Patents by Inventor Michael Karavitis

Michael Karavitis has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20170172803
    Abstract: An imaging-based laser system can include a laser-beam system, configured to generate and scan a beam of laser pulses with an adjustable laser-power parameter to points of a scan-pattern in an eye, and an imaging-based laser-controller, configured to image a layer in the eye, to control the scanning of the beam of laser pulses to the points of the scan-pattern, and to control a laser-power parameter of the laser pulses according to the distance of the points of the scan-pattern from the imaged layer.
    Type: Application
    Filed: March 7, 2017
    Publication date: June 22, 2017
    Inventors: GAUTAM CHAUDHARY, PETER GOLDSTEIN, IMRE HEGEDUS, CARLOS GERMAN SUAREZ, DAVID CALLIGORI, MICHAEL KARAVITIS
  • Patent number: 9622913
    Abstract: An imaging-based laser system can include a laser-beam system, configured to generate and scan a beam of laser pulses with an adjustable laser-power parameter to points of a scan-pattern in an eye, and an imaging-based laser-controller, configured to image a layer in the eye, to control the scanning of the beam of laser pulses to the points of the scan-pattern, and to control a laser-power parameter of the laser pulses according to the distance of the points of the scan-pattern from the imaged layer.
    Type: Grant
    Filed: May 18, 2011
    Date of Patent: April 18, 2017
    Assignee: Alcon LenSx, Inc.
    Inventors: Gautam Chaudhary, Peter Goldstein, Imre Hegedus, Carlos German Suárez, David Calligori, Michael Karavitis
  • Patent number: 9408749
    Abstract: Techniques, apparatus and systems for laser surgery including imaging-guided surgery techniques, apparatus and systems.
    Type: Grant
    Filed: April 30, 2015
    Date of Patent: August 9, 2016
    Assignee: Alcon LenSx, Inc.
    Inventors: Ronald M. Kurtz, Ferenc Raksi, Michael Karavitis
  • Patent number: 9325148
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Grant
    Filed: December 23, 2014
    Date of Patent: April 26, 2016
    Assignee: Alcon LenSx, Inc.
    Inventor: Michael Karavitis
  • Publication number: 20150328045
    Abstract: Techniques, apparatus and systems for laser surgery including imaging-guided surgery techniques, apparatus and systems.
    Type: Application
    Filed: April 30, 2015
    Publication date: November 19, 2015
    Inventors: Ronald M. Kurtz, Ferenc Raksi, Michael Karavitis
  • Patent number: 9054479
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Grant
    Filed: February 24, 2010
    Date of Patent: June 9, 2015
    Assignee: Alcon LenSx, Inc.
    Inventor: Michael Karavitis
  • Patent number: 9044303
    Abstract: Techniques, apparatus and systems for laser surgery including imaging-guided surgery techniques, apparatus and systems.
    Type: Grant
    Filed: December 23, 2013
    Date of Patent: June 2, 2015
    Assignee: Alcon LenSx, Inc.
    Inventors: Ronald M. Kurtz, Ferenc Raksi, Michael Karavitis
  • Publication number: 20150117480
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Application
    Filed: December 23, 2014
    Publication date: April 30, 2015
    Inventor: Michael Karavitis
  • Patent number: 8953651
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Grant
    Filed: February 24, 2010
    Date of Patent: February 10, 2015
    Assignee: Alcon LenSx, Inc.
    Inventor: Michael Karavitis
  • Patent number: 8908739
    Abstract: A laser adjustment system can include an adjustable seed-beam restrictor, configured to be attachable to a stretcher-compressor in a transverse-adjustable manner, and to restrict an incidence of a seed beam, generated by an oscillator, on the stretcher-compressor, wherein the stretcher-compressor is configured to be integrated into a chirped pulse amplification laser engine, and to stretch a duration of seed pulses of the seed beam.
    Type: Grant
    Filed: December 23, 2011
    Date of Patent: December 9, 2014
    Assignee: Alcon LenSx, Inc.
    Inventor: Michael Karavitis
  • Publication number: 20140188093
    Abstract: Techniques, apparatus and systems for laser surgery including imaging-guided surgery techniques, apparatus and systems.
    Type: Application
    Filed: December 23, 2013
    Publication date: July 3, 2014
    Applicant: ALCON LENSX, INC.
    Inventors: Ronald M. Kurtz, Ferenc Raksi, Michael Karavitis
  • Patent number: 8764737
    Abstract: Techniques, apparatus and systems for laser surgery including imaging-guided surgery techniques, apparatus and systems.
    Type: Grant
    Filed: September 5, 2008
    Date of Patent: July 1, 2014
    Assignee: Alcon LenSx, Inc.
    Inventors: Ronald M. Kurtz, Ferenc Raksi, Michael Karavitis
  • Publication number: 20130163622
    Abstract: A laser adjustment system can include an adjustable seed-beam restrictor, configured to be attachable to a stretcher-compressor in a transverse-adjustable manner, and to restrict an incidence of a seed beam, generated by an oscillator, on the stretcher-compressor, wherein the stretcher-compressor is configured to be integrated into a chirped pulse amplification laser engine, and to stretch a duration of seed pulses of the seed beam.
    Type: Application
    Filed: December 23, 2011
    Publication date: June 27, 2013
    Applicant: ALCON LENSX, INC.
    Inventor: Michael Karavitis
  • Patent number: 8279901
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Grant
    Filed: February 24, 2010
    Date of Patent: October 2, 2012
    Assignee: Alcon LenSx, Inc.
    Inventor: Michael Karavitis
  • Patent number: 8231612
    Abstract: A method of photoaltering a material using a pulsed laser beam includes selecting a first pulse energy and a first focal point separation based on a relationship of pulse energy and focal point separation combinations enabling layer separation of the material by photoalteration, and scanning the pulsed laser beam along a scan region at the first pulse energy and the first focal point separation. The relationship has a slope and has a distinct change in the slope. The distinct change in the slope is associated with a second pulse energy of the relationships and the first pulse energy is equal to or less than the second pulse energy.
    Type: Grant
    Filed: November 19, 2007
    Date of Patent: July 31, 2012
    Assignee: AMO Development LLC.
    Inventors: Ruben Zadoyan, Michael Karavitis, Ronald M. Kurtz
  • Patent number: 8089679
    Abstract: A system for laser amplification includes a dual-crystal Pockels cell which is used to control emission of laser pulses from an ultra-fast laser. The Pockels cell is constructed to enable adjustment of the rotational orientation of one crystal relative to the other crystal. The rotational orientation of one or both crystals in the Pockels cell is adjusted to control sidebands in the laser pulse.
    Type: Grant
    Filed: September 29, 2010
    Date of Patent: January 3, 2012
    Assignee: AMO Development LLC.
    Inventors: Ruben Zadoyan, Michael Karavitis
  • Patent number: 8057463
    Abstract: A system for adaptive laser scanning correction includes a laser scanner coupled to a controller. The controller develops control signals for the laser scanner for a directed scan pattern that is modified to compensate for a characteristic scan-pattern distortion introduced by the laser scanner. The laser scanner responds to the control signals to provide an actual scan pattern approaching a target scan-pattern shape. The system may be useful for ophthalmologic laser surgery and other applications requiring precise control over scan pattern shape and a high scanning speed.
    Type: Grant
    Filed: April 7, 2006
    Date of Patent: November 15, 2011
    Assignee: AMO Development, LLC.
    Inventors: Ruben Zadoyan, Michael Karavitis, Peter Goldstein, Mike White, Michael Otter
  • Publication number: 20110206070
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Application
    Filed: February 24, 2010
    Publication date: August 25, 2011
    Inventor: Michael Karavitis
  • Publication number: 20110206073
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Application
    Filed: February 24, 2010
    Publication date: August 25, 2011
    Inventor: Michael Karavitis
  • Publication number: 20110206072
    Abstract: Designs and techniques for constructing and operating femtosecond pulse lasers are provided. One example of a laser engine includes an oscillator that generates and outputs a beam of femtosecond seed pulses, a stretcher-compressor that stretches a duration of the seed pulses, and an amplifier that receives the stretched seed pulses, amplifies an amplitude of selected stretched seed pulses to create amplified stretched pulses, and outputs a laser beam of amplified stretched pulses back to the stretcher-compressor that compresses their duration and outputs a laser beam of femtosecond pulses. The amplifier includes a dispersion controller that compensates a dispersion of the amplified stretched pulses, making the repetition rate of the laser adjustable between procedures or according to the speed of scanning. The laser engine can be compact with a total optical path of less than 500 meters, and have a low number of optical elements, e.g. less than 50.
    Type: Application
    Filed: February 24, 2010
    Publication date: August 25, 2011
    Inventor: Michael Karavitis