Patents Assigned to BRIGHTEN OPTIX CORP.
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Patent number: 12675003Abstract: The present disclosure relates to contact lenses for use with eyes experiencing eye-length related disorders, like myopia with or without astigmatism. This invention relates to a contact lens for managing myopia with or without astigmatism: wherein the contact lens is configured with an optical zone defined substantially centred about its optical axis to provide a meridionally and azimuthally variant power distribution resulting, at least in part, in a foveal correction of the myopic eye and, at least in part, resulting in a conoid of partial blur at the retina of the myopic eye, serving as a directional cue or an optical stop signal; and a non-optical peripheral carrier zone about the optical zone configured with a invariant azimuthal thickness distribution, with or without rotation assisting features, to further provide temporally and spatially varying stop signals to decelerate, control, inhibit, or reduce the rate of myopia progression substantially consistent over time.Type: GrantFiled: December 11, 2020Date of Patent: July 7, 2026Assignees: Nthalmic Holding Pty Ltd, Brighten Optix Corp.Inventors: Ravi Chandra Bakaraju, Klaus Ehrmann, Darrin Falk, Richard I Tsung Wu
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Patent number: 12379610Abstract: Orthokeratology lens that uses aspheric E value to control tear height to sloe down the growth rate of the eyeball. The lens includes treat treatment zone through which light passes to image at retina of eyeball and positioning zone of non-visual area outside treatment zone. The treatment zone includes base curve and reverse curve formed on outside of base curve. The positioning zone includes alignment curve and peripheral curve located outside alignment curve. Center point is formed in center of base curve, junction of base curve and reverse curve forms first point of intersection, junction of reverse curve and alignment curve forms second point of intersection, and junction of alignment curve and peripheral curve forms third point of intersection. Linear distance between center point and cornea of preset eyeball is between 9 ?m and 21 ?m. Linear distance between first point of intersection and cornea of preset eyeball is between 89 ?m and 189 ?m.Type: GrantFiled: June 1, 2022Date of Patent: August 5, 2025Assignee: BRIGHTEN OPTIX CORP.Inventors: I-Tsung Wu, Wen-Pin Lin, Wen-Kai Li
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Patent number: 12345961Abstract: The present disclosure generally relates to contact lenses for use with eyes experiencing eye-length related disorders, like myopia. This invention relates to contact lens for managing myopia wherein the contact lens comprises of an optical zone about an optical axis and a non-optical peripheral carrier zone about the optical zone; wherein the optical zone is configured with a substantially single vision power profile providing correction for the eye, and a decentred second region configured with an astigmatic, or toric, or asymmetric power distribution, the second region located substantially away from the optical centre and configured to provide at least in part a regional conoid or interval of Sturm producing an optical stop signal for the eye; and wherein the non-optical peripheral carrier zone is configured with a thickness profile that is substantially rotationally symmetric to further provide a temporally and spatially varying stop signals to reduce myopia progression.Type: GrantFiled: September 23, 2020Date of Patent: July 1, 2025Assignees: Nthalmic Holding Pty Ltd, Brighten Optix Corp.Inventors: Ravi Chandra Bakaraju, Klaus Ehrmann, Fabian Conrad
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Patent number: 12298601Abstract: A myopia management soft contact lens design derive from analysis of overnight orthokeratology procedure that is to obtain the corneal height data before and after treatment according to reference position of cornea before and after treatment by mathematical calculation and then superimpose data with reference position of cornea, and then obtain corresponding central optical zone size and peripheral treatment zone size by obtaining the difference between corneal changes before and after treatment using corneal height data and tangential curvature data, and then calculate power change data before and after corneal treatment by using position of central optical zone and peripheral treatment zone to match the axial curvature data, the algorithm, and then use the power change data to distinguish different myopia power correction ranges to analyze the corresponding different power profile, and then apply this power profile to front curved surface of lens for the manufacture of soft contact lenses.Type: GrantFiled: February 1, 2022Date of Patent: May 13, 2025Assignee: BRIGHTEN OPTIX CORP.Inventors: Richard I Tsung Wu, Wen-Pin Lin, Lo-Yu Wu
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Patent number: 12197046Abstract: An aspheric lens includes a treatment zone through which light passes to image at the retina of eyeball and a positioning zone of non-visual area outside treatment zone. The treatment zone includes a base curve and a reverse curve formed on outside of base curve. The positioning zone includes an alignment curve and a peripheral curve located outside alignment curve. A center point is formed in center of base curve, the junction of base curve and reverse curve forms a first point of intersection, the junction of reverse curve and alignment curve forms a second point of intersection, and the junction of alignment curve and peripheral curve forms a third point of intersection. The linear distance between the center point and the cornea of the preset eyeball is between 9 ?m˜21 ?m. The linear distance between the first point of intersection and the cornea of the preset eyeball is between 89 ?m˜189 ?m.Type: GrantFiled: March 29, 2022Date of Patent: January 14, 2025Assignee: BRIGHTEN OPTIX CORP.Inventors: I-Tsung Wu, Wen-Pin Lin, Wen-Kai Li
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Patent number: 11378820Abstract: An aspheric lens using an E-value to control an eyeball growth rate and a method of manufacturing the same are disclosed. A treatment zone of the aspheric lens includes a base curve having non-zero eccentricity, and the base curve can make the image shell formed on a retina have non-zero eccentricity, so as to increase a peripheral defocus area formed on the retina to effectively control myopia or hyperopia, thereby achieving the purpose of correcting myopia or hyperopia.Type: GrantFiled: December 9, 2019Date of Patent: July 5, 2022Assignee: BRIGHTEN OPTIX CORP.Inventor: I-Tsung Wu
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Patent number: 10558061Abstract: A lens with star-shaped optical zone to increase defocus image area is disclosed. The lens includes a central optical area to pass light to image on central imaging area of retina; a peripheral optical area formed around the central optical area and configured to pass light to image on a peripheral image blurring area on peripheral of the central imaging area; a star-shaped optical zone formed on the surface of the central optical area and configured to pass light to clearly image on the central imaging area; and a defocus area formed on a portion of the central optical area other than the optical zone. The defocus area can be used to increase defocus image area of the central imaging area, to extend a range of the optical area having defocus effect on the retina without the need to excessively increasing the defocus power of the lens.Type: GrantFiled: May 31, 2018Date of Patent: February 11, 2020Assignee: Brighten Optix Corp.Inventor: I-Tsung Wu
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Patent number: 10216007Abstract: Contact lens includes central optical zone for clearly focusing image of incident light onto retina clear central image region of user's eyeball and peripheral optical zone surrounding central optical zone, and one or multiple moiré portions located on peripheral optical zone for focusing the image of incident light onto peripheral out-of focus region of retina of user's eyeball. The moiré portions are processed by: using an aberrometer to measure aberration of retina of user's eyeball and to further generate a three-dimensional image map, dividing the three-dimensional image map into clear central image region and peripheral out-of focus region, and then using an aberration correction software to calculate the power of sphere and the power and axis of cylinder on contact lens and then inputting the three-dimensional image map into processing machine for enabling the processing machine process the desired moiré portions on contact lens according to the three-dimensional image map.Type: GrantFiled: July 12, 2016Date of Patent: February 26, 2019Assignee: BRIGHTEN OPTIX CORP.Inventor: I-Tsung Wu