Patents by Inventor Adam Farwick

Adam Farwick 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: 20250073453
    Abstract: A system for combined electromyography (EMG) measurements and stimulation of a target anatomy includes a garment with electrodes. An analog cable connects with the electrodes of the garment. A stimulator inputs electrical energy to the analog cable to deliver transcutaneous electrical stimulation. Stimulator isolation circuitry switches between connecting the stimulator with the analog cable and electrically disconnecting the stimulator from the analog cable. EMG circuitry receives analog EMG signals from the analog cable and forms digitized EMG data. EMG isolation circuitry switches between electrically connecting the EMG circuitry with the analog cable and electrically disconnecting the EMG circuitry from the analog cable. Control circuitry cyclically switches between stimulation and EMG time intervals.
    Type: Application
    Filed: March 21, 2024
    Publication date: March 6, 2025
    Inventors: Nicholas Annetta, Joshua R. Branch, Adam Farwick, Thomas Krenelka, Albert E. Weller, III, Jesse Keckler
  • Patent number: 11291847
    Abstract: Described are systems and methods for preventing, diagnosing, and/or treating one or more medical conditions. The medical conditions can be ocular and/or neurological diseases, disorders, and/or conditions. The systems and methods can employ a microstimulator that is configured to be placed within an anatomical structure of a subject. The microstimulator can be capacitively linked to an external electronic device to provide neuromodulation to a biological target site proximal to the anatomical structure. The microstimulator can include a body and an electrically conductive insert arranged within the body to create a capacitively coupled link with the external electronic device. The electrically conductive insert can receive a power signal from an external electronic device and convert the power signal to deliver a therapy signal to the biological target site.
    Type: Grant
    Filed: December 22, 2017
    Date of Patent: April 5, 2022
    Assignee: The Regents of the University of Colorado, a body corporate
    Inventors: Anthony V. Caparso, Malik Kahook, Naresh Mandava, Noah Lemire, Adam Farwick, Steve Wilder, Steve Risser
  • Publication number: 20200188670
    Abstract: Described are systems and methods for preventing, diagnosing, and/or treating one or more medical conditions. The medical conditions can be ocular and/or neurological diseases, disorders, and/or conditions. The systems and methods can employ a microstimulator that is configured to be placed within an anatomical structure of a subject. The microstimulator can be capacitively linked to an external electronic device to provide neuromodulation to a biological target site proximal to the anatomical structure. The microstimulator can include a body and an electrically conductive insert arranged within the body to create a capacitively coupled link with the external electronic device. The electrically conductive insert can receive a power signal from an external electronic device and convert the power signal to deliver a therapy signal to the biological target site.
    Type: Application
    Filed: December 22, 2017
    Publication date: June 18, 2020
    Inventors: Anthony V. Caparso, Malik Kahook, Naresh Mandava, Noah Lemire, Adam Farwick, Steve Wilder, Steve Risser
  • Publication number: 20180154151
    Abstract: Described are systems and methods for preventing, diagnosing, and/or treating one or more medical conditions. The medical conditions can be ocular and/or neurological diseases, disorders, and/or conditions. The systems and methods can employ a microstimulator that is configured to be placed within an anatomical structure of a subject. The microstimulator can be capacitively linked to an external electronic device to provide neuromodulation to a biological target site proximal to the anatomical structure. The microstimulator can include a body and an electrically conductive insert arranged within the body to create a capacitively coupled link with the external electronic device. The electrically conductive insert can receive a power signal from an external electronic device and convert the power signal to deliver a therapy signal to the biological target site.
    Type: Application
    Filed: January 19, 2018
    Publication date: June 7, 2018
    Inventors: Anthony V. Caparso, Malik Kahook, Naresh Mandava, Noah Lemire, Adam Farwick, Steve Wilder, Steve Risser
  • Publication number: 20180140841
    Abstract: Described are systems and methods for preventing, diagnosing, and/or treating one or more medical conditions. The medical conditions can be ocular and/or neurological diseases, disorders, and/or conditions. The systems and methods can employ a microstimulator that is configured to be placed within an anatomical structure of a subject. The microstimulator can be capacitively linked to an external electronic device to provide neuromodulation to a biological target site proximal to the anatomical structure. The microstimulator can include a body and an electrically conductive insert arranged within the body to create a capacitively coupled link with the external electronic device. The electrically conductive insert can receive a power signal from an external electronic device and convert the power signal to deliver a therapy signal to the biological target site.
    Type: Application
    Filed: January 19, 2018
    Publication date: May 24, 2018
    Inventors: Anthony V. Caparso, Malik Kahook, Naresh Mandava, Noah Lemire, Adam Farwick, Steve Wilder, Steve Risser
  • Publication number: 20180133478
    Abstract: Described are systems and methods for preventing, diagnosing, and/or treating one or more medical conditions. The medical conditions can be ocular and/or neurological diseases, disorders, and/or conditions. The systems and methods can employ a microstimulator that is configured to be placed within an anatomical structure of a subject. The microstimulator can be capacitively linked to an external electronic device to provide neuromodulation to a biological target site proximal to the anatomical structure. The microstimulator can include a body and an electrically conductive insert arranged within the body to create a capacitively coupled link with the external electronic device. The electrically conductive insert can receive a power signal from an external electronic device and convert the power signal to deliver a therapy signal to the biological target site.
    Type: Application
    Filed: December 22, 2017
    Publication date: May 17, 2018
    Inventors: Anthony V. Caparso, Malik Kahook, Naresh Mandava, Noah Lemire, Adam Farwick, Steve Wilder, Steve Risser