Method for laser correction of refractive errors of an eye with a thin cornea
The present invention relates to a method of altering the refractive properties of the eye, the method including applying a substance to a cornea of an eye, the substance configured to facilitate cross linking of the cornea, irradiating the cornea so as to activate cross linkers in the cornea, and altering the cornea so as to change the refractive properties of the eye.
1. A method of altering the refractive properties of the eye, said method comprising:
forming a flap in a thin cornea that has a thickness of less than 480 microns, so as to expose one of the stroma and the Bowman's Layer of an eye;
after forming the flap in the thin cornea, applying a liquid suspension having nano particles of riboflavin to the one of the stroma and the Bowman's Layer of the eye, the nano particles facilitating cross linking of the one of the stroma and the Bowman's Layer of the thin cornea;
irradiating the thin cornea with at least one of ultraviolet light and microwaves so as to activate cross linkers in the thin cornea and thereby stiffen the thin cornea and prevent corneal ectasia in the thin cornea;
after the thin cornea has been stiffened by the activation of the cross-linkers, ablating a portion of the thin cornea underlying the flap so as to change the refractive properties of the eye; and further comprising waiting a predetermined time period after the thin cornea has been irradiated to allow for reduction or elimination of any amount of the photosensitizer that remains present in the thin cornea prior to the ablating of the thin cornea underlying the corneal flap.
2. The method of claim 1 , wherein the predetermined time period is between one and six weeks.
3. A method of altering the refractive properties of the eye, said method comprising:
forming a flap in a thin cornea of an eye so as to expose the stroma of the thin cornea underlying the flap, the thin cornea having a thickness of less than 480 microns;
after forming the flap in the thin cornea, applying nano particles of riboflavin to the stroma of the thin cornea underlying the flap, the riboflavin facilitating cross linking of the stroma of the thin cornea;
irradiating the thin cornea with at least one of ultraviolet light and microwaves so as to activate cross linkers in the thin cornea and thereby stiffen the thin cornea and prevent corneal ectasia in the thin cornea;
after the thin cornea has been stiffened by the activation of the cross-linkers, ablating the stroma of the thin cornea underlying the corneal flap using an excimer laser so as to change the refractive properties of the eye;
replacing the flap over the ablated stroma of the thin cornea, and further comprising waiting a predetermined time period after the thin cornea has been irradiated to allow for reduction or elimination of any amount of the photosensitizer that remains present in the thin cornea prior to the ablating of the stroma of the cornea underlying the corneal flap.
4. The method of claim 3 , wherein the predetermined time period is between one and six weeks.