Implantation of premium monofocal IOL, LuxSmart (device under investigation)
DevicePatients will be implanted with study IOL in both eyes
NCT Number: NCT06105190
This study is a multicentric, prospective, randomised, controlled, post-market clinical follow up (PMCF) study to investigate safety, visual outcomes and contrast sensitivity after bilateral implantation of either LuxSmart IOLs (study group) or LuxGood IOLs (control group).
This study is active but is not currently recruiting participants.
Notify Me22 year and older
All sexes
Interventional
Not applicable
Univ.-Klinik fuer Augenheilkunde und Optometrie, Vienna, Austria
This study is a multicentric, prospective, randomised, controlled, post-market clinical follow up (PMCF) study whereby subjects undergoing routine cataract surgery will have bilateral implantation of either LuxSmart IOLs (study group) or LuxGood IOLs (control group).
The subjects will be randomized in a 1:1 ratio to receive the study or control lenses.
Both study and control IOLs, are CE approved The study and control IOLs, and all devices used for the study examinations, will be used within the intended use specifications from the manufacturer. In addition, no invasive or other burdening examinations will occur for the subject.
The study device (LuxSmart) is a hydrophobic, premium monofocal intraocular lens (IOL) manufactured by the sponsor of this study. The control lens (LuxGood) is the monofocal parent lens sharing the same material and optic design but with slight differences in the optic design. The IOLs will be implanted as part of the routine cataract surgery on subjects suffering from cataract. The targeted study cohort represents the standard subject cohort for cataract surgery.
In total 238 subjects will be enrolled for this clinical study and receive bilateral implantation of the study or control lens based on a 1:1 randomization given by the EDC.
Subjects participating in the trial will attend a total of 6 to 10 study visits (1 preoperative, 1 or 2 operative and 4 - 7 postoperative visits that may be carried out at the same day if requirements allow) over a period of 6 months.
Data analyses will be performed after the last patient finished the 120-180 days postoperative examination.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
In addition to above mentioned in- and exclusion criteria, subjects shall be discontinued when certain conditions are present at the time of surgery, including:
Patients will be implanted with study IOL in both eyes
Patients will be implanted with Control IOL in both eyes
Time frame: 120-180 days postoperative
The primary safety endpoint is to show that the mean monocular Corrected Distance Visual Acuity (CDVA) at at 120-180 days postoperative is statistically non-inferior to outcomes obtained in the control group using a non-inferiority margin of 0.1 logMAR, a 1-sided test and a significance level of 0.05. This analysis will be done for first implanted eyes as well as all implanted eyes per subject.
Time frame: 120-180 days postoperative
The co-primary safety endpoint is to compare the outcomes on monocular contrast sensitivity under mesopic light conditions (with and without glare) between the study and the control group at 120-180 days postoperative. This analysis will be done for first implanted eyes per subject.
The following Log Contrast Sensitivity Analysis will be performed:
Time frame: 120-180 days postoperative
The co-primary safety endpoint is to compare the outcomes on monocular contrast sensitivity under mesopic light conditions (with and without glare) between the study and the control group at 120-180 days postoperative. This analysis will be done for first implanted eyes per subject.
The following Log Contrast Sensitivity Analysis will be performed:
Time frame: 120-180 days postoperative
The co-primary safety endpoint is to compare the outcomes on monocular contrast sensitivity under mesopic light conditions with glare between the study and the control group at 120-180 days postoperative. This analysis will be done for first implanted eyes per subject.
The following Log Contrast Sensitivity Analysis will be performed:
Time frame: 120-180 days postoperative
The co-primary safety endpoint is to compare the outcomes on monocular contrast sensitivity under mesopic light conditions without glare between the study and the control group at 120-180 days postoperative. This analysis will be done for first implanted eyes per subject.
The following Log Contrast Sensitivity Analysis will be performed:
Time frame: 120-180 days postoperative
The objective is to compare best corrected distance visual acuities (CDVA) above defined thresholds of the investigational product to the normative data stated in the according ISO norm (EN ISO 11979-7:2018) for posterior chamber intraocular lenses.
Time frame: 120-180 days postoperative
The objective is to compare the SPE (Safety and Performance Endpoints) rates of the investigational product to reference data stated in the according ISO standard for posterior intraocular lenses (EN ISO 11979-7:2018) based on minimum 100 subjects.
Time frame: 120-180 days postoperative
The incidence of all Serious Adverse Events, including Secondary Surgical Interventions (SSIs) related to the optical properties of the IOL, in first-implanted eyes as well as all implanted eyes will be collected through Post-Operative Visit 4 (120 to 180 days after first and second eye implantation).
The proportion of first implanted eyes and all implanted eyes with at least one serious adverse event will be summarized using categorical summary statistics by treatment received. Each eye will be counted only once in the calculation of the rate.
There is no statistical hypothesis associated with the proportion of first implanted eyes with at least one serious adverse event.
Time frame: 120-180 days postoperative
The rate of SSIs related to the optical properties of the IOL for first-implanted eyes as well as all implanted eyes will be reported through 120 to 180 days after first and second eye implantation.
Secondary surgical interventions related to the optical properties of the IOL will be defined as IOL explantation, replacement, or repositioning due to subject intolerance of visual symptoms not adequately improved by spectacle correction. Each eye will be classified as either having undergone a secondary surgical intervention related to the optical properties of the IOL or not having undergone such an intervention. Secondary surgical interventions related to the optical properties of the IOL will be summarized categorically (Yes, No) by actual treatment received in a table.
Time frame: 120-180 days postoperative
The primary efficacy endpoint is to show that the monocular Distance Corrected Intermediate Visual Acuity (DCIVA) at 120-180 days postoperative is statistically superior to outcomes obtained in the control group (1 sided test using significance of 0.025). To avoid bias, only the first implanted eye per subject will be considered for this calculation.
Time frame: 120-180 days postoperative
One co-primary efficacy endpoint is to show that the outcomes of the study device on monocular Distance Corrected Intermediate Visual Acuity (DCIVA) at 66 cm at 120-180 days postoperative needs to have at least 50% of eyes achieving 0.2 logMAR or better. To avoid bias, only the first implanted eye per subject will be considered for this calculation.
Time frame: 120-180 days postoperative
Monocular best-corrected distance defocus testing will be performed. The defocus range where the mean visual acuity of 0.2 logMAR or better is achieved will be derived by visual inspection of the mean defocus curve. The monocular depth of focus is defined as the defocus range from zero to the first negative vergence level, where the visual acuity is 0.2 logMAR or less.
One co-primary efficacy endpoint is to show that the monocular depth of focus for the eyes implanted with the study device is at least 0.5 D greater than the depth of focus for the eyes implanted with the control device at 0.2 logMAR.
Time frame: 120-180 days postoperative
The objective is to compare best corrected distance visual acuities (CDVA) above defined thresholds of the investigational product to the normative data stated in the according ISO norm (EN ISO 11979-7:2018) for posterior chamber intraocular lenses.
Time frame: 120-180 days postoperative
Secondary performance endpoint is to show a statistically significant increase between pre-and postoperative findings on monocular Distance Corrected Near Visual Acuity (DCNVA) under photopic light conditions on the first implanted eye.
Time frame: 120-180 days postoperative
Secondary performance endpoint is to show a statistically significant increase between pre-and postoperative findings on monocular Distance Corrected Intermediate Visual Acuity (DCIVA) under photopic light conditions on the first implanted eye.
Time frame: 120-180 days postoperative
In addition to the co-primary study endpoint on monocular defocus, binocular best-corrected distance defocus testing will be performed. The defocus range where the mean visual acuity of 0.2 logMAR or better is achieved will be derived by visual inspection of the mean defocus curve.
The monocular depth of focus for the eyes implanted with the study device needs to be at least 0.5 D greater than the depth of focus for the eyes implanted with the control device at 0.2 logMAR [4].
All measured outcomes data will be statistically compared to outcomes obtained in the control group.
Time frame: Preoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The manifest refraction is measured by means of a phoropter. The data contains values for sphere, cylinder and axis of cylinder according to ISO 11979-7:2018. This data will also be used to calculate the manifest refractive spherical equivalent (MRSE)
Time frame: 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The predictability of the postoperative manifest refraction will be evaluated using the absolute value of the adjusted MRSE calculated by the following formula:
MRSEadjusted = MRSEpostop - MRSEtarget.
Time frame: Preoperative, 1-2 days postoperative; 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
Monocular UDVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 4m distance according to ISO 11979-7:2018. This assessment is done monocularly under photopic light conditions.
Time frame: 120-180 days postoperative
Binocular UDVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 4m distance according to ISO 11979-7:2018. This assessment is done binocularly under photopic light conditions.
Time frame: Preoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
Monocular CDVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 4m distance with best aided corrective glasses according to ISO 11979-7:2018. This assessment is done monocularly under photopic light conditions.
Time frame: 120-180 days postoperative
Monocular CDVA using low contrast (10%) optotypes is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 4m distance with best aided corrective glasses according to ISO 11979-7:2018. This assessment is done monocularly under photopic light conditions. This test is performed using a low-contrast acuity chart with 10% contrast (using the Weber definition: [background - optotype]/background).
Time frame: 120-180 days postoperative
Binocular CDVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 4m distance with best aided corrective glasses according to ISO 11979-7:2018. This assessment is done binocularly under photopic light conditions.
Time frame: 30-60 days postoperative, 120-180 days postoperative
Monocular UIVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 66cm distance according to ISO 11979-7:2018. This assessment is done monocularly under photopic light conditions.
Time frame: 120-180 days postoperative
Binocular UIVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 66cm distance according to ISO 11979-7:2018. This assessment is done binocularly under photopic light conditions.
Time frame: 120-180 days postoperative
Binocular UNVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 40cm distance according to ISO 11979-7:2018. This assessment is done binocularly under photopic light conditions.
Time frame: 30-60 days postoperative, 120-180 days postoperative
Monocular DCIVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 66cm distance with corrective glasses for far distance according to ISO 11979-7:2018. This assessment is done monocularly under photopic light conditions.
Time frame: 120-180 days postoperative
Monocular DCIVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 66cm distance with corrective glasses for far distance according to ISO 11979-7:2018. This assessment is done monocularly under mesopic light conditions.
Time frame: 120-180 days postoperative
Monocular DCIVA using low contrast (10%) optotypes is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 66cmm distance with corrective glasses for far distance according to ISO 11979-7:2018. This assessment is done monocularly under photopic light conditions. This test is performed using a low-contrast acuity chart with 10% contrast (using the Weber definition: [background - optotype]/background).
Time frame: 120-180 days postoperative
Binocular DCIVA is measured using the Clinical Trial Suite (M&S Technologies, Niles, USA) placed in 66cm distance with corrective glasses for far distance according to ISO 11979-7:2018. This assessment is done binocularly under photopic light conditions.
Time frame: 120-180 days postoperative
Binocular DCNVA is measured with ETDRS charts placed in 40cm distance with corrective glasses for far distance according to ISO 11979-7:2018. This assessment is done binocularly under photopic light conditions.
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
Subject ocular and visual symptoms are collected at each postoperative visit through the use of non-directed questions. Responses will be recorded and characterized by severity (mild, moderate, severe) and divided into distinct groups of symptoms (halo, glare, ocular pain, ocular dryness, other).
The percentage of eyes with ocular and visual symptoms will be reported divided into the mentioned severity levels and symptom groups. No scoring or scaling is used for this type of symptom assessment. All data obtained in the study group will be statistically compared to outcomes obtained in the control group.
Time frame: 30-60 days postoperative, 120-180 days postoperative
To assess the subjective perception of disturbances by photic phenomena, the validated and verified Quality of Vision (QoV) questionnaire will be used.
This questionnaire is a linear-scaled 30-item instrument and is designed with 10 symptoms rated in each of three scales (frequency, severity, and bothersome). Each of the three scales provides 4 answer options with the first answer being the best outcome and the 4th answer being the worst outcome:
Based on the given answers, a QoV score in terms of symptom frequency, severity, and bothersome is calculated. The score ranges from 0 to 100 with 100 being the worst possible outcome.
Time frame: 30-60 days postoperative, 120-180 days postoperative
To assess if difficulties in daily life occur due to impaired sight. This questionnaire is a 9-item Rasch-scaled instrument to assess subjective perception of visual impairment after surgery.
Each item has 4 answer options ranging from 'Yes, very great difficulty' to 'No, no difficulty'. with first answer being the best outcome and the last answer being the worst outcome. In addition, the subjects can state, that they cannot decide on the answer.
The percentage of subjects per item will be reported per answer option. No scoring or scaling is used for this type of symptom assessment. All data obtained in the study group will be statistically compared to outcomes obtained in the control group.
Time frame: preoperative, 120-180 days postoperative
Photopic pupil diameters are measured with a ruler allowing for a precision of at least +/-0.5 mm. In addition to the measurement with a ruler, pupil diameters under photopic light conditions will be recorded from the preoperative Pentacam measurement.
For the photopic pupil diameters, eye illumination should be identical to that used for photopic contrast sensitivity testing. Pupil measurements should only be made after the eye has had time to fully adapt to the testing conditions (at least 5 minutes).
The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: preoperative, 120-180 days postoperative
Mesopic pupil diameters are measured with a ruler allowing for a precision of at least +/-0.5 mm. For the mesopic pupil diameters, eye illumination should be identical to that used for mesopic contrast sensitivity testing. Pupil measurements should only be made after the eye has had time to fully adapt to the testing conditions (at least 5 minutes).
The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: preoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: Preoperative, 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: Preoperative, 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: Preoperative, 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: preoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The slitlamp examination is one examination to analyse the integrity of eye structures and the implanted IOL. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
With the slitlamp the ophthalmologist can observe the eyes stereoscopically. A focussed slit of light, which can be width-adjusted, is projected on the eye to be examined. The investigator observes this projection on the eye through a reflected light microscope. The slitlamp is used to observe the anterior and posterior part of the eye, including cornea, lens and anterior chamber. By dilating the pupil the fundus can also be examined. Following conditions shall be examined with the slitlamp:
Time frame: Preoperative, 1-2 days postoperative, 7-14 days postoperative, 30-60 days postoperative, 120-180 days postoperative
The IOP will be measured with non-contact tonometer as part of the routine follow up examinations. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: Preoperative
Keratometric measurements are performed to calculate the required IOL power. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: during surgery
The power of the implanted IOL will be recorded.
Time frame: during surgery
The target refraction given by the IOL calculator is recorded. This parameter is needed to calculate the accuracy of achieving the target refraction. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: Preoperative
An OCT (optical coherence tomography) image will be taken at the preoperative visit to identify AMD suspicious eyes that need to be excluded from this study. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: Preoperative
Biometry measurements are performed to calculate the required IOL power. The examination is performed and documented according to the guidelines in ISO 11979-7:2018.
Time frame: Preoperative
Pentacam device (Oculus, Germany) will be used to perform corneal topography. This examination is needed to exclude patients showing an irregular corneal astigmatism.
Time frame: Preoperative
Pentacam device (Oculus, Germany) will be used to perform corneal aberrometry measurement. The following values will be evaluated in this study: Spherical aberrations, high order aberrations.
Time frame: 30-60 days postoperative
A Halo and Glare simulator software (Eyeland Design Network GmbH, Germany) will be used to assess the subjective perception of photic phenomena. The patients will be asked to adjust the halo and glare level in a simulated image to the amount they perceive of such photic phenomena. The scaling ranges from 0 to 100 with 0 indicating no halo or glare and 100 being the worst outcome.
All data obtained in the study group will be statistically compared to outcomes obtained in the control group.
Cutting Edge SAS
Industry
Prospective, Multicenter, Controlled, Randomized, Masked Study to Evaluate the Safety and Performance of LuxSmart IOL as Compared With LuxGood IOL In Subjects Undergoing Cataract Extraction
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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