Floating optic accommodating intraocular lens
An accommodating intraocular lens comprising a flexible body, a flexible optic which is moveable anteriorly and posteriorly relative to the lens body, and a weakened portion connecting the optic to the body. The body may have extending centration and fixation loops on its distal ends.
1. An uniplanar accommodating intraocular lens comprising an elongated flexible lens body evenly spaced from and completely surrounding and suspending a flexible floating optic for allowing the optic to move anteriorly and posteriorly relative to the body, the elongated flexible body defined by two opposed hinged solid flat haptic plates having V-shaped hinges, the hinges are straight across the body at opposite edges of the optic, the flexible optic being symmetrically mounted to the body by a plurality of thin flexible straps disposed between the optic and the body, the straps being approximately 0.5 mm long radially and approximately 0.1 mm thick, and the lens body including a plurality of open fixation and centration loops attached to opposite ends of the body, the intraocular lens being designed for the floating optic to move in a piston fashion in response to a pressure gradient created with accommodation, wherein the optic is constructed to optically deform with ciliary muscle contraction, and wherein the lens body has anterior projections to separate the anterior human lens capsule from the lens body, thereby creating a space for the optic to move forward upon ciliary muscle contraction.
2. A lens as in claim 1 wherein the hinges allow the lens optic and body to move forward and backward relative to said opposite ends of the body.
3. A lens as in claim 1 wherein the optic is constructed to optically deform, with ciliary muscle contraction, to enhance near vision.
4. An uniplanar accommodating intraocular lens comprising an elongated flexible lens body evenly spaced from and completely surrounding and suspending a flexible floating optic for allowing the optic to move anteriorly and posteriorly relative to the body, the elongated flexible body defined by two opposed hinged solid flat haptic plates having V-shaped hinges, the hinges are straight across the body at opposite edges of the optic, the flexible optic being symmetrically mounted to the body by a plurality of thin flexible straps disposed between the body and the optic to essentially create a “piston” optic, each strap being approximately 0.5 mm long radially and approximately 0.1 mm thick, and the lens including a plurality of open fixation and centration loops attached to opposite ends of the body, the intraocular lens being designed for the floating optic to move in a piston fashion in response to a pressure gradient created with accommodation, wherein the optic is constructed to optically deform with ciliary muscle contraction, and wherein the lens body has anterior projections to separate the anterior human lens capsule from the lens body, thereby creating a space for the optic to move forward upon ciliary muscle contraction.
5. A lens as in claim 4 wherein the hinges allow the lens optic and body to move forward and backward relative to said opposite ends of the body.
6. A lens as in claim 4 wherein the optic is constructed to optically deform, with ciliary muscle contraction, to enhance near vision.