Patents by Inventor Daniel Wolfe

Daniel Wolfe 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: 11903622
    Abstract: A cervical plate assembly is disclosed. The cervical plate assembly includes a base plate including: (1) at least two bone screw seats, each bone screw seat including a borehole dimensioned to receive a bone screw, and (2) a first blocking seat positioned between the at least two bone screw seats. The cervical plate assembly includes a blocking mechanism retained within the first blocking seat of the base plate. The blocking mechanism is selectively positionable between a closed position in which the blocking mechanism obstructs at least one bone screw seat to retain a bone screw with the base plate, and an open position in which the bone screw seats are unobstructed.
    Type: Grant
    Filed: January 19, 2022
    Date of Patent: February 20, 2024
    Assignee: Globus Medical Inc.
    Inventors: Daniel Wolfe, Daniel Spangler
  • Patent number: 11890147
    Abstract: Surgical retractors and methods thereof for retracting body tissue in a therapeutic procedure. The surgical retractor may include retractor blades have openings or channels configured to receive bone pins while maintaining accessibility and visibility of the operative window.
    Type: Grant
    Filed: November 30, 2021
    Date of Patent: February 6, 2024
    Assignee: Globus Medical, Inc
    Inventors: Adam Friedrich, Mark Weiman, Matthew Bechtel, Varun Ponmudi, Daniel Wolfe, Hilliary Kopp
  • Publication number: 20240031678
    Abstract: A method and apparatus of tracking poses of a rolling-shutter camera in an augmented reality (AR) system is provided. The method and apparatus use camera information and inertial sensor readings from Inertial Measurement Unit (IMU) to estimate the pose of the camera at a reference line. Thereafter, relative pose changes at scanlines may be calculated using the inertial sensor data. The estimated reference pose of the camera is then further refined based on the visual information from the camera, the relative pose changes and the optimized reference line pose of a previous image. Thereafter, the estimate of the scanline poses may be updated using the relative pose changes obtained in the earlier steps.
    Type: Application
    Filed: October 2, 2023
    Publication date: January 25, 2024
    Inventors: Georg Halmetschlager-Funek, Jeroen Hol, Matthias Kalkgruber, Nikolaj Kuntner, Daniel Wolf
  • Publication number: 20240015474
    Abstract: Systems and methods of providing a user interface in which map features associated with places are selectively highlighted are disclosed herein. In some example embodiments, a computer system receives a request for a transportation service associated with a place, retrieves an entrance geographic location for the place from a database, with the entrance geographic location being stored in association with the place in the database and representing an entrance for accessing the place, generating route information based on the retrieved entrance geographic location, with the route information indicating a route from an origin geographic location of a computing device of a user to the entrance geographic location of the place, and causing the generated route information to be displayed within a user interface on a computing device of the user.
    Type: Application
    Filed: September 1, 2023
    Publication date: January 11, 2024
    Inventors: Satyendra Kumar Nainwal, Daniel Wolf, Kaivalya Bachubhai Parikh, Ankit Tandon
  • Publication number: 20240004197
    Abstract: Visual-inertial tracking of an eyewear device using sensors. The eyewear device monitors the sensors of a visual inertial odometry system (VIOS) that provide input for determining a position of the device within its environment. The eyewear device determines the status of the VIOS based information from the sensors and adjusts the plurality of sensors (e.g., by turning on/off sensors, changing the sampling rate, of a combination thereof) based on the determined status. The eyewear device then determines the position of the eyewear device within the environment using the adjusted plurality of sensors.
    Type: Application
    Filed: September 14, 2023
    Publication date: January 4, 2024
    Inventors: Olha Borys, Georg Halmetschlager-Funek, Matthias Kalkgruber, Daniel Wolf, Jakob Zillner
  • Publication number: 20230421895
    Abstract: A hand-tracking input pipeline dimming system for an AR system is provided. The AR system deactivates the hand-tracking input pipeline and places a camera component of the hand-tracking input pipeline in a limited operational mode. The AR system uses the camera component to detect initiation of a gesture by a user of the AR system and in response to detecting the initiation of the gesture, the AR system activates the hand-tracking input pipeline and places the camera component in a fully operational mode.
    Type: Application
    Filed: September 19, 2022
    Publication date: December 28, 2023
    Inventors: Jan Bajana, Daniel Colascione, Georgios Evangelidis, Erick Mendez Mendez, Daniel Wolf
  • Patent number: 11856476
    Abstract: Systems and methods of providing a user interface in which map features associated with places are selectively highlighted are disclosed herein. In some example embodiments, a computer system receives a request for a transportation service associated with a place, retrieves an entrance geographic location for the place from a database, with the entrance geographic location being stored in association with the place in the database and representing an entrance for accessing the place, generating route information based on the retrieved entrance geographic location, with the route information indicating a route from an origin geographic location of a computing device of a user to the entrance geographic location of the place, and causing the generated route information to be displayed within a user interface on a computing device of the user.
    Type: Grant
    Filed: January 6, 2023
    Date of Patent: December 26, 2023
    Assignee: Uber Technology, Inc.
    Inventors: Satyendra Kumar Nainwal, Daniel Wolf, Kaivalya Bachubhai Parikh, Ankit Tandon
  • Publication number: 20230410461
    Abstract: A method for detecting a marker in a camera image is described. In one aspect, a method includes accessing a camera image generated by an optical sensor of an augmented reality (AR) device, accessing a query image from a storage of the AR device, and identifying, using a feature detector program, the query image in the camera image without scaling the camera image.
    Type: Application
    Filed: June 15, 2023
    Publication date: December 21, 2023
    Inventors: Nithin Gollahalli Ananda, Thomas Muttenthaler, Edward James Rosten, Daniel Wolf
  • Publication number: 20230390482
    Abstract: A device for administering medical liquid, in particular an infusion pump, and a system that includes the device and a holding device. The device includes a housing and a component that generates heat during use of the device. The component is arranged inside the housing. A passive heat sink is attached to an outer side of the housing and is connected thermally, in particular in a heat-conducting manner, to the component. The heat sink has cooling fins.
    Type: Application
    Filed: February 22, 2022
    Publication date: December 7, 2023
    Inventors: Christoph Erlen, Gerhard Schoeffel, Joachim Schuetz, Daniel Wolf
  • Publication number: 20230388632
    Abstract: A method for limiting motion blur in a visual tracking system is described. In one aspect, the method includes accessing a first image generated by an optical sensor of the visual tracking system, identifying camera operating parameters of the optical sensor for the first image, determining a motion of the optical sensor for the first image, determining a motion blur level of the first image based on the camera operating parameters of the optical sensor and the motion of the optical sensor, and adjusting the camera operating parameters of the optical sensor based on the motion blur level.
    Type: Application
    Filed: August 14, 2023
    Publication date: November 30, 2023
    Inventors: Bo Ding, Ozi Egri, Matthias Kalkgruber, Daniel Wolf
  • Publication number: 20230350206
    Abstract: Devices and methods for dynamic power configuration (e.g., reduction) for thermal management (e.g., mitigation) in a wearable electronic device such as an eyewear device. The wearable electronic device monitors its temperature and, responsive to the temperature, configures the services it provides to operate in different modes for thermal mitigation (e.g., to prevent overheating). For example, based on temperature, the wearable electronic device adjusts sensors (e.g., turns cameras on or off, changes the sampling rate, or a combination thereof) and adjusts display components (e.g., adjusted rate at which a graphical processing unit generates images and a visual display is updated). This enables the wearable electronic device to consume less power when temperatures are too high in order to provide thermal mitigation.
    Type: Application
    Filed: July 6, 2023
    Publication date: November 2, 2023
    Applicant: Snap Inc.
    Inventors: Sumant Hanumante, Bernhard Jung, Matthias Kalkgruber, Anton Kondratenko, Edward Lee Kim-Koon, Gerald Nilles, John James Robertson, Dmitry Ryuma, Alexander Sourov, Daniel Wolf
  • Patent number: 11789266
    Abstract: Visual-inertial tracking of an eyewear device using sensors. The eyewear device monitors the sensors of a visual inertial odometry system (VIOS) that provide input for determining a position of the device within its environment. The eyewear device determines the status of the VIOS based information from the sensors and adjusts the plurality of sensors (e.g., by turning on/off sensors, changing the sampling rate, of a combination thereof) based on the determined status. The eyewear device then determines the position of the eyewear device within the environment using the adjusted plurality of sensors.
    Type: Grant
    Filed: December 15, 2020
    Date of Patent: October 17, 2023
    Assignee: Snap Inc.
    Inventors: Olha Borys, Georg Halmetschlager-Funek, Matthias Kalkgruber, Daniel Wolf, Jakob Zillner
  • Patent number: 11792517
    Abstract: A method and apparatus of tracking poses of a rolling-shutter camera in an augmented reality (AR) system is provided. The method and apparatus use camera information and inertial sensor readings from Inertial Measurement Unit (IMU) to estimate the pose of the camera at a reference line. Thereafter, relative pose changes at scanlines may be calculated using the inertial sensor data. The estimated reference pose of the camera is then further refined based on the visual information from the camera, the relative pose changes and the optimized reference line pose of a previous image. Thereafter, the estimate of the scanline poses may be updated using the relative pose changes obtained in the earlier steps.
    Type: Grant
    Filed: December 28, 2020
    Date of Patent: October 17, 2023
    Assignee: Snap Inc.
    Inventors: Georg Halmetschlager-Funek, Jeroen Hol, Matthias Kalkgruber, Nikolaj Kuntner, Daniel Wolf
  • Publication number: 20230300464
    Abstract: A method for mitigating motion blur in a visual-inertial tracking system is described. In one aspect, the method includes accessing a first image generated by an optical sensor of the visual tracking system, accessing a second image generated by the optical sensor of the visual tracking system, the second image following the first image, determining a first motion blur level of the first image, determining a second motion blur level of the second image, identifying a scale change between the first image and the second image, determining a first optimal scale level for the first image based on the first motion blur level and the scale change, and determining a second optimal scale level for the second image based on the second motion blur level and the scale change.
    Type: Application
    Filed: May 22, 2023
    Publication date: September 21, 2023
    Inventors: Matthias Kalkgruber, Daniel Wolf
  • Patent number: 11765457
    Abstract: A method for limiting motion blur in a visual tracking system is described. In one aspect, the method includes accessing a first image generated by an optical sensor of the visual tracking system, identifying camera operating parameters of the optical sensor for the first image, determining a motion of the optical sensor for the first image, determining a motion blur level of the first image based on the camera operating parameters of the optical sensor and the motion of the optical sensor, and adjusting the camera operating parameters of the optical sensor based on the motion blur level.
    Type: Grant
    Filed: November 9, 2021
    Date of Patent: September 19, 2023
    Assignee: SNAP INC.
    Inventors: Bo Ding, Ozi Egri, Matthias Kalkgruber, Daniel Wolf
  • Patent number: 11725960
    Abstract: In some example embodiments, a computer system performs operations comprising: receiving a request for a transportation service associated with a place; determining a type of the transportation service from among a plurality of types of transportation services based on the request; retrieving an entrance geographic location for the place from a database based on the type of the transportation service, the entrance geographic location being stored in association with the place in the database, and the entrance geographic location representing an entrance for accessing the place; generating route information based on the retrieved entrance geographic location, the route information indicating a route from an origin geographic location of a computing device of a user to the entrance geographic location of the place; and causing the generated route information to be displayed within a user interface on a computing device of the user.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: August 15, 2023
    Assignee: Uber Technologies, Inc.
    Inventors: Satyendra Kumar Nainwal, Daniel Wolf, Kaivalya Bachubhai Parikh, Shivendra Pratap Singh, Dineshkumar Karuppanna Gounder Ramasamy
  • Patent number: 11719939
    Abstract: Devices and methods for dynamic power configuration (e.g., reduction) for thermal management (e.g., mitigation) in a wearable electronic device such as an eyewear device. The wearable electronic device monitors its temperature and, responsive to the temperature, configures the services is provides to operate in different modes for thermal mitigation (e.g., to prevent overheating). For example, based on temperature, the wearable electronic device adjusts sensors (e.g., turns cameras on or off, changes the sampling rate, or a combination thereof) and adjusts display components (e.g., adjusted rate at which a graphical processing unit generates images and a visual display is updated). This enables the wearable electronic device to consume less power when temperatures are too high in order to provide thermal mitigation.
    Type: Grant
    Filed: May 9, 2022
    Date of Patent: August 8, 2023
    Assignee: Snap Inc.
    Inventors: Sumant Hanumante, Bernhard Jung, Matthias Kalkgruber, Anton Kondratenko, Edward Lee Kim-Koon, Gerald Nilles, John James Robertson, Dmitry Ryuma, Alexander Sourov, Daniel Wolf
  • Publication number: 20230214660
    Abstract: A method for training a self-learning algorithm, where the algorithm is designed, as a function of one or more physical parameters of a technical device, to predict one or more values of one or more physical parameters of the device. The algorithm undergoes a basic training using values of the physical parameters that have been obtained by simulation of at least part of the device. The algorithm then undergoes build-up training with measured values of the physical parameters.
    Type: Application
    Filed: March 16, 2021
    Publication date: July 6, 2023
    Applicant: ZF Friedrichshafen AG
    Inventors: Christian Riess, Fabio Da Costa Ferreira, Daniel Wolf, Dietmar Tilch, Tobias Ehlgen
  • Publication number: 20230205311
    Abstract: A method for calibrating a visual-inertial tracking system is described. A device operates the visual-inertial tracking system without receiving a tracking request from a virtual object display application. In response to operating the visual-inertial tracking system, the device accesses sensor data from sensors at the device. The device identifies, based on the sensor data, a first calibration parameter value of the visual-inertial tracking system and stores the first calibration parameter value. The system detects a tracking request from the virtual object display application. In response to the tracking request, the system accesses the first calibration parameter value and determines a second calibration parameter value from the first calibration parameter value.
    Type: Application
    Filed: March 2, 2023
    Publication date: June 29, 2023
    Inventors: Georg Halmetschlager-Funek, Matthias kALKGRUBER, Daniel Wolf, Jakob Zillner
  • Patent number: 11683585
    Abstract: A method for mitigating motion blur in a visual-inertial tracking system is described. In one aspect, the method includes accessing a first image generated by an optical sensor of the visual tracking system, accessing a second image generated by the optical sensor of the visual tracking system, the second image following the first image, determining a first motion blur level of the first image, determining a second motion blur level of the second image, identifying a scale change between the first image and the second image, determining a first optimal scale level for the first image based on the first motion blur level and the scale change, and determining a second optimal scale level for the second image based on the second motion blur level and the scale change.
    Type: Grant
    Filed: November 8, 2021
    Date of Patent: June 20, 2023
    Assignee: SNAP INC.
    Inventors: Matthias Kalkgruber, Daniel Wolf