Patents by Inventor Nawar Nazar Yousif Al-Rawas

Nawar Nazar Yousif Al-Rawas 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: 10165966
    Abstract: Methods for non-invasively and accurately estimating and monitoring resistance and work of breathing parameters from airway pressure and flow sensors attached to the ventilator-dependent patient using an adaptive mathematical model are provided. These methods are based on calculations using multiple parameters derived from the above-mentioned sensors. The resistance and work of breathing parameters are important for: assessing patient status and diagnosis, appropriately selecting treatment, assessing efficacy of treatment, and properly adjusting ventilatory support.
    Type: Grant
    Filed: March 5, 2014
    Date of Patent: January 1, 2019
    Assignees: University of Florida Research Foundation, Incorporated, Convergent Engineering, Inc.
    Inventors: Michael J. Banner, Neil Russell Euliano, Andrea Gabrielli, Nawar Nazar Yousif Al-Rawas
  • Publication number: 20140276173
    Abstract: Methods for non-invasively and accurately estimating and monitoring resistance and work of breathing parameters from airway pressure and flow sensors attached to the ventilator-dependent patient using an adaptive mathematical model are provided. These methods are based on calculations using multiple parameters derived from the above-mentioned sensors. The resistance and work of breathing parameters are important for: assessing patient status and diagnosis, appropriately selecting treatment, assessing efficacy of treatment, and properly adjusting ventilatory support.
    Type: Application
    Filed: March 5, 2014
    Publication date: September 18, 2014
    Applicants: Convergent Engineering, Inc., University of Florida Research Foundation Incorporated
    Inventors: Michael J. BANNER, Neil Russel EULIANO, Andrea GABRIELLI, Nawar Nazar Yousif AL-RAWAS
  • Patent number: 8728002
    Abstract: A system and method of calculating an accurate estimate of pulmonary mechanics of a patient, including but not limited to compliance, resistance, and plateau pressure without modification of ventilator flow pattern. The accurate estimation of pulmonary mechanics is derived from airway pressure and flow sensors attached to the patient using novel mathematical models. These estimated figures for pulmonary mechanics (respiratory system compliance and resistance) are important for monitoring patient treatment efficacy during mechanical ventilation and ensuring alveoli do not over distend to avoid baro- and/or volutrauma, especially in patients with restrictive lung diseases. The subject method of calculating these accurate estimated figures for pulmonary mechanics is based on linear or non-linear calculations using multiple parameters derived from the above-mentioned sensors.
    Type: Grant
    Filed: December 28, 2010
    Date of Patent: May 20, 2014
    Assignees: University of Florida Research Foundation, Inc., Convergent Engineering, Inc.
    Inventors: Nawar Nazar Yousif Al-Rawas, Andrea Gabrielli, Neil Russell Euliano, Michael Joseph Banner
  • Publication number: 20120330177
    Abstract: A system and method of calculating an accurate estimate of pulmonary mechanics of a patient, including but not limited to compliance, resistance, and plateau pressure without modification of ventilator flow pattern. The accurate estimation of pulmonary mechanics is derived from airway pressure and flow sensors attached to the patient using novel mathematical models. These estimated figures for pulmonary mechanics (respiratory system compliance and resistance) are important for monitoring patient treatment efficacy during mechanical ventilation and ensuring alveoli do not over distend to avoid baro- and/or volutrauma, especially in patients with restrictive lung diseases. The subject method of calculating these accurate estimated figures for pulmonary mechanics is based on linear or non-linear calculations using multiple parameters derived from the above-mentioned sensors.
    Type: Application
    Filed: December 28, 2010
    Publication date: December 27, 2012
    Inventors: Nawar Nazar Yousif Al-Rawas, Andrea Gabrielli, Neil Russell Euliano, Michael Joseph Banner