Patents by Inventor Keith O'Hara

Keith O'Hara 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).

  • Patent number: 8049873
    Abstract: A surgical microscopy system is provided wherein an optical coherence tomography facility is integrated into a microscopy system. A beam of measuring light formed by collimating optics of an OCT system is deflected by a beam scanner, traverses imaging optics, and is reflected by a reflector such that the beam of measuring light traverses an objective lens of microscopy optics and is directed to an object region of the microscopy optics. A position of the beam of measuring light being incident on the reflector is substantially independent on a direction into which the beam of measuring light is deflected by the beam scanner. When traveling through the beam scanner, the beam of measuring light is comprised of a bundle of substantially parallel light rays.
    Type: Grant
    Filed: March 18, 2009
    Date of Patent: November 1, 2011
    Assignee: Carl Zeiss Meditec AG
    Inventors: Christoph Hauger, Markus Seesselberg, Keith O'Hara, Yue Qiu, Xing Wei, Jochen M. Horn, Peter Reimer
  • Publication number: 20110228218
    Abstract: Imaging systems are provided allowing examination of different object regions spaced apart in a depth direction by visual microscopy and by optical coherence tomography. An axial field of view and a lateral resolution is varied depending on which object region is examined by the imaging system. The proposed imaging systems are in particular applicable for thorough examination of the human eye.
    Type: Application
    Filed: May 26, 2011
    Publication date: September 22, 2011
    Applicant: Carl Zeiss Surgical GmbH
    Inventors: Christoph Hauger, Markus Seesselberg, Martin Hacker, Keith O'Hara
  • Publication number: 20110176142
    Abstract: Frequency domain optical coherence tomography (FD-OCT) systems and methods are provided. Thereby, a first measurement and a second measurement is performed, wherein in the first measurement an object region is illuminated by measuring light having a spectrum with a first spectral width and in the second measurement the object region is illuminated with measuring light having a spectrum with a second spectral width, wherein the first spectral width is at least 10% greater than the second spectral width. Further, during the first measurement intensities of spectral ranges of light having interacted with the object and being superimposed with reference light are detected, wherein a width of these spectral ranges is greater than a corresponding width during the second measurement. Thus, switching an axial field of view of structural information of the object across a depth direction is enabled upon minimizing radiation damage at the object.
    Type: Application
    Filed: January 14, 2011
    Publication date: July 21, 2011
    Applicants: Carl Zeiss Surgical GmbH
    Inventors: Martin HACKER, Christoph HAUGER, Keith O'HARA, Scott MEYER
  • Publication number: 20090257065
    Abstract: A surgical microscopy system is provided wherein an optical coherence tomography facility is integrated into a microscopy system. A beam of measuring light formed by collimating optics of an OCT system is deflected by a beam scanner, traverses imaging optics, and is reflected by a reflector such that the beam of measuring light traverses an objective lens of microscopy optics and is directed to an object region of the microscopy optics. A position of the beam of measuring light being incident on the reflector is substantially independent on a direction into which the beam of measuring light is deflected by the beam scanner. When traveling through the beam scanner, the beam of measuring light is comprised of a bundle of substantially parallel light rays.
    Type: Application
    Filed: March 18, 2009
    Publication date: October 15, 2009
    Applicants: Carl Zeiss Surgical GmbH, Carl Zeiss Meditec, Inc.
    Inventors: Christoph Hauger, Markus Seesselberg, Keith O'Hara, Yue Qiu, Xing Wei, Jochen M. Horn, Peter Reimer
  • Patent number: 7480059
    Abstract: An accurate measure of eye length can be obtained using concurrent OCT measurements. A position OCT device can be used to continually monitor the position of the front surface of the cornea, while a distance OCT device can determine the apparent distance between the front surface of the cornea and the front surface of the retina. Since the eye is likely to move during the period of time between measurements of the cornea and retina, the monitored position of the cornea can be used to correct the apparent length measurement by the amount of eye movement over that period of time, in order to obtain an accurate measure of eye length.
    Type: Grant
    Filed: June 5, 2008
    Date of Patent: January 20, 2009
    Assignee: Carl Zeiss Meditec, Inc.
    Inventors: Yan Zhou, Keith O'Hara
  • Patent number: 7456957
    Abstract: A compact conical diffraction Littrow spectrometer is disclosed. The distortion of the conically diffracted spectral component beams is compensated and as a result, the diffracted spectral beams can still be focused into a substantially straight line to shine onto a detector array. A spectral domain optical coherence tomography (SD-OCT) system incorporating a Littrow spectrometer or a spectrometer having one or more shared focusing element(s) and an SD-OCT system incorporating a spectrometer that is substantially polarization independent are also disclosed.
    Type: Grant
    Filed: August 3, 2005
    Date of Patent: November 25, 2008
    Assignee: Carl Zeiss Meditec, Inc.
    Inventors: Matthew J. Everett, Yan Zhou, Jochen M. M. Horn, Keith O'Hara, James P. Foley
  • Patent number: 7437071
    Abstract: A localized and distributive optical switching control system is separated into three localized systems: a sensor system, a processor system, and a position driver system. The sensor system detects the light transmission efficiency from the input port to the output port, and sends an error signal to the processor system; the processor system processes the error signal and, based upon predefined compensators and control algorithms, generates a control output signal to rectify the error to the sending and/or receiving position driver(s); the position driver(s) receives the control output signal then repositions the sending and/or receiving mirror(s) to the desired position for optimum signal transmission. The amount of communication data and the amount of routing paths between components are reduced, thus decreasing system reaction time and heat generated, allowing controls to be installed on smaller circuits, such as ASIC, and the arrays to be placed closer together.
    Type: Grant
    Filed: March 19, 2002
    Date of Patent: October 14, 2008
    Assignee: Cisco Technology, Inc.
    Inventors: Sudharshan Bhat, Kirk Evans, Raffi Garabedian, Keith O'Hara, Nim Tea
  • Publication number: 20080246918
    Abstract: An accurate measure of eye length can be obtained using concurrent OCT measurements. A position OCT device can be used to continually monitor the position of the front surface of the cornea, while a distance OCT device can determine the apparent distance between the front surface of the cornea and the front surface of the retina. Since the eye is likely to move during the period of time between measurements of the cornea and retina, the monitored position of the cornea can be used to correct the apparent length measurement by the amount of eye movement over that period of time, in order to obtain an accurate measure of eye length.
    Type: Application
    Filed: June 5, 2008
    Publication date: October 9, 2008
    Inventors: Yan Zhou, Keith O'Hara
  • Publication number: 20070076217
    Abstract: An accurate measure of eye length can be obtained using concurrent OCT measurements. A position OCT device can be used to continually monitor the position of the front surface of the cornea, while a distance OCT device can determine the apparent distance between the front surface of the cornea and the front surface of the retina. Since the eye is likely to move during the period of time between measurements of the cornea and retina, the monitored position of the cornea can be used to correct the apparent length measurement by the amount of eye movement over that period of time, in order to obtain an accurate measure of eye length.
    Type: Application
    Filed: October 5, 2005
    Publication date: April 5, 2007
    Inventors: Chris Baker, Matthew Everett, Yan Zhou, Keith O'Hara
  • Publication number: 20070030483
    Abstract: A compact conical diffraction Littrow spectrometer is disclosed. The distortion of the conically diffracted spectral component beams is compensated and as a result, the diffracted spectral beams can still be focused into a substantially straight line to shine onto a detector array. A spectral domain optical coherence tomography (SD-OCT) system incorporating a Littrow spectrometer or a spectrometer having one or more shared focusing element(s) and an SD-OCT system incorporating a spectrometer that is substantially polarization independent are also disclosed.
    Type: Application
    Filed: August 3, 2005
    Publication date: February 8, 2007
    Inventors: Matthew Everett, Yan Zhou, Jochen Horn, Keith O'Hara, James Foley
  • Publication number: 20060228011
    Abstract: A line scan imager is used to determine the motion of a subject. Each line of image data from the line scan imager is compared with a reference image. The location of a matching line in the reference image reveals the displacement of the subject. The current subject displacement can be determined based on each line of image data. The resulting displacement information can be used to correctly place other optical beams on the subject. The method can be applied to tracking the human eye to facilitate measurement, imaging, or treatment with a beam of optical radiation.
    Type: Application
    Filed: March 24, 2006
    Publication date: October 12, 2006
    Inventors: Matthew Everett, Claus Flachenecker, Martin Hacker, Scott Meyer, Keith O'Hara, Rick Williams
  • Publication number: 20060171503
    Abstract: One embodiment of the present invention is a method for suppressing artifacts in frequency-domain OCT images, which method includes (a) providing sample and reference paths with a significant difference in their chromatic dispersion (b) correcting for the effects of the mismatch in chromatic dispersion, for the purpose of making artifacts in the OCT image readily distinguishable from the desired image.
    Type: Application
    Filed: January 19, 2006
    Publication date: August 3, 2006
    Inventors: Keith O'Hara, Martin Hacker
  • Publication number: 20060164639
    Abstract: A spectral-domain optical coherence tomography system using a cross-dispersed spectrometer is disclosed. The interfered optical signal is dispersed by a grating into several orders of diffraction, and these orders of diffraction are separated by an additional dispersive optical element. The spectral interferogram is recorded by a set of linear detector arrays, or by a two-dimensional detector array.
    Type: Application
    Filed: January 17, 2006
    Publication date: July 27, 2006
    Inventors: Jochen Horn, Keith O'Hara
  • Publication number: 20060164653
    Abstract: An image data set acquired by an optical coherence tomography (OCT) system is corrected for effects due to motion of the sample. A first set of A-scans is acquired within a time short enough to avoid any significant motion of the sample. A second more extensive set of A-scans is acquired over an overlapping region on the sample. Significant sample motion may occur during acquisition of the second set. A-scans from the first set are matched with A-scans from the second set, based on similarity between the longitudinal optical scattering profiles they contain. Such matched pairs of A-scans are likely to correspond to the same region in the sample. Comparison of the OCT scanner coordinates that produced each A-scan in a matching pair, in conjunction with any shift in the longitudinal scattering profiles between the pair of A-scans, reveals the displacement of the sample between acquisition of the first and second A-scans in the pair.
    Type: Application
    Filed: January 13, 2006
    Publication date: July 27, 2006
    Inventors: Matthew Everett, Keith O'Hara
  • Publication number: 20020176648
    Abstract: A localized and distributive optical switching control system is separated into three localized systems: a sensor system, a processor system, and a position driver system. The sensor system detects the light transmission efficiency from the input port to the output port, and sends an error signal to the processor system; the processor system processes the error signal and, based upon predefined compensators and control algorithms, generates a control output signal to rectify the error to the sending and/or receiving position driver(s); the position driver(s) receives the control output signal then repositions the sending and/or receiving mirror(s) to the desired position for optimum signal transmission. The amount of communication data and the amount of routing paths between components are reduced, thus decreasing system reaction time and heat generated, allowing controls to be installed on smaller circuits, such as ASIC, and the arrays to be placed closer together.
    Type: Application
    Filed: March 19, 2002
    Publication date: November 28, 2002
    Inventors: Sudharshan Bhat, Kirk Evans, Raffi Garabedian, Keith O'Hara, Nim Tea