Patents by Inventor Ross Daniel Hinrichsen

Ross Daniel Hinrichsen 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: 20260151190
    Abstract: Embodiments of the present disclosure may include a method for planning and performing an interventional procedure on a patient, the method including steps of providing an augmented reality system, a tracked instrument, a first image acquisition system, a second image acquisition system, and a computer system with a processor and a memory, the tracked instrument having a plurality of sensors to provide a tracked instrument dataset, the first image acquisition system, and the computer system in communication with the augmented reality system, the tracked instrument, the first image acquisition system, and the second image acquisition system. Embodiments may also include acquiring, by the first image acquisition system, the first holographic image dataset from the patient. Embodiments may also include acquiring, by the second image acquisition system, the second holographic image dataset from the patient.
    Type: Application
    Filed: November 4, 2025
    Publication date: June 4, 2026
    Inventors: Jeffrey Harold Yanof, Peter Nicholas Braido, Aydan Thomas Hanlon, Ross Daniel Hinrichsen
  • Patent number: 12484974
    Abstract: Embodiments of the present disclosure may include a method for planning and performing an interventional procedure on a patient, the method including steps of providing an augmented reality system, a tracked instrument, a first image acquisition system, a second image acquisition system, and a computer system with a processor and a memory, the tracked instrument having a plurality of sensors to provide a tracked instrument dataset, the first image acquisition system, and the computer system in communication with the augmented reality system, the tracked instrument, the first image acquisition system, and the second image acquisition system. Embodiments may also include acquiring, by the first image acquisition system, the first holographic image dataset from the patient. Embodiments may also include acquiring, by the second image acquisition system, the second holographic image dataset from the patient.
    Type: Grant
    Filed: December 29, 2023
    Date of Patent: December 2, 2025
    Assignee: MEDIVIEW XR, INC.
    Inventors: Jeffrey H. Yanof, Peter Nicholas Braido, Aydan Thomas Hanlon, Ross Daniel Hinrichsen
  • Publication number: 20250331924
    Abstract: A system and method for performing a medical procedure on a location of interest of a patient includes a first imaging system, a second imaging system, a computer system, and an augmented reality display system. The first imaging system can be configured to acquire a first image and the second imaging system can be configured to acquire a second image of the location of interest. The computer system can be configured to register the first image and the second image, establish a spatial correlation between the first image, the second image, and the patient, and generate a holographic visualization combining the first image and the second image. The augmented reality display system can be configured to project the holographic visualization and align the first image and the second image with the patient.
    Type: Application
    Filed: April 28, 2025
    Publication date: October 30, 2025
    Inventors: Jeffrey Harold Yanof, Adam E. Rakestraw, Gaurav Gadodia, Aydan Thomas Hanlon, Peter Nicholas Braido, Ross Daniel Hinrichsen
  • Publication number: 20250204990
    Abstract: A system for image-guided intervention of a patient is provided. The system can include an endoluminal probe, a tracking system, a display system, and a registration system. The endoluminal probe can be configured to acquire a real-time image of an internal site within the patient. The tracking system can be configured to track a position and an orientation of the endoluminal probe. The display system can be configured to display the real-time image acquired by the endoluminal probe. The registration system can be configured to register the real-time image from the endoluminal probe with a preoperative image of the internal site. The display system can overlay the registered real-time image from the endoluminal probe with the preoperative image to assist in navigation and intervention at the internal site.
    Type: Application
    Filed: December 13, 2024
    Publication date: June 26, 2025
    Inventors: Jeffrey Harold Yanof, Gaurav Gadodia, Peter Nicholas Braido, Aydan Thomas Hanlon, Ross Daniel Hinrichsen, Adam E. Rakestraw
  • Publication number: 20240394985
    Abstract: Ways to register an anatomical feature of a patient using augmented reality are provided. Included is a system for registration of an anatomical feature of a patient, the system having an imaging system, a tracked instrument, an augmented reality system, and a computer system. The imaging system can be configured to image the patient and generate an imaging dataset. The tracked instrument can be configured to generate a tracked instrument dataset. The augmented reality system can be configured to display an imaging volume hologram in augmented reality. The computer system can be in communication with the augmented reality system, the imaging system, and the tracked instrument. The computer system can generate an imaging volume dataset based on a first axial plane and a second axial plane, can render the imaging volume dataset into the imaging volume hologram, and can project the image volume hologram in an augmented reality.
    Type: Application
    Filed: May 24, 2024
    Publication date: November 28, 2024
    Inventors: Aydan Thomas Hanlon, Jeffrey Harold Yanof, Ross Daniel Hinrichsen, Peter Nicholas Braido
  • Publication number: 20240358436
    Abstract: The present disclosure includes methods for improving surgical precision and outcomes in medical procedures through the use of an augmented reality system. The method involves generating a preoperative plan by visualizing a holographic representation of a patient's anatomy within an augmented reality environment, recording procedure data based on the preoperative plan, updating the augmented reality system using the recorded data, and applying the updated system to establish a continuous improvement feedback loop. This approach enhances surgical accuracy and patient outcomes by integrating real-time data feedback into the surgical process, thereby optimizing surgical procedures and promoting continuous improvement in medical practices.
    Type: Application
    Filed: April 25, 2024
    Publication date: October 31, 2024
    Inventors: Jeffrey H. Yanof, Aydan Thomas Hanlon, Ross Daniel Hinrichsen, Peter Nicholas Braido, Gabrielle Stefy, Michael Russel Evans, Charles Martin, III
  • Publication number: 20240225748
    Abstract: Embodiments of the present disclosure may include a method for planning and performing an interventional procedure on a patient, the method including steps of providing an augmented reality system, a tracked instrument, a first image acquisition system, a second image acquisition system, and a computer system with a processor and a memory, the tracked instrument having a plurality of sensors to provide a tracked instrument dataset, the first image acquisition system, and the computer system in communication with the augmented reality system, the tracked instrument, the first image acquisition system, and the second image acquisition system. Embodiments may also include acquiring, by the first image acquisition system, the first holographic image dataset from the patient. Embodiments may also include acquiring, by the second image acquisition system, the second holographic image dataset from the patient.
    Type: Application
    Filed: December 29, 2023
    Publication date: July 11, 2024
    Inventors: Jeffrey H. Yanof, Peter Nicholas Braido, Aydan Thomas Hanlon, Ross Daniel Hinrichsen