Method for designing, evaluating and optimizing ophthalmic lenses and laser vision correction
The present invention relates generally to lens design and, more particularly, to a method for designing, evaluating and optimizing ophthalmic lenses and laser vision correction in order to optimally manage issues resulting from, or related to, halos.
1. A method comprising steps of:
obtaining corneal aberration data by measuring corneal aberrations of a patient's eye having a halo and having a multifocal intraocular lens implanted therein;
utilizing the corneal aberration data in a first eye model to calculate a simulated halo image, and wherein the first eye model is further comprised of a multifocal intraocular lens;
providing a reference halo or a set of reference halos produced from a second eye model having the multifocal intraocular lens of the first eye model and having corneal aberrations that are different than the corneal aberrations of the patient's eye or having no corneal aberrations;
comparing the simulated halo image to the reference halo or the set of reference halos;
determining, based on the comparison of the simulated halo image to the reference halo or the set of reference halos, whether the halo results from the corneal aberrations of the patient's eye; and
determining a laser vision correction to be applied to the patient to modify the corneal aberrations of the patient's eye to reduce the halo, the laser vision correction being determined based on the comparison of the simulated halo image to the reference halo or the set of reference halos.
2. The method of claim 1 , wherein the reference halo or the set of reference halos demonstrate dysphotopsia.
3. The method of claim 1 , wherein calculating the simulated halo image includes determining a halo size, a halo shape, and a halo intensity.
4. The method of claim 1 , further comprising a step of applying the determined laser vision correction to the patient's eye.
5. The method of claim 1 , further comprising utilizing an extended light source to calculate the simulated halo image.
6. The method of claim 5 , wherein calculating the simulated halo image includes calculating a point spread function from the first eye model and convolving the point spread function with the extended light source.
7. The method of claim 1 , wherein the first eye model is of the patient's eye.
8. The method of claim 1 , further comprising a step of producing the reference halo or the set of reference halos.
9. The method of claim 1 , wherein the step of determining the laser vision correction includes determining the laser vision correction that will minimize the halo.