exceptional care.
Surgical co-management is built upon the unique skill sets and areas of expertise of optometrists and ophthalmologists. By understanding their respective roles, you can appreciate the synergy that this collaborative approach fosters.
Optometrists are primary eye care professionals who specialize in the examination, diagnosis, and non-surgical treatment of vision disorders. Their responsibilities in surgical co-management include:
Performing comprehensive eye examinations and evaluations
Monitoring and managing pre-existing eye conditions
Providing pre-operative and post-operative care
Educating patients on surgical procedures and aftercare
Collaborating with ophthalmologists to ensure continuity of care
Ophthalmologists are medical doctors who specialize in the diagnosis, treatment, and surgical management of eye diseases and disorders. Their role in surgical co-management encompasses:
Evaluating patients' candidacy for surgical interventions
Performing complex surgical procedures
Providing specialized medical and surgical care
Collaborating with optometrists to ensure seamless patient care
Monitoring and managing post-operative complications
By combining the expertise of optometrists and ophthalmologists, surgical co-management ensures that patients receive comprehensive and coordinated care throughout their treatment journey.
Surgical co-management is a well-orchestrated process that involves several key steps. Understanding how it works can help you navigate this collaborative approach with confidence.
Initial Evaluation: The process typically begins with an optometrist conducting a comprehensive eye examination. During this evaluation, the optometrist assesses the patient's visual needs, identifies any potential issues, and determines if a surgical intervention is necessary.
Referral and Consultation: If surgery is recommended, the optometrist refers the patient to an ophthalmologist for further evaluation and consultation. This step ensures that the patient receives specialized medical advice and a thorough assessment of their suitability for the proposed surgical procedure.
Pre-operative Care: The optometrist plays a crucial role in providing pre-operative care, which may include managing any existing eye conditions, ensuring the patient understands the surgical process, and addressing any concerns or questions they may have.
Surgical Procedure: The ophthalmologist performs the necessary surgical intervention, leveraging their specialized training and expertise in surgical techniques.
Post-operative Care: After the surgery, the patient's care transitions back to the optometrist, who closely monitors the recovery process and provides post-operative care and management. This may involve follow-up appointments, monitoring for any complications, and ensuring the patient adheres to the prescribed treatment plan.
Ongoing Collaboration: Throughout the entire process, the optometrist and ophthalmologist maintain open communication and collaborate closely. This ensures that the patient's care is seamless, and any concerns or issues are promptly addressed by the appropriate healthcare professional.

Urgent eye care encompasses prompt evaluation and treatment of sudden or severe eye-related issues, including foreign object removal, chemical exposure, corneal abrasions, sudden vision loss, eye trauma, acute glaucoma, chemical burns, and eye infections. Seeking immediate professional attention from an optometrist is vital to prevent further damage and preserve vision.
Eye emergencies can manifest in various forms, and it is essential to be able to identify them quickly. Some common eye emergencies include:
Foreign Object in the Eye: Particles, debris, or small objects can become lodged in the eye, causing pain, redness, tearing, and potential damage to the eye's surface.
Corneal Abrasions or Scratches: Injuries to the cornea, such as abrasions or scratches, can cause severe eye pain, light sensitivity, and a feeling of something in the eye.
Sudden Loss of Vision: Any sudden and unexplained loss of vision requires immediate attention to determine the underlying cause and initiate appropriate treatment.
Eye Trauma or Blunt Force Injury: Injuries to the eye from impact, trauma, or accidents can lead to serious complications, including retinal detachment, hemorrhage, or intraocular foreign bodies.
Chemical Burns: Exposure to caustic substances or chemicals can cause serious damage to the eyes, resulting in pain, redness, and potential vision loss.
Eye Infections: Infections such as conjunctivitis (pink eye) can cause redness, discharge, and discomfort in the eyes.
Recognizing these symptoms and seeking urgent care can prevent further complications.
Red eye exams are a fundamental part of urgent eye care. They help identify the cause of redness and determine the appropriate treatment. Basic red eye exams involve a comprehensive evaluation of the eye, including examining the eyelids, conjunctiva, cornea, and iris. These exams aid in the diagnosis and treatment of various conditions, such as conjunctivitis, uveitis, dry eyes, and corneal abrasions.

When it comes to maintaining your eye health, regular check-ups and screenings play a crucial role. One such screening method that has revolutionized the field of optometry is retinal imaging testing. This non-invasive procedure allows optometrists to capture detailed images of the retina, providing valuable insights into the overall health of your eyes.
By examining the retina, which is the thin layer of tissue at the back of your eye responsible for capturing light and transmitting visual signals to the brain, optometrists can gain valuable insights into your eye health. Retinal imaging testing allows for the early detection of various eye conditions even before noticeable symptoms occur. This early detection is crucial as it enables prompt treatment and intervention, potentially preventing irreversible vision loss.
Retinal imaging testing has been made possible by the advancements in technology, specifically Optical Coherence Tomography (OCT) and Optos imaging. OCT is a non-invasive imaging technique that uses light waves to capture high-resolution cross-sectional images of the retina. It provides detailed information about the layers of the retina, helping eye doctors identify and monitor various eye conditions.
Optos imaging utilizes ultra-widefield retinal technology to capture a panoramic image of the retina. This technology allows for a more comprehensive view of the retina, including the periphery. Dilating drops are not necessary with Optos, making the process more convenient for patients.

Thanks to the advancement of lens technology, glasses lenses are no longer a single, one size fits all solution. There are a variety of different lens types that can be used in glasses, giving patients greater flexibility and control over their vision than ever before.
Also known as monovision lenses, these lenses are designed to correct the wearer’s vision at just one distance, and have a single prescription covering the entire surface of the lens. They are most often recommended for people who are either nearsighted (myopia) or farsighted (hyperopia) and who need glasses for a specific activity, such as driving or reading.
Progressive lenses are multifocal lenses that can correct a patient’s vision at different working distances, ranging from far distance to reading distance. However, rather than designating different areas on the lenses for different distances with visible lines separating them, progressive lenses have a gradual change so that the wearer can smoothly transition from one lens power to another.
As you may have guessed from the name, bifocal and trifocal lenses have either two or three lens powers depending on which type you choose. Bifocal lenses support distance vision in the top half of the lens, and near vision in the lower half. Trifocal lenses support distance vision in the top third of the lens, intermediate vision in the middle segment and near vision in the bottom third. Whichever variety you choose, you will see visible lines separating each segment.
Bifocal and trifocal lenses are recommended for patients who are near or farsighted, and those who develop presbyopia, which is the natural hardening of the eye lens, that occurs as we get older. Presbyopia makes it harder for the lens of the eye to adapt to focus at different distances.
Multifocal lenses are the alternative name given to bifocal, trifocal and progressive lenses.
Computer lenses are prescription lenses that are specifically designed to be worn when doing computer work. This is because they place the optimum lens power for viewing your computer screen exactly where you need it – which is closer than intermediate vision, but further away than reading material is usually held. Wearing computer lenses can significantly reduce the negative effects caused by the high visual demands of computer work, including blurred vision, redness, dry eyes, double vision and dizziness.
Also known as photochromic lenses, transition lenses are a special type of lens that darken when in the sunlight and lighten when in softer light or the dark. This versatility gives the wearer the convenience of being able to move between different environments without needing to change their glasses. This makes them extremely cost effective and prevent the wearer from needing to take multiple pairs of glasses out with them. Transition lenses also filter out many of the harmful UV rays that are emitted from the sun, helping to keep eyes healthy too. They are ideal for people who spend a lot of time going between inside and outside, or who work outside in varying weather conditions.
Blue light lenses are specially crafted lenses that contain filters that block out much of the artificial blue light that is produced by digital devices like computers, smartphones and tablets. Natural blue light is actually good for balancing our sleep-wake cycle, boosting our mood and enhancing our cognitive abilities so that we can function better day to day. However, too much blue light, especially from artificial sources, can have the opposite effect. Many people who fail to use blue light lenses can go on to develop digital eye strain, which produces symptoms like eye fatigue, dry eyes, blurred vision, headaches and more. Blue light lenses are recommended for anyone who spends a lot of time working on a digital device.
Polarized lenses are used to reduce eyestrain and improve the quality of vision in patients on especially sunny days, making them ideal for anyone who spends a lot of time outdoors. They can do this because they have a special filter that blocks some of the light from passing through the lens. Vertical light is allowed to pass through, while horizontal light, such as that which bounces off of water and can be blinding, is blocked. Polarized lenses are most often used in sunglasses since they are worn outdoors, and the wearer also needs to protect their eyes from UV damage.
Still have questions about which lens is right for you? Contact us to schedule an eye exam or an appointment to evaluate your individual needs.

Optical Coherence Tomography is a non-invasive imaging test that may be performed as a standard part of your regular, comprehensive exams, or you may be able to request this test as an addition to your usual exam.
Optical Coherence Tomography uses light waves to take cross-section images of your retina, which is the area of light-sensitive cells at the back of your eye that is responsible for receiving light and transmitting it into messages that are sent up to the brain. The technology behind OCT enables your eye doctor to see each of the different layers that make up the retina. By being able to see these and measure them, they can obtain a much clearer picture of the overall health and condition of your eyes.
When you choose to have an OCT scan at fairly regular intervals, such as during your normal comprehensive eye exams, your eye doctor can compare newer results to previous ones. This helps them to build up a picture of the health of your eyes, and spot any changes which may be concerning, early, before they cause symptoms or have a permanent effect on your vision.
Anyone can have an OCT scan, but they are particularly recommended for patients over the age of 25 who are concerned about the health of their eyes, or who are at risk of or already have diabetes, glaucoma or a family history of eye disease. This is because they can be used to spot the early signs of a range of eye diseases, including glaucoma, diabetic retinopathy, macular degeneration, disorders of the optic nerve and more – even before you realize that you are affected.