EP1737372A2

Integrated surgical microscope and wavefront sensor

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 20 April 2025, 1.4 years ago.

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70 claims: 17 independent, 53 dependent

  1. 1
    Claims of equivalent WO 2005102200 A2 CLAIMS What is claimed is:1. A surgical device for measuring properties of an eye, comprising: a surgical microscope providing a first field of view;a wavefront sensor optically aligned with the surgical microscope and providing a second field of view, wherein the first field of view at least partially overlaps the second field of view;and at least one diffractive optical component in the wavefront sensor for producing a measurable image of a wavefront reflected from an eye positioned within an overlapping portion of the first and second fields of view.
  2. 18
    A surgical device, comprising:a surgical viewing device;a wavefront measuring device attached to the surgical viewing device to form an integrated surgical tool;and a balancing mechanism for suspending the integrated surgical tool above an object to be measured.
  3. 23
    A surgical device, comprising:means for magnifying an object;and means for measuring refractive properties of the object using at least one diffractive optical element, wherein the means for measuring is integrated with the means for magnifying such that a field of view of the means for measuring at least partially overlaps a field of view of the means for magnifying.
  4. 25
    A surgical device for measuring properties of an eye, comprising:a surgical microscope;a wavefront sensor, including at least one diffractive optical element, attached to the surgical microscope;and an aperture-sharing element in the wavefront sensor aligned with optical components in both the wavefront sensor and the surgical microscope.
  5. 26
    A method for measuring properties of an eye, comprising:generating a beam of light;directing the beam of light toward an eye positioned at a surgical location;receiving, via a wavefront sensor, a reflected wavefront from the eye;diffracting the wavefront, via at least one optical component in the wavefront sensor, to create a measurable image of the wavefront;viewing the eye at the surgical location via a surgical microscope;and performing a surgical procedure on the eye at the surgical location.
  6. 29
    A method for measuring properties of an eye, comprising:creating a measurable image of a wavefront reflected from the eye, via at least one diffractive optical component, while the eye is oriented at a gaze angle;and viewing the eye through a microscope while the eye remains oriented at the gaze angle.
  7. 33
    A method for measuring properties of an eye, comprising:directing a beam of light toward an eye;receiving, via a wavefront sensor, a reflected wavefront from the eye;passing the wavefront through at least one grating to create a measurable image of the wavefront;converting the measurable image into a computer-readable format;viewing the eye through a surgical microscope during at least one of the directing, receiving, passing, and converting steps;and performing a surgical procedure on the eye while viewing the eye through the surgical microscope.
  8. 35
    A method for replacing a natural lens of an eye, comprising:removing the natural lens from the eye while the eye is in a surgical position;measuring optical properties of the eye while the eye remains in the surgical position;and inserting an artificial lens into the eye while the eye remains in the surgical position.
  9. 44
    A method for inserting an artificial lens into an eye, comprising:measuring optical properties of the eye, while the eye is in a surgical position, to determine a target location for inserting the artificial lens;positioning the artificial lens in the eye while the eye remains in the surgical position;measuring optical properties of the eye, while the eye remains in the surgical position, to determine whether the artificial lens is properly positioned at the target location;and repositioning the artificial lens, while the eye remains in the surgical position, if it is determined that the lens is not properly positioned at the target location.
  10. 46
    A method for inserting corneal tissue into an eye, comprising:positioning the corneal tissue into an opening in the eye while the eye is in a surgical position;measuring refractive characteristics of the eye, while the eye remains in the surgical position, to determine whether any refractive aberrations resulted from the positioning process;suturing the corneal tissue into the eye while the eye remains in the surgical position;measuring refractive characteristics of the eye, while the eye remains in the surgical position, to determine whether any refractive aberrations resulted from the suturing process;and adjusting the positioning of the corneal tissue, or the tightness of one or more of the sutures, or both, if it is determined that any refractive aberrations resulted from either or both of the positioning and suturing processes.
  11. 49
    A method for replacing a corneal flap of an eye after treatment has been administered to the cornea, comprising:positioning the corneal flap over the cornea while the eye is in a surgical position;measuring optical properties of the eye, while the eye remains in the surgical position, to determine whether the flap is properly positioned;and repositioning the corneal flap if it is determined that the flap is improperly positioned.
  12. 50
    A method for modifying a cornea of an eye, comprising:measuring refractive properties of the eye while the eye is in a surgical position;applying at least one energy pulse to the cornea, while the eye remains in the surgical position, to modify the refractive properties of the eye;measuring the modified refractive properties of the eye, while the eye remains in the surgical position, to determine whether the application of additional energy pulses is required to achieve a desired refractive condition of the eye;and applying at least one additional energy pulse to the cornea, while the eye remains in the surgical position, if it is determined that one or more additional energy pulses are required to achieve the desired refractive condition of the eye.
  13. 57
    A method for inserting an inlay into a cornea of an eye, comprising:creating a flap on the cornea while the eye is in a surgical position;determining, via a measuring device, a visual axis of the eye while the eye remains in the surgical position;positioning the inlay in the cornea at the visual axis of the eye while the eye remains in the surgical position.
  14. 62
    A method for shaping a cornea of an eye, comprising:flattening the cornea while the eye is in a surgical position;measuring a degree of flattening of the cornea, while the eye remains in the surgical position, to determine whether a desired corneal shape has been achieved;and adjusting the degree of flattening of the cornea if it is determined that the desired corneal shape has not been achieved.
  15. 66
    A method for modifying a lens of an eye, comprising:removing tissue from the lens while the eye is in a surgical position;measuring optical properties of the eye, while the eye remains in the surgical position, to determine whether a desired lens modification has been achieved;and removing additional tissue from the lens, while the eye remains in the surgical position, if it is determined that the desired lens modification has not been achieved.
  16. 67
    A method for shaping a cornea of an eye, comprising:measuring optical properties of the eye, while the eye is in a surgical position, to determine an optimal amount of material to add to the cornea;inserting or attaching an amount of material, that is at least as great as the optimal amount of material, into or onto the cornea while the eye remains in the surgical position;re-measuring the optical properties of the eye, while the eye remains in the surgical position, to determine whether the optimal amount of material was inserted into or attached to the cornea;and removing a portion of the inserted or attached material, while the eye remains in the surgical position, if it is determined that the optimal amount of material was not inserted into or attached to the cornea.
  17. 70
    A method for modifying optical properties of an eye, comprising:inserting at least one device into a sclera of the eye to create outwardly radial tension in a ciliary muscle of the eye, while the eye is in surgical position;measuring optical properties of the eye, while the eye remains in the surgical position, to determine whether additional tension is required to achieve a desired optical condition;and inserting at least one additional device into the sclera to provide additional outwardly radial tension in the ciliary muscle if it is determined that additional tension is required to achieve the desired optical condition.
Independent claims17