Patents Assigned to VisionGate, Inc.
  • Patent number: 8155420
    Abstract: A system and method for detecting poor quality images in an optical tomography system includes an acquisition apparatus for acquiring a set of pseudo-projection images of an object having a center of mass, where each of the set of pseudo-projection images is acquired at a different angle of view. A reconstruction apparatus is coupled to receive the pseudo-projection images, for reconstruction of the pseudo-projection images into 3D reconstruction images. A quality apparatus is coupled to receive the 3D reconstruction images and operates to detect of selected features that characterize poor quality reconstructions.
    Type: Grant
    Filed: May 21, 2009
    Date of Patent: April 10, 2012
    Assignee: Visiongate, Inc
    Inventors: Michael G. Meyer, Rahul Katdare, David Ethan Steinhauer, J. Richard Rahn
  • Patent number: 8143600
    Abstract: A method for 3D imaging of cells in an optical tomography system includes moving a biological object relatively to a microscope objective to present varying angles of view. The biological object is illuminated with radiation having a spectral bandwidth limited to wavelengths between 150 nm and 390 nm. Radiation transmitted through the biological object and the microscope objective is sensed with a camera from a plurality of differing view angles. A plurality of pseudoprojections of the biological object from the sensed radiation is formed and the plurality of pseudoprojections is reconstructed to form a 3D image of the cell.
    Type: Grant
    Filed: February 18, 2008
    Date of Patent: March 27, 2012
    Assignee: Visiongate, Inc.
    Inventors: Eric J. Seibel, Alan C. Nelson, Mark E. Fauver, J. Richard Rahn
  • Patent number: 8090183
    Abstract: Correcting pattern noise projection images includes acquiring a set of projection images with an optical tomography system including a processor, where each of the set of projection images is acquired at a different angle of view. A threshold is applied to each projection image produce a set of threshold images. Each threshold image may optionally be dilated to produce a set of dilated images that are summed to form an ensemble image. Each of the dilated images is processed to produce a set of binary images. The set of binary images are summed to form an ensemble mask. The ensemble image is divided by the ensemble mask to yield a background pattern noise image. Each projection image is multiplied by a scaling factor and divided by the background pattern noise to produce a quotient image that is filtered to produce a noise corrected projection image.
    Type: Grant
    Filed: March 12, 2009
    Date of Patent: January 3, 2012
    Assignee: Visiongate, Inc.
    Inventors: Michael G. Meyer, Jon W. Hayenga, Thomas M. Abbott, David E. Steinhauer
  • Patent number: 7907765
    Abstract: An optical tomography system for imaging an object of interest including a light source for illuminating the object of interest with a plurality of radiation beams. The object of interest is held within an object containing tube such that it is illuminated by the plurality of radiation beams to produce emerging radiation from the object containing tube, a detector array is located to receive the emerging radiation and produce imaging data used by a mechanism for tracking the object of interest.
    Type: Grant
    Filed: September 18, 2006
    Date of Patent: March 15, 2011
    Assignees: University of Washington, Visiongate, Inc.
    Inventors: Mark E. Fauver, Eric J. Seibel, Michael G. Meyer, Alan C. Nelson, J. Richard Rahn, Thomas Neumann, Roger H. Johnson
  • Patent number: 7867778
    Abstract: A method for loading a sample for imaging by an optical tomography system. A sample volume including at least one microscopic sample and a viscous fluid is coaxially loaded into a sample delivery tube. The sample volume is impelled through a focus cell into a capillary tube, where the capillary tube has a smaller crossectional area than the sample delivery tube, so that a reduced volume of the at least one microscopic sample and viscous fluid is constrained to a central region within the capillary tube.
    Type: Grant
    Filed: February 23, 2007
    Date of Patent: January 11, 2011
    Assignee: VisionGate, Inc.
    Inventors: Jon W. Hayenga, Paul R. Smargiassi
  • Publication number: 20100321786
    Abstract: An optical tomography system for viewing an object of interest includes a microcapillary tube viewing area for positioning the object of interest in an optical path including a detector. A motor is located to attach to and rotate a microcapillary tube. A device is arranged for transmitting broadband light having wavelengths between 550 nm and 620 nm into the microcapillary tube viewing area. A hyperchromatic lens is located to receive light transmitted through the microcapillary tube viewing area. A tube lens is located to focus light rays transmitted through the hyperchromatic lens, such that light rays from multiple object planes in the microcapillary tube viewing area simultaneously focus on the at least one detector.
    Type: Application
    Filed: August 24, 2010
    Publication date: December 23, 2010
    Applicant: VISIONGATE, INC.
    Inventors: J. Richard Rahn, John W. Hayenga
  • Publication number: 20100322494
    Abstract: An optical tomography system for imaging an object of interest including a light source for illuminating the object of interest with a plurality of radiation beams. The object of interest is held within an object containing tube such that it is illuminated by the plurality of radiation beams to produce emerging radiation from the object containing tube, a detector array is located to receive the emerging radiation and produce imaging data used by a mechanism for tracking the object of interest.
    Type: Application
    Filed: September 18, 2006
    Publication date: December 23, 2010
    Applicants: University of Washington, VISIONGATE, INC.
    Inventors: Mark E. Fauver, Eric J. Seibel, Michael G. Meyer, Alan C. Nelson, J. Richard Rahn, Thomas Neumann, Roger H. Johnson
  • Publication number: 20100296713
    Abstract: A system and method for detecting poor quality images in an optical tomography system includes an acquisition apparatus for acquiring a set of pseudo-projection images of an object having a center of mass, where each of the set of pseudo-projection images is acquired at a different angle of view. A reconstruction apparatus is coupled to receive the pseudo-projection images, for reconstruction of the pseudo-projection images into 3D reconstruction images. A quality apparatus is coupled to receive the 3D reconstruction images and operates to detect of selected features that characterize poor quality reconstructions.
    Type: Application
    Filed: May 21, 2009
    Publication date: November 25, 2010
    Applicant: VISIONGATE, INC.
    Inventors: Michael G. Meyer, Rahul Katdare, David E. Steinhauer, J. Richard Rahn
  • Patent number: 7835561
    Abstract: A method for reconstructing three-dimensional (3D) tomographic images. A set of pseudo-projection images of an object is acquired. Error corrections are applied to the set of pseudo-projection images to produce a set of corrected pseudo-projection images. The set of corrected pseudo-projection images are processed to produce (3D) tomographic images.
    Type: Grant
    Filed: May 18, 2007
    Date of Patent: November 16, 2010
    Assignee: VisionGate, Inc.
    Inventors: Michael G. Meyer, J. Richard Rahn, Mark E. Fauver
  • Patent number: 7811825
    Abstract: A scanning method for scanning samples of biological cells using optical tomography includes preparing, acquiring, reconstructing and viewing three-dimensional images of cell samples. Concentration and enrichment of the cell sample follows. The cell sample is stained. Cells are isolated from the cell sample and purified. A cell/solvent mixture is injected into a gel by centrifugation. A cell/gel mixture is injected into a capillary tube until a cell appears centered in a field of view using a stopped-flow method. An optical imaging system, such as a fixed or variable motion optical tomography system acquires a projection image. The sample is rotated about a tube axis to generate additional projections. Once image acquisition is completed, the acquired image projections are corrected for errors. A computer or other equivalent processor is used to compute filtered backprojection information for 3D reconstruction.
    Type: Grant
    Filed: October 13, 2004
    Date of Patent: October 12, 2010
    Assignees: University of Washington, VisionGate, Inc.
    Inventors: Mark E. Fauver, J. Richard Rahn, Eric J. Seibel, Alan C. Nelson
  • Publication number: 20100232664
    Abstract: Correcting pattern noise projection images includes acquiring a set of projection images with an optical tomography system including a processor, where each of the set of projection images is acquired at a different angle of view. A threshold is applied to each projection image produce a set of threshold images. Each threshold image may optionally be dilated to produce a set of dilated images that are summed to form an ensemble image. Each of the dilated images is processed to produce a set of binary images. The set of binary images are summed to form an ensemble mask. The ensemble image is divided by the ensemble mask to yield a background pattern noise image. Each projection image is multiplied by a scaling factor and divided by the background pattern noise to produce a quotient image that is filtered to produce a noise corrected projection image.
    Type: Application
    Filed: March 12, 2009
    Publication date: September 16, 2010
    Applicant: VISIONGATE, INC.
    Inventors: Michael G. Meyer, Jon W. Hayenga, Thomas M. Abbott, David E. Steinhauer
  • Patent number: 7787112
    Abstract: An optical projection tomography system is illuminated with a light source. An object-containing tube, a portion of which is located within the region illuminated by the light source, contains an object of interest that has a feature of interest. A detector is located to receive emerging radiation from the object of interest. A lens, including optical field extension elements, is located in the optical path between the object region and the detector, such that light rays from multiple object planes in the object-containing tube simultaneously focus on the detector. The object-containing tube moves relatively to the detector and the lens operate to provide multiple views of the object region for producing an image of the feature of interest at each view.
    Type: Grant
    Filed: October 22, 2007
    Date of Patent: August 31, 2010
    Assignee: Visiongate, Inc.
    Inventors: J. Richard Rahn, Jon W. Hayenga
  • Publication number: 20100214639
    Abstract: An object of interest is illuminated within the field of view of a microscope objective lens located to receive light passing through the object of interest. Light transmitted through the microscope objective lens impinges upon a variable power element. The variable power element is driven with respect to the microscope objective lens to scan through multiple focal planes in the object of interest. Light transmitted from the variable power element is sensed by a sensing element or array.
    Type: Application
    Filed: February 23, 2009
    Publication date: August 26, 2010
    Applicant: VISIONGATE, INC.
    Inventors: Mathew D. Watson, Jon W. Hayenga
  • Publication number: 20100188739
    Abstract: An optical tomography system includes a light field microscope including an objective lens, a computer-controlled light source, a condenser lens assembly and a microlens array aligned along an optical axis. A carrier containing a specimen is coupled to a rotational driver for presenting varying angles of view of the specimen. A photosensor array disposed to receive photons from the objective lens. A computer is linked to control the computer-controlled light source and condenser lens assembly and the rotational driver, and coupled to receive images from the photosensor array where the light field microscope simultaneously captures a continuum of focal planes in the specimen for each of a set of the varying angles of view of the specimen.
    Type: Application
    Filed: January 19, 2010
    Publication date: July 29, 2010
    Applicant: VISIONGATE, INC.
    Inventor: Mathew D. Watson
  • Patent number: 7738945
    Abstract: A system for optical imaging of a thick specimen that permits rapid acquisition of data necessary for tomographic reconstruction of the three-dimensional (3D) image. One method involves the scanning of the focal plane of an imaging system and integrating the range of focal planes onto a detector. The focal plane of an optical imaging system is scanned along the axis perpendicular to said plane through the thickness of a specimen during a single detector exposure. Secondly, methods for reducing light scatter when using illumination point sources are presented. Both approaches yield shadowgrams. This process is repeated from multiple perspectives, either in series using a single illumination/detection subsystem, or in parallel using several illumination/detection subsystems. A set of pseudo-projections is generated, which are input to a three dimensional tomographic image reconstruction algorithm.
    Type: Grant
    Filed: November 18, 2003
    Date of Patent: June 15, 2010
    Assignees: University of Washington, VisionGate, Inc.
    Inventors: Mark E. Fauver, J. Richard Rahn, Eric J. Seibel, Alan C. Nelson
  • Publication number: 20090208072
    Abstract: A method for 3D imaging of cells in an optical tomography system includes moving a biological object relatively to a microscope objective to present varying angles of view. The biological object is illuminated with radiation having a spectral bandwidth limited to wavelengths between 150 nm and 390 nm. Radiation transmitted through the biological object and the microscope objective is sensed with a camera from a plurality of differing view angles. A plurality of pseudoprojections of the biological object from the sensed radiation is formed and the plurality of pseudoprojections is reconstructed to form a 3D image of the cell.
    Type: Application
    Filed: February 18, 2008
    Publication date: August 20, 2009
    Applicant: VISIONGATE, INC.
    Inventors: Eric J. Seibel, Alan C. Nelson, Mark E. Fauver, J. Richard Rahn
  • Patent number: 7569789
    Abstract: An apparatus and method for sorting particles in a laminar flow microfluidic channel includes a cantilevered coaxial flow injector in a microfluidic device, the cantilevered coaxial flow injector including an elongated cantilever element integrated into the microfluidic device. A coaxial channel runs through the elongated cantilever element, where coaxial channel is sized to pass particles of a predetermined size. An actuator is coupled to the elongated cantilever element, for actuating said elongated cantilever element.
    Type: Grant
    Filed: March 16, 2006
    Date of Patent: August 4, 2009
    Assignee: VisionGate, Inc.
    Inventors: Jon W. Hayenga, Alan C. Nelson
  • Patent number: 7542597
    Abstract: An apparatus and method for correction of relative object-detector motion between successive views during optical tomographic imaging in three dimensions. An object of interest is illuminated to produce an image. A lateral offset correction value is determined for the image. An axial offset correction value is determined for the image. The lateral offset correction value and the axial offset correction value are applied to the image to produce a corrected file image.
    Type: Grant
    Filed: November 10, 2006
    Date of Patent: June 2, 2009
    Assignee: VisionGate, Inc.
    Inventors: John Richard Rahn, Alan C. Nelson
  • Publication number: 20090103792
    Abstract: An optical projection tomography system is illuminated with a light source. An object-containing tube, a portion of which is located within the region illuminated by the light source, contains an object of interest that has a feature of interest. A detector is located to receive emerging radiation from the object of interest. A lens, including optical field extension elements, is located in the optical path between the object region and the detector, such that light rays from multiple object planes in the object-containing tube simultaneously focus on the detector. The object-containing tube moves relatively to the detector and the lens operate to provide multiple views of the object region for producing an image of the feature of interest at each view.
    Type: Application
    Filed: October 22, 2007
    Publication date: April 23, 2009
    Applicant: VISIONGATE, INC.
    Inventors: J. Richard Rahn, Jon W. Hayenga
  • Patent number: 7494809
    Abstract: A method for automated cell enrichment preparation where biological cells are injected into a first subchamber and flowed through the first subchamber, through a large pore filter and into a second subchamber so that the large pore filter retains particles large particles in the first subchamber, while the biological cells pass through the first filter into the second subchamber and are retained by a small pore filter. After clearing, the biological cells are stained. A solvent exchange leaves the biological cells in solvent and they are released into a concentration module where a portion of the solvent is removed to form an enriched concentrated cell suspension.
    Type: Grant
    Filed: February 14, 2006
    Date of Patent: February 24, 2009
    Assignee: VisionGate, Inc.
    Inventors: Alan C. Nelson, Florence W. Patten