Patents by Inventor Jose Miguel CARMENA RAMON

Jose Miguel CARMENA RAMON 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: 11883175
    Abstract: Generator systems and methods are provided for generating a neuromuscular-to-motion decoder from a healthy limb. The generator system is configured to receive neuromuscular signals from neuromuscular sensors associated to predefined muscle/nerve locations of at least one pair of agonist and antagonist muscles/nerves of the healthy limb, obtained during performance by the person of a predefined exercise (defined by predefined exercise data) with the healthy limb; to receive motion signals from motion sensors associated to predefined positions of the healthy limb, during performance by the person of the predefined exercise with the healthy limb; and to generate the neuromuscular-to-motion decoder by mapping the neuromuscular signals to the motion signals over time using a mapping method. Rehabilitation systems are also provided for rehabilitating a paretic limb by using a neuromuscular-to-motion decoder produced by a generator system.
    Type: Grant
    Filed: May 21, 2019
    Date of Patent: January 30, 2024
    Assignee: FUNDACION TECNALIA RESEARCH & INNOVATION
    Inventors: Ander Ramos Murguialday, Andrea Sarasola, Jose Miguel Carmena Ramon, Joseph McIntyre
  • Patent number: 11259942
    Abstract: A system or method for motor rehabilitation of a paretic limb including: a first plurality of sensors for registering brain neurosignals; a body-actuator; a hybrid brain machine interface for decoding brain neurosignals into movements of the body-actuator; a second plurality of EMG sensors couplable to the paretic limb for registering its EMG activity; a device for providing the patient with instructions relative to a series of exercises and/or tasks to be carried out with the paretic limb; wherein upon carrying out a series of training sessions, each session comprising at least a set of such instructions, the hybrid brain machine interface is configured to switch between controlling the movements of the body-actuator based on the decoded brain neurosignals and a hybrid control of the movements of the body-actuator, when a significant level of decodable EMG activity has been registered, the hybrid control being an EMG-gated brain control.
    Type: Grant
    Filed: November 14, 2014
    Date of Patent: March 1, 2022
    Assignees: FUNDACION TECNALIA RESEARCH & INNOVATION, THE REGENTS OF THE UNIVERSITY OF CALIFORNIA, EBERHARD KARLS UNIVERSITAET TUEBINGEN
    Inventors: Ander Ramos Murguialday, Niels Birbaumer, Jose Miguel Carmena Ramon
  • Publication number: 20190269343
    Abstract: Generator systems and methods are provided for generating a neuromuscular-to-motion decoder from a healthy limb. The generator system is configured to receive neuromuscular signals from neuromuscular sensors associated to predefined muscle/nerve locations of at least one pair of agonist and antagonist muscles/nerves of the healthy limb, obtained during performance by the person of a predefined exercise (defined by predefined exercise data) with the healthy limb; to receive motion signals from motion sensors associated to predefined positions of the healthy limb, during performance by the person of the predefined exercise with the healthy limb; and to generate the neuromuscular-to-motion decoder by mapping the neuromuscular signals to the motion signals over time using a mapping method. Rehabilitation systems are also provided for rehabilitating a paretic limb by using a neuromuscular-to-motion decoder produced by a generator system.
    Type: Application
    Filed: May 21, 2019
    Publication date: September 5, 2019
    Inventors: Ander RAMOS MURGUIALDAY, Andrea SARASOLA, Jose Miguel CARMENA RAMON, Joseph MCINTYRE
  • Publication number: 20170325705
    Abstract: A system or method for motor rehabilitation of a paretic limb including: a first plurality of sensors for registering brain neurosignals; a body-actuator; a hybrid brain machine interface for decoding brain neurosignals into movements of the body-actuator; a second plurality of EMG sensors couplable to the paretic limb for registering its EMG activity; a device for providing the patient with instructions relative to a series of exercises and/or tasks to be carried out with the paretic limb; wherein upon carrying out a series of training sessions, each session comprising at least a set of such instructions, the hybrid brain machine interface is configured to switch between controlling the movements of the body-actuator based on the decoded brain neurosignals and a hybrid control of the movements of the body-actuator, when a significant level of decodable EMG activity has been registered, the hybrid control being an EMG-gated brain control.
    Type: Application
    Filed: November 14, 2014
    Publication date: November 16, 2017
    Applicants: FUNDACION TECNALIA RESEARCH & INNOVATION, THE REGENTS OF THE UNIVERSITY OF CALIFORNIA, EBERHARD KARLS UNIVERSITAET TUEBINGEN
    Inventors: Ander RAMOS MURGUIALDAY, Niels BIRBAUMER, Jose Miguel CARMENA RAMON