Patents by Inventor Scott A. Meyer

Scott A. Meyer 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: 8128229
    Abstract: One embodiment of the present invention accounts for individual anatomical variation when evaluating optical nerve fiber measurements. In one aspect, contextual information is used to compensate or correct measurement data. In another aspect, reference coordinates are remapped for improved comparison or visualization. In one embodiment of this latter aspect, the method uses measurements of nerve fiber capacity and maps of nerve fiber retinal service to improve sensitivity and specificity in eye function metrics. In one instance, we use the birefringence of nerve fibers to determine the orientation of the fibers within the RNFL. Orientation of the fibers about the ONH is indicative of the service provided by the fibers and is used to improve the interpretation of thickness measurements of the nerve fiber layer. Normalized nerve fiber measurements about the optic nerve head improve specificity and sensitivity as compared to the standard model.
    Type: Grant
    Filed: August 19, 2010
    Date of Patent: March 6, 2012
    Assignee: Carl Zeis Meditec, Inc.
    Inventors: Scott A. Meyer, Mary K. Durbin, Paul F. Stetson, Bagrat Amirbekian
  • Publication number: 20120045101
    Abstract: The present invention discloses a method for generating elevation maps or images of a tissue layer/boundary with respect to a fitted reference surface, comprising the steps of finding and segmenting a desired tissue layer/boundary; fitting a smooth reference surface to the segmented tissue layer/boundary; calculating elevations of the same or other tissue layer/boundary relative to the fitted reference surface; and generating maps of elevation relative to the fitted surface. The elevation can be displayed in various ways including three-dimensional surface renderings, topographical contour maps, contour maps, en-face color maps, and en-face grayscale maps. The elevation can also be combined and simultaneously displayed with another tissue layer/boundary dependent set of image data to provide additional information for diagnostics.
    Type: Application
    Filed: October 27, 2011
    Publication date: February 23, 2012
    Applicant: Carl Zeiss Meditec, Inc.
    Inventors: Matthew J. Everett, Scott A. Meyer, Paul F. Stetson, Yan Zhou
  • Patent number: 8116870
    Abstract: Multi-chamber pacing may result in capture of one chamber, capture of multiple chambers, fusion, or non-capture. Approaches for detecting various capture conditions during multi-chamber pacing are described. Pacing pulses are delivered to left and right heart chambers during a cardiac cycle. A cardiac electrogram signal is sensed following the delivery of the pacing pulses. Left chamber capture only, right chamber capture only, and bi-chamber capture may be distinguished based on characteristics of the cardiac electrogram signal. Multi-chamber capture detection may be implemented using detection windows having dimensions of time and amplitude. The detection windows are associated with expected features, such as expected signal peaks, under a particular capture condition. The cardiac electrogram signal features are compared to detection windows to determine the capture condition.
    Type: Grant
    Filed: June 23, 2008
    Date of Patent: February 14, 2012
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Yanting Dong, Scott A. Meyer, Kevin John Stahlsberg
  • Patent number: 8116871
    Abstract: Cardiac monitoring and/or stimulation methods and systems that provide one or more of monitoring, diagnosing, defibrillation, and pacing. Cardiac signal separation is employed for automatic capture verification using cardiac activation sequence information. Devices and methods sense composite cardiac signals using implantable electrodes. A source separation is performed using the composite signals. One or more signal vectors are produced that are associated with all or a portion of one or more cardiac activation sequences based on the source separation. A cardiac response to the pacing pulses is classified using characteristics associated with cardiac signal vectors and the signals associated with the vectors. Further embodiments may involve classifying the cardiac response as capture or non-capture, fusion or intrinsic cardiac activity. The characteristics may include an angle or an angle change of the cardiac signal vectors, such as a predetermined range of angles of the one or more cardiac signal vectors.
    Type: Grant
    Filed: March 23, 2009
    Date of Patent: February 14, 2012
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Yi Zhang, Jiang Ding, Aaron McCabe, Scott A. Meyer
  • Patent number: 8078276
    Abstract: A method and system for determining an optimum atrioventricular delay (AVD) interval and/or ventriculo-ventricular delay (VVD) intervals for delivering ventricular resynchronization pacing in an atrial tracking or atrial sequential pacing mode. Evoked response electrograms recorded at different AVD and VVD intervals are used to determine the extent of paced and intrinsic activation.
    Type: Grant
    Filed: June 30, 2009
    Date of Patent: December 13, 2011
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Yanting Dong, Jiang Ding, Douglas R. Daum, Scott A. Meyer, Yinghong Yu
  • Patent number: 8073202
    Abstract: The present invention discloses a method for generating elevation maps or images of a tissue layer/boundary with respect to a fitted reference surface, comprising the steps of finding and segmenting a desired tissue layer/boundary; fitting a smooth reference surface to the segmented tissue layer/boundary; calculating elevations of the same or other tissue layer/boundary relative to the fitted reference surface; and generating maps of elevation relative to the fitted surface. The elevation can be displayed in various ways including three-dimensional surface renderings, topographical contour maps, contour maps, en-face color maps, and en-face grayscale maps. The elevation can also be combined and simultaneously displayed with another tissue layer/boundary dependent set of image data to provide additional information for diagnostics.
    Type: Grant
    Filed: February 19, 2010
    Date of Patent: December 6, 2011
    Assignee: Carl Zeiss Meditec, Inc.
    Inventors: Matthew J. Everett, Scott A. Meyer, Paul F. Stetson, Yan Zhou
  • Patent number: 8050504
    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: Grant
    Filed: August 23, 2010
    Date of Patent: November 1, 2011
    Assignee: Carl Zeis Meditec, Inc.
    Inventors: Matthew J. Everett, Claus Flachenecker, Martin Hacker, Scott A. Meyer, Keith E. O'Hara, Rick A. Williams
  • Publication number: 20110264158
    Abstract: This document discusses, among other things, a system and method for generating a stimulation energy to provide His-bundle stimulation for a cardiac cycle, receiving electrical information from the heart over at least a portion of the cardiac cycle, determining a characteristic of at least a portion of the received electrical information for the cardiac cycle, and classifying the cardiac cycle using the determined characteristic.
    Type: Application
    Filed: April 26, 2011
    Publication date: October 27, 2011
    Inventors: Yanting Dong, Allan C. Shuros, Jiang Ding, Scott A. Meyer, Shibaji Shome
  • Publication number: 20110261320
    Abstract: A solution for attaining high-precision and reproducible measurements during opthalmological biometry and imaging includes an illumination unit for producing a fixation marker, a device for transmitting the light of the produced fixation marker into the eye, a measurement device and a control unit. The illumination unit includes a device for the targeted change of the beam direction of the produced fixation marker. A camera for the detection of the line of vision of the eye is connected to the control unit. The control unit determines the sufficient congruity between detected line of vision and displayed beam direction of the produced fixation marker and, in dependence of the degree of probability of the congruity, triggers a measurement. The suggested arrangement is applicable for opthalmological diagnostic devices, which exhibit a camera and a measuring system, whereby measurements can be taken in all areas of the eye.
    Type: Application
    Filed: April 21, 2011
    Publication date: October 27, 2011
    Applicant: CARL ZEISS MEDITEC AG
    Inventors: Martin Hacker, Scott A. Meyer
  • Patent number: 8045176
    Abstract: Various methods are disclosed for mapping optical coherence tomography (OCT) data to facilitate review and diagnosis. In one aspect, high resolution 2D line scans are obtained along with lower density 3D cube scans and displayed in a manner to provide context to the clinician. In another aspect, OCT data is analyzed to provide information about non-uniformities of the tissue. Binary image maps of maps useful for determining tautness of membranes are also disclosed.
    Type: Grant
    Filed: June 23, 2010
    Date of Patent: October 25, 2011
    Assignee: Carl Zeiss Meditec, Inc.
    Inventors: Matthew J. Everett, Paul F. Stetson, Scott A. Meyer, Shahram Shawn Dastmalchi
  • Patent number: 8046062
    Abstract: Systems and methods of managing features or functions of an implantable cardiac device involve forming a baseline evoked response template prior to delivery of defibrillation therapy to a patient's heart, and acquiring a post-shock evoked response signal subsequent to defibrillation therapy delivery. The baseline evoked response template is compared to the post-shock evoked response signal. A determination is made whether to enable, disable or adjust a cardiac device feature based on the comparison. The cardiac device feature may be a therapy feature, a monitoring feature, or a diagnostic feature.
    Type: Grant
    Filed: August 21, 2009
    Date of Patent: October 25, 2011
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: David J. Yonce, Scott Meyer, David J. Ternes
  • Publication number: 20110246384
    Abstract: The present invention provides a plurality of Enterprises with a single online user interface with which the Enterprise can provide Enterprise Shippers, shipping origination users and shipping intermediary users with an automated parcel management system for a plurality of supported Carriers for a plurality of services. The present invention provides for the hierarchical definition of users, including the establishment of at least one user for each Enterprise as a Super-Administrator with the highest level of privileges and authority for the Enterprise, and the identification of other users as Sub-Administrators, Desktop Users and Shipping Station Users. The present invention also provides for the hierarchical definition of organizational units within each Enterprise, including the definition of sites, groups within a site, and users within a group.
    Type: Application
    Filed: April 25, 2011
    Publication date: October 6, 2011
    Inventors: Daniel F. Williams, David Allison Bennett, Lynn Shaindell Goldhaber, Dennis Glavin, Lory Elizabeth Krett, Charles D. Mentzer, Stephen M. Teglovic, John M. Dietz, William W. Smith, III, Paul Bilibin, Jinyue Liu, Paul R. McLaughlin, Scott Meyer, Sean Hu
  • Publication number: 20110245890
    Abstract: An apparatus comprises a cardiac signal sensing circuit, a pacing therapy circuit, and a controller circuit. The controller circuit includes a safety margin calculation circuit. The controller circuit initiates delivery of pacing stimulation energy to the heart using a first energy level, changes the energy level by at least one of: a) increasing the energy from the first energy level until detecting that the pacing stimulation energy induces stable capture, or b) reducing the energy from the first energy level until detecting that the stimulation energy fails to induce capture, and continues changing the stimulation energy level until confirming stable capture or the failure of capture. The safety margin calculation circuit calculates a safety margin of pacing stimulation energy using at least one of a determined stability of a parameter associated with evoked response and a determined range of energy levels corresponding to stable capture or intermittent failure of capture.
    Type: Application
    Filed: March 25, 2011
    Publication date: October 6, 2011
    Inventors: Amy Jean Brisben, Shibaji Shome, Kenneth N. Hayes, Yanting Dong, Aaron R. McCabe, Scott A. Meyer, Kevin John Stalsberg
  • Patent number: 8030061
    Abstract: Devices, in vitro cell cultures, systems, and methods are provided for microscale cell culture analogous (CCA) device.
    Type: Grant
    Filed: September 8, 2006
    Date of Patent: October 4, 2011
    Assignee: Cornell Research Foundation, Inc.
    Inventors: Michael Shuler, Gregory T. Baxter, Aaron Sin, Robert Andrew Harrison, Scott Meyers
  • Publication number: 20110224751
    Abstract: A methods and devices for capture detection are based on sensing a propagated depolarization from a contralateral cardiac chamber. An intersite sensing interval is determined based on an intersite pacing delay and an intersite conduction delay associated with first and second pacing sites. Pacing pulses are delivered to the first pacing site and the second pacing site, the pacing pulses separated in time by the intersite pacing delay. An intersite sensing interval is timed. The process includes sensing, during the intersite sensing interval, at the first pacing site for a depolarization propagated to the first pacing site from the second pacing site. It a depolarization propagated from the second pacing site is not sensed, then capture of the first and second pacing sites is detected.
    Type: Application
    Filed: May 10, 2011
    Publication date: September 15, 2011
    Inventors: Alok S. Sathaye, M. Jason Brooke, Scott A. Meyer
  • 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
  • Patent number: 7979124
    Abstract: A method and device provide for determining capture in multiple chambers of a patient's heart using an electrode inserted into a coronary vein of the patient's heart. The coronary vein electrode is positioned adjacent to multiple heart chambers and is responsive to cardiac signals originating in the multiple chambers. The coronary vein electrode may be coupled to a single sense amplifier to detect the cardiac signals. Pace pulses may be applied to multiple heart chambers simultaneously or according to a phased timing sequence. Cardiac signals responsive to the pace pulses sensed using the coronary vein electrode may be used to verify capture in the multiple chambers of the heart.
    Type: Grant
    Filed: November 16, 2006
    Date of Patent: July 12, 2011
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Scott A. Meyer, Haris J. Sih, Paul A. Haefner
  • Patent number: 7979113
    Abstract: Methods and systems involve classifying the cardiac response to pacing using a multi-channel approach. Multiple cardiac response signals are sensed via multiple sense channels. Each sense channel comprises a distinct combination of electrodes and sensing circuitry. The cardiac response to the pacing pulse is classified based on the morphology of the cardiac response signals. Classifying the cardiac response involves discriminating between capture, fusion, non-capture, and non-capture with intrinsic activity.
    Type: Grant
    Filed: May 5, 2009
    Date of Patent: July 12, 2011
    Assignee: Cardiac Pacemakers, Inc.
    Inventors: Yanting Dong, Scott A. Meyer, Qingsheng Zhu
  • Publication number: 20110144511
    Abstract: Cardiac monitoring and/or stimulation methods and systems provide monitoring, diagnosis, and defibrillation and/or pacing therapies. A signal processor receives a plurality of composite signals associated with a plurality of sources, performs a source separation, and produces one or more cardiac signal vectors associated with all or a portion of one or more cardiac activation sequences based on the source separation. A method of signal separation involves detecting a change in a characteristic of the cardiac signal vector relative to a baseline. One or more vectors and/or activation sequences may be selected, and information associated with the vectors and/or activation sequences may be stored and tracked.
    Type: Application
    Filed: February 15, 2011
    Publication date: June 16, 2011
    Inventors: Yi Zhang, Scott A. Meyer, Aaron McCabe, Jeffrey E. Stahmann, Yinghong Yu, Carlos Alberto Ricci
  • Publication number: 20110137192
    Abstract: Cardiac monitoring and/or stimulation methods and systems provide for monitoring, diagnosing, defibrillation and pacing therapies, or a combination of these capabilities, including cardiac systems incorporating or cooperating with neuro-stimulating devices, drug pumps, or other therapies. Embodiments of the present invention relate generally to implantable medical devices employing automated cardiac activation sequence monitoring and/or tracking for arrhythmia discrimination. Embodiments of the invention are directed to devices and methods involving sensing a plurality of composite cardiac signals using a plurality of implantable electrodes. A source separation is performed using the sensed plurality of composite cardiac signals and the separation produces one or more cardiac signal vectors associated with one or more cardiac activation sequences that is indicative of ischemia. A change of the one or more cardiac signal vectors is detected using the one or more cardiac signal vectors.
    Type: Application
    Filed: February 15, 2011
    Publication date: June 9, 2011
    Inventors: Yi Zhang, Carlos Alberto Ricci, Jeffrey E. Stahmann, Aaron R. McCabe, Scott A. Meyer, Yinghong Yu