IP Library Granted Patent US 8,029,136
Granted Patent B2
US 8,029,136 · App. 12/732,476 · Granted Oct 4, 2011

Method and device for performing online aberrometry in refractive eye correction

Assignee: Carl Zeiss Meditec AG
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Quick Facts
Patent No.
US 8,029,136
App. No.
12/732,476
Granted
Oct 4, 2011
Kind
B2
Abstract

A device for correcting visual defects of an eye comprises a coherent light source, a beam modification device for shaping and deflecting a beam of the coherent light source, and a wavefront analyzer device for analyzing a wavefront of an optical path in the eye.

Claims (20)

1. A device for correcting visual defects of an eye comprising:

a femtosecond laser configured to generate a pulsed laser beam having femtosecond pulses;

a beam modification device configured to shape and deflect the pulsed laser so as to process at least one of an intraocular lens and an eye lens;

a wavefront analyzer device configured to analyze a wavefront of an optical path in the eye and to generate wavefront signals indicative of the wavefront; and

a control unit configured to process the wavefront signals of the wavefront analyzer device and to control the femtosecond laser and the beam modification device based on the wavefront signals so as to perform a refractive correction.

2. The device as recited in claim 1 , wherein the control unit is configured to process the signals simultaneously with the processing of at least one of the intraocular lens and the eye lens.

3. The device as recited in claim 1 , wherein the control unit is configured to calculate a plurality of shot positions needed for processing the intraocular lens or eye lens based on the wavefront analysis.

4. The device as recited in claim 1 , further comprising a topography analyzer configured to generate topography signals indicative of a topography of the intraocular lens or eye lens and wherein the control unit is configured to process the topography signals and the wavefront signals.

5. The device as recited in claim 4 , wherein the beam modification device is configured to process at least one of the intraocular lens and the eye lens so as to form an ideal optical system.

6. A method for correcting visual defects of an eye comprising:

generating a pulsed laser beam having femtosecond pulses using a femtosecond laser;

shaping and deflecting the pulsed laser using a beam modification device so as to process at least one of an intraocular lens and an eye lens;

analyzing a wavefront of an optical path in the eye using a wavefront analyzer device;

generating wavefront signals indicative of the wavefront;

processing signals of the wavefront analyzer device using a control unit; and

controlling the femtosecond laser and the beam modification device using the control unit based on the wavefront signals so as to perform a refractive correction.

7. The method as recited in claim 6 , wherein the processing of at least one of the intraocular lens and the eye lens and the processing the signals of the wavefront analyzer are performed simultaneously.

8. The method as recited in claim 6 , further comprising calculating a plurality of shot positions needed for processing the intraocular lens or eye lens based on the wavefront analysis.

9. The method as recited in claim 8 , further comprising generating topography signals indicative of a topography of the intraocular lens or eye lens using a topography analyzer and processing the topography signals and the wavefront signals using the control unit.

10. The method as recited in claim 9 , wherein the processing of at least one of the intraocular lens and the eye lens includes reshaping at least one of the intraocular lens and the eye lens into an ideal optical system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2010
From: DICK, MANFRED; SCHROEDER, ECKHARD; FIEDLER, JOACHIM
To: CARL ZEISS MEDITEC AG
Reel/Frame 024649/0639 →
Priority Claims (1)
DE 199 38 203 · Aug 11, 1999 · national
Continuity (3)
Continuation 11019964 · Dec 22, 2004
Continuation 09807227
Related Publication 20100274233A1 · Oct 28, 2010