Advanced Intraocular Lens (IOL) Implants

Every advanced intraocular lens (IOL) implant involves a tradeoff. Lenses with concentric rings can restore all three vision zones without glasses, but they filter light in ways some patients notice at night. Lenses without rings preserve sharper, monofocal-like contrast, but you accept two out of three vision zones. The Light Adjustable Lens™ (LAL) is a third path that lets Dr. Hamilton fine-tune your prescription in the office after surgery and belongs in the two vision zone category. Dr. Rex Hamilton performs advanced lens implant surgery in Beverly Hills and across Los Angeles.

Happy senior couple enjoying a day on the boat wearing sunglasses
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There Is No Single “Best” Advanced Lens Implant

Your eye’s natural lens once gave you continuous focus from a book in your hand to a street sign down the block. That flexibility fades with age. By the time you’re a candidate for cataract surgery or a Refractive Lens Exchange (RLE), your natural range of vision is significantly reduced. The intraocular lens (IOL) that Dr. Hamilton implants can restore a range of vision for you without glasses.

For decades, the default (covered by insurance) replacement was a monofocal lens. It provides one range of vision, usually far vision, does not correct for astigmatism which blurs the vision at all distances, and leaves you requiring reading glasses for anything from computer distance and closer. The monofocal lenses work well and have decades of clinical data behind them but require glasses for full range of vision. Modern advanced lens implants can do much more. But every one of them makes a tradeoff, and the marketing rarely spells it out.

Dr. Rex Hamilton has performed over 25,000 procedures and personally guides every patient through the lens decision. Your anatomy. Your outcomes.

The Three Vision Zones

Advanced lens conversations get simpler once you name the three ranges you actually use each day.

Your lifestyle determines which zones matter most. Dr. Hamilton will map the conversation to how you actually spend your day.

Near. The reference here is your cell phone. Everyone has one, and cell phone distance is a reasonable target for modern lens surgery. Anything closer than a cell phone, like threading a needle or reading the fine print on a medication insert, is not something these lenses reliably deliver. Grab a pair of over the counter readers for these less common tasks.

Intermediate. This is the range of a desktop computer, a grocery store shelf, or the details on your car dashboard.

Distance. This covers everything across the room and beyond, including street signs, television, and driving.

The Big Picture Choice: Lenses With Rings vs. Lenses Without Rings

When you go down a rabbit hole investigating advanced intraocular lenses, you will find a dizzying array of jargon and brand names. Multifocal, trifocal, monofocal plus, extended depth of focus (EDOF), full range of vision (FRV), Panoptix Pro, Odyssey, PureSee, Envy, FineVision HP, Vivity.

Forget all of that. Almost every advanced lens implant on the market today falls into one of two categories. Understanding this split is more useful than memorizing brand names and jargon, because it frames the pros and cons of the two different categories.

  1. Lenses with rings
  2. Lenses without rings

Lenses With Rings

These lenses have a series of concentric rings, technology called diffractive optics, to split incoming light into different focal points which gives you all three vision zones without glasses. This full range of vision comes with a trade-off: a filter effect on contrast (Figure 1) and halos around lights at night (Figure 2).

These phenomena are most apparent right after surgery because, in an instant, Dr. Hamilton changed the optics your brain had been used to your entire life. The brain notices this abrupt change but gets used to it over time, a concept known as neuroadaptation.

In the clinical trial of the Odyssey lens, for example, the patients were asked one month after surgery if they were significantly bothered by halos. Only 3% of patients said yes. The other 97% said they notice them but they were no longer bothersome. In the same study, 94% of patients were satisfied with their overall vision without glasses, 96% with reading on a smartphone or tablet, and 92% with seeing steps and curbs at night. A 2020 peer-reviewed review in Ophthalmology summarizes how photic (stray light) phenomena and reduced contrast are inherent to the optical design.

Adaptation Timeline

Functional MRI studies of diffractive multifocal IOL patients have shown measurable neuroadaptation between three weeks and six months. Follow-up work has confirmed the pattern using resting-state fMRI. Most of Dr. Hamilton’s patients notice a clear reduction in dysphotopsia by the one-to-three-month mark.

graphic depicting nearsightedness

Figure 1: Multifocal optics provides 3 ranges of vision but will reduce image contrast. 1A: Young patients without cataracts undergoing RLE surgery may notice this reduced contrast because the natural lens that was removed provided high contrast but poor range. This trade off becomes less obvious over time as the brain adapts to the new optics.

graphic depicting nearsightedness

Figure 1B: Older patients undergoing cataract surgery already have some level of reduced contrast from the cataract and, therefore, will be very happy with the new optics very quickly as both the range and quality of vision is instantly better.

light adjustable lens graphic

Figure 2A: Patients who receive a lens with rings, either from RLE or cataract surgery, will notice halos around lights at night, such a headlight or streetlight. These halos are new to the patient’s brain and, consequently, very obvious. 2B: Over time, the brain adapts to things that are constant and the halos become less obvious over time.

light adjustable lens graphic

Figure 2B: Over time, the brain adapts to things that are constant and the halos become less obvious over time.

Brand Name Options in Lens With Rings Category and Dr. Hamilton’s Preference

Dr. Hamilton offers four lenses in this category:

  • TECNIS Odyssey™, by Johnson and Johnson
  • enVista Envy™, by Bausch + Lomb
  • PanOptix® Pro, by Alcon
  • FineVision® HP, by BVI

Dr. Hamilton tends to favor the Odyssey lens and the Envy lens because he feels the quality of vision is as good as it gets in this category. Near vision without glasses is often slightly better with the Fine Vision HP and the PanOptix. He will not say one lens is objectively better than the others. He will match the choice to your eyes.

Lenses Without Rings

These lenses do not have rings but have advanced, proprietary smooth alterations in curvature from the center to the edge of the optic that provides an extended range of focus. One in particular, the TECNIS PureSee, also preserves sharper contrast and image quality than lenses with rings. The trade-off is that these lenses provide vision across two ranges: either distance and intermediate or intermediate and near. For patients desiring freedom from glasses, Dr. Hamilton can make use of the fact we have two eyes by targeting distance and intermediate zones in one eye and intermediate and near in the other. This blended vision approach can work very well using the TECNIS PureSee IOL from this category (Figure 3). Another unique lens without rings is the RXSight Light Adjustable Lens. The power of this lens can be adjusted after surgery using a procedure in the office. Dr. Hamilton has extensive experience with the Light Adjustable Lens and will discuss it with you if he feels it is your best option.

Figure 3: In patients who desire vision without glasses from cell phone out to the distance, Dr. Hamilton can use the TECNIS PureSee IOL in a blended vision fashion. One eye is targeted to cover distance and intermediate vision (3A) while the other eye is targeted to cover intermediate and near (3B). Again, through neuroadaptation, the brain learns to blend the images into seamless vision across all three ranges.

3A:

3B:

Brand Name Options in the Lens Without Rings Category and Dr. Hamilton’s Preference

Dr. Hamilton offers two lenses in this category:

  • TECNIS PureSee™ by Johnson and Johnson
  • Light Adjustable Lens™ by RXSight
  • Vivity® by Alcon

Of all the lenses available today, the TECNIS PureSee is the one Dr. Hamilton is most excited about. He calls its combination of contrast and range the most impressive he has seen in years, and for the right eye it is often his first recommendation. It also provides enough range that he does not need to program a large offset between the two eyes.

PureSee is the first extended depth of focus lens the FDA has cleared without a contrast-sensitivity warning. It delivers the same level of contrast as a monofocal lens while still extending your range, which is what makes it a meaningful option for eyes that need to protect every bit of contrast. Because the optic is not splitting light, patients keep sharper contrast, particularly in low light. This matters most for patients who drive at night.

For patients with early macular degeneration or mild glaucoma undergoing cataract surgery, the PureSee lens is a meaningful option. Recent peer-reviewed data on extended depth of focus IOLs supports the case that these patients no longer have to accept the limited range of a monofocal to preserve contrast.

Rings
No Rings
Vision zones

All three (near, intermediate, distance)

Two of three (can get all three when set up as blended vision)

Glasses

Least dependence

Mild readers for fine near

Night vision

Some halos + filter effect, fades with adaptation

Sharper contrast, minimal halos

Adaptation

1–3 months

Minimal

Named lenses

TECNIS Odyssey, enVista Envy, PanOptix Pro, FineVision HP

TECNIS PureSee, Vivity

Best for

Full range without glasses

Prior PRK/LASIK/SMILE, patients concerned about contrast and night halos, early macular degeneration / mild glaucoma (PureSee)

Older couple looking at the sunset after IOL surgery

Cataract Surgery vs. Refractive Lens Exchange: FDA Approval Scope

Every advanced lens implant discussed here was approved by the FDA for use in cataract surgery. None of the lenses discussed here are FDA-approved for Refractive Lens Exchange (RLE), because the clinical trials enrolled cataract patients. When Dr. Hamilton uses these lenses in an RLE patient, it is an off-label application, which is a legally recognized part of medical practice.

The clinical performance of the lens does not change between cataract and RLE. The regulatory approval scope does. You will see the term “off-label” when reading your consent form if RLE is on the table.

Refractive Lens Exchange is not right for everyone. Dr. Hamilton reviews your full eye health at consultation to determine whether RLE, and which lens, is the right choice for you.

Who This Discussion Matters Most For

The patients who most need to hear the contrast tradeoff discussion are RLE candidates, not classic cataract patients. If you have a dense cataract, your starting vision is already compromised. Almost any advanced lens improvement will feel dramatic, including the mild filter effect of a ring-based lens.

The patient who comes in with excellent uncorrected distance vision and is straining and struggling with near vision tasks is very different. Consider a 48-year-old who walks in and says, “I don’t want to wear these reading glasses anymore.” Distance vision is already excellent. Only the near vision is frustrating. Modern IOLs do not let Dr. Hamilton change only the near vision, because the lens replaces the whole optical system. Any lens choice will change how distance vision looks too. These patients, specifically those receiving a lens with rings, must understand there will be a period of a few months when the distance vision quality seems different than what they are used to. Over time the brain adapts to the “new normal”.

For this patient, the loss of contrast is the biggest temporary challenge to hear about prior to moving forward with RLE surgery. RLE candidates should not learn about the filter effect after surgery. Peer-reviewed guidance on multifocal IOL patient selection reinforces that patient counseling is a stronger predictor of satisfaction than any single lens design.

Dr. Rex Hamilton

About Dr. Hamilton

Dr. Rex Hamilton MD, MS, is a board-certified ophthalmologist, Charter Fellow of the World College of Refractive Surgery and Visual Sciences (FWCRS), and Fellow of the American College of Surgeons (FACS). He has performed over 25,000 procedures and personally trained more than 200 eye surgeons.

He was the first surgeon in Los Angeles to implant a TECNIS Symfony IOL (an older lens with rings), the first at UCLA to use intraoperative aberrometry, and the first at UCLA to perform laser cataract surgery. He was Professor of Ophthalmology and Medical Director of the UCLA Laser Refractive Center, and participated in the original Light Adjustable Lens™ clinical trial at UCLA Stein Eye Institute. He serves as a Key Opinion Leader for Johnson and Johnson Vision, Alcon, Carl Zeiss Meditec, BVI, Staar Surgical, and RXSight.

You are choosing a lens that stays in your eye for the rest of your life. Dr. Hamilton personally guides every diagnostic exam, surgical decision, and follow-up visit at Hamilton Eye Institute.

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Frequently Asked Questions

For healthy eyes, yes. Advanced lens implants reduce dependence on glasses after cataract surgery or RLE. Standard monofocal lenses do not do that. Whether an advanced lens is right depends on your eyes and how you weigh the tradeoffs at consultation.

It depends on which category of lens you choose. Lenses with rings often provide functional near vision up to the level of cell phone distance without glasses. Lenses without rings can also cover up to the cell phone distance if they are implanted in a blended vision fashion. Very fine near tasks, like threading a needle, may still require magnification.

Most patients adapt to a lens with rings between one and three months after surgery. Neuroadaptation, the process by which your brain learns to ignore competing optical signals, is documented in the peer-reviewed literature. Halos and mild loss of contrast in the early weeks usually reduce meaningfully by the three-month mark.

Not universally. It is Dr. Hamilton’s preference for some patients with prior corneal refractive surgery, because those eyes are harder to measure so in-office adjustment is an advantage. For patients with healthy, unoperated eyes, Dr. Hamilton often leans toward a lens with rings or a lens without rings (TECNIS PureSee), because both usually deliver an excellent and predictable outcome faster.

Yes, but off-label. None of the lenses discussed are FDA-approved specifically for RLE. All were approved for cataract surgery. Off-label use is a legally recognized part of ophthalmic practice, and the lens performs the same optically in both settings.

Every intraocular procedure carries risk. These include infection, inflammation, IOL dislocation, retinal detachment, and refractive outcomes that fall short of the target and may require a secondary procedure such as an IOL Exchange, LASIK or PRK. In general the risk of these secondary procedures being required is 1-2%. Dr. Hamilton reviews individual risks based on your eye anatomy, prior surgeries, and general health.

1 Rampat R, Gatinel D. Multifocal and Extended Depth-of-Focus Intraocular Lenses in 2020. Ophthalmology. 2021;128(11):e164-e185. DOI: 10.1016/j.ophtha.2020.09.026. Supports: photic phenomena, contrast loss, and neuroadaptation as class-wide characteristics of ring-based IOL designs.

2 Rosa AM, Miranda ÂC, Patrício MM, et al. Functional magnetic resonance imaging to assess neuroadaptation to multifocal intraocular lenses. J Cataract Refract Surg. 2017;43(10):1287-1296. DOI: 10.1016/j.jcrs.2017.07.031. Supports: neuroadaptation timeline between three weeks and six months.

3 Zhang L, Lin D, Wang Y, et al. Comparison of Visual Neuroadaptations After Multifocal and Monofocal Intraocular Lens Implantation. Front Neurosci. 2021;15:648863. DOI: 10.3389/fnins.2021.648863. Supports: resting-state fMRI confirmation of neuroadaptation patterns.

4 Johnson & Johnson Surgical Vision. TECNIS Odyssey IOL product information. URL: https://www.jnjvisionpro.com/en-eu/products/tecnis-odyssey/. Supports: the halo, glare, and starburst outcome cited in the body — 93% of patients experienced none or mild halos, glare, or starbursts at one month post-op (n=96, retrospective real-world analysis, values rounded). Taken from J&J’s TECNIS Odyssey manufacturer product information; confirm against the current FDA-cleared Directions for Use before publishing.

5 Savini G, Galzignato A, Coutinho CP, et al. Influence of preoperative variables on the 3-month functional outcomes of the Vivity extended depth-of-focus intraocular lens: a prospective case series. Eye Vis (Lond). 2025;12(1):8. DOI: 10.1186/s40662-024-00424-y. Supports: contrast and range outcomes for the extended depth of focus lens category. Framing note: single-arm prospective series.

6 Jones M, Terveen DC, Berdahl JP, et al. Clinical outcomes of the light-adjustable lens in eyes with a history of prior corneal refractive surgery. J Cataract Refract Surg. 2024;50(9):936-941. DOI: 10.1097/j.jcrs.0000000000001481. Supports: LAL performance in eyes with prior refractive surgery.

7 Wong JR, Folden DV, Wandling GR, et al. Visual Outcomes of a Second-Generation, Enhanced UV Protected Light Adjustable Lens in Cataract Patients with Previous LASIK and/or PRK. Clin Ophthalmol. 2023;17:3379-3387. DOI: 10.2147/OPTH.S432457. Supports: LAL 20/20 uncorrected results in patients with prior LASIK or PRK.

8 Khoramnia R, Naujokaitis T. Patient selection for multifocal intraocular lenses. Klin Monbl Augenheilkd. 2025;242(7):767-780. DOI: 10.1055/a-2519-4324. Supports: counseling as a predictor of multifocal IOL satisfaction.