Patent classifications
G02C7/048
ORTHOKERATOLOGY LENS DESIGNATING METHOD, DESIGNATING SYSTEM, DESIGNATING AND SUPPLYING METHOD, AND DESIGNATING AND SUPPLYING SYSTEM
A selecting device, database server, lens designating server, and terminal device. Selecting device includes device for acquiring movement data of orthokeratology lens mounted on and moving on cornea, and assessing device which uses lens movement data to determine which orthokeratology lens is appropriate for patient. Correction data of the lens, patient data including data of cornea, and data that indicates which stage of a plurality of correction stages the lens is to be mounted on cornea, are output to server to build a database. Terminal device includes patient data acquiring device and patient stage data accepting means, and is capable of transmitting patient data and patient stage data to lens designating server configured to retrieve from database a lens having data that are the same, as or close to, the received patient data and patient stage data, and to designate retrieved lens as orthokeratology lens to be used for patient.
SOFT CONTACT LENS WITH NEW STABILIZATION ZONES FOR IMPROVED ANGULAR STABILITY AND COMFORT
Ophthalmic lenses are described herein. An example ophthalmic lens may comprise a first surface. The example ophthalmic lens may comprise a second surface disposed opposite the first surface. The second surface may be configured to abut at least a portion of an eye of a wearer. The example ophthalmic lens may comprise a lens stabilization zone disposed adjacent the first surface. At least a contour of the lens stabilization zone may be configured to minimize a recovery time for the ophthalmic lens to orient to a resting position from a misaligned position.
SOFT CONTACT LENS WITH REDUCED VOLUME VARIATION
Ophthalmic lenses are described herein. An example ophthalmic lens may comprise a first surface. The example ophthalmic lens may comprise a second surface disposed opposite the first surface and defining a volume of lens material therebetween. The ophthalmic lens may exhibit a first cylinder power. A difference of the volume of lens material of the ophthalmic lens and a volume of lens material of a comparative lens may be minimized. The comparative lens may consist essentially of the same lens material as the ophthalmic lens and exhibit a second cylinder power different from the first cylinder power.
High plus treatment zone lens design and method for preventing and/or slowing myopia progression
Contact lenses incorporate high plus or add power profiles that at least one of slow, retard or preventing myopia progression and minimize halo effect. The lens includes a center zone with a negative power for myopic vision correction; and at least one treatment zone surrounding the center zone, the at least one treatment zone having a power profile that increases from an outer margin of the center zone to a positive power within the at least one treatment zone of greater than +5.00 D.
High plus treatment zone lens design and method for preventing and/or slowing myopia progression
Contact lenses incorporate high plus or add power profiles that at least one of slow, retard or preventing myopia progression and minimize halo effect. The lens includes a center zone with a negative power for myopic vision correction; and at least one treatment zone surrounding the center zone, the at least one treatment zone having a power profile that increases from an outer margin of the center zone to a positive power within the at least one treatment zone of greater than +5.00 D.
SOFT CONTACT LENS COMPRISING A LENTICULAR IN A SUPERIOR PORTION OF THE CONTACT LENS WITH ENHANCED TEAR EXCHANGE
Disclosed herein is a soft contact lens comprising a lenticular in a superior portion of the contact lens wherein the contact lens attaches to an upper eyelid of a wearer by the lenticular interacting with an upper tarsal plate of the upper eyelid of a wearer, wherein the contact lens is configured to provide one or more of an enhanced tear exchange, a greater tear layer thickness, or increased oxygen uptake of a cornea of a wearer.
COMFORT-OPTIMIZED CONTACT LENS SYSTEM FOR NON-ROTATIONALLY SYMMETRIC EYE ABERRATION
A system of contact lenses includes at least two contact lenses, each lens having a visual correction for a non-rotationally symmetric eye aberration. Each lens has a different level or degree of a stabilization that is characterized by a thickness differential between a thickness of a stabilization zone and a thickness of a non-stabilization zone.
FRICTION STABILIZED CONTACT LENSES
A contact lens incorporating one or more surface modified zones on the anterior surface of the lens may be utilized to generate a friction driven rotational force when the upper and/or lower eyelids pass over the one or more regions during blinking. A small difference in the coefficient of friction between the modified and unmodified regions of the lens may result in an equivalent rotational force to that of a thickness gradient lens. This small difference in the coefficient of friction produces a means to orient and stabilize the contact lens on eye.
CONTACT LENS AND CONTACT LENS ASSEMBLY
A contact lens and a contact lens assembly are provided. The contact lens includes a lens and a deformation unit. The lens configured to be worn in a human eye. The deformation unit is mounted to the lens and configured to deform according to a deformation voltage to make the lens deformed.
Mold for contact lens with non-rotationally symmetric rim or edge
A mold for a front curve of an ophthalmic lens includes an inner region having a non-rotationally symmetric shape, an outer region having a rotationally symmetric shape, and a continuous middle region between the inner region and the outer region. A first portion of the middle region is in contact with the inner region, defining a non-rotationally symmetric rim or edge of a front surface of the ophthalmic lens. A second portion of the middle region is in contact with the outer region and is rotationally symmetrical.