Patents by Inventor Vytautas Petkus

Vytautas Petkus 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: 20230329572
    Abstract: The invention is directed generally to a method and apparatus for non-invasively determining and intraorbital and intracranial compliance values in mammals including humans.
    Type: Application
    Filed: April 2, 2023
    Publication date: October 19, 2023
    Inventors: Arminas Ragauskas, Vytautas Petkus, Edvinas Chaleckas, Rolandas Zakelis, Laimonas Bartusis, Vilma Putnynaite, Yasin Hamarat, Solventa Krakauskaite, Mantas Deimantavicius, Tomas Tamosuitis
  • Publication number: 20230109678
    Abstract: The present invention is directed generally to a method and apparatus for human brain neuroprotection during surgery. The invention includes use of a heart-lung machine to generate periodic rectangular pulsation of blood flow. The invention uses a non-invasive CA monitor to continuously record transient functions such as dynamic autoregulation functions of a human brain cerebrovascular autoregulation system and process the data to generate an alarm to indicate CA impairment and take steps to minimize the CA impairment event.
    Type: Application
    Filed: March 1, 2022
    Publication date: April 13, 2023
    Inventors: Arminas Ragauskas, Vytautas Petkus, Edvinas Chaleckas
  • Patent number: 9662028
    Abstract: A method and system of predicting a hypotensive episode in a patient using one or more time varying hypotension specific biomarkers corresponding to physiological processes in the patient. Data derived from sensors or other measurement devices such as ECG sensors can be used to generate biomarkers. The biomarkers can then be used to generate an acute hypotension prediction classifier, or monitored factor, derived from a three dimensional temporal representation of two or more biomarkers. When the monitored factor exceeds a predetermined threshold the method and system trigger an alarm before an appearance of a hypotensive episode in the patient.
    Type: Grant
    Filed: June 29, 2015
    Date of Patent: May 30, 2017
    Assignee: Kaunas University of Technology
    Inventors: Alfonsas Vainoras, Zenonas Navickas, Mindaugas Balciunas, Arminas Ragauskas, Kristina Berskiene, Vytautas Petkus, Rimtautas Ruseckas
  • Publication number: 20160374580
    Abstract: A method and system of predicting a hypotensive episode in a patient using one or more time varying hypotension specific biomarkers corresponding to physiological processes in the patient. Data derived from sensors or other measurement devices such as ECG sensors can be used to generate biomarkers. The biomarkers can then be used to generate an acute hypotension prediction classifier, or monitored factor, derived from a three dimensional temporal representation of two or more biomarkers. When the monitored factor exceeds a predetermined threshold the method and system trigger an alarm before an appearance of a hypotensive episode in the patient.
    Type: Application
    Filed: June 29, 2015
    Publication date: December 29, 2016
    Inventors: Alfonsas Vainoras, Zenonas Navickas, Mindaugas Balciunas, Arminas Ragauskas, Kristina Berskiene, Vytautas Petkus, Rimtautas Ruseckas
  • Patent number: 9168023
    Abstract: A method and apparatus for continuously measuring the absolute intracranial pressure in a non-invasive manner is described by using an ultrasonic Doppler device which detects the pulsatility indexes of the blood flow inside the eye artery for both intracranial and extracranial eye artery portions. The eye in which the blood flow is monitored is subjected to a small pressure, sufficient to equalize the pulsatility index measurements of the internal and external portions of the eye artery. The pressure at which such equalization occurs is used as a reference for autocalibration of the apparatus so that continuous absolute intracranial pressure measurements may be taken over a particular sampling period.
    Type: Grant
    Filed: June 4, 2012
    Date of Patent: October 27, 2015
    Assignee: UAB Vittamed
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaldas Raisutis
  • Patent number: 8926515
    Abstract: A method and apparatus for continuously measuring the absolute intracranial pressure in a non-invasive manner is described by using an ultrasonic Doppler device which detects the pulsatility indexes of the blood flow inside the eye artery for both intracranial and extracranial eye artery portions. The eye in which the blood flow is monitored is subjected to a small pressure, sufficient to equalize the pulsatility index measurements of the internal and external portions of the eye artery. The pressure at which such equalization occurs is used as a reference for autocalibration of the apparatus so that continuous absolute intracranial pressure measurements may be taken over a particular sampling period.
    Type: Grant
    Filed: May 15, 2008
    Date of Patent: January 6, 2015
    Assignee: UAB Vittamed
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaldas Raisutis
  • Patent number: 8394025
    Abstract: A method and apparatus for obtaining the absolute value of intracranial pressure in a non-invasive manner is described by using an ultrasonic Doppler measuring device which detects the intracranial and extracranial blood flow velocities of the intracranial and extracranial segments of the ophthalmic artery. The eye in which the blood flow is monitored is subjected to an external pressure, sufficient to equalize the intracranial and extracranial angle-independent blood flow factors calculated from the intracranial velocity signal and extracranial velocity signal.
    Type: Grant
    Filed: June 26, 2009
    Date of Patent: March 12, 2013
    Assignee: UAB Vittamed
    Inventors: Arminas Ragauskas, Vytautas Petkus, Romanas Chomskis, Rolandas Zakelis, Gediminas Daubaris, Mark Moehring, Eugene A. Saxon, Robert Giansiracusa, Steve Swedenburg, Renaldas Raisutis
  • Publication number: 20120238885
    Abstract: A method and apparatus for continuously measuring the absolute intracranial pressure in a non-invasive manner is described by using an ultrasonic Doppler device which detects the pulsatility indexes of the blood flow inside the eye artery for both intracranial and extracranial eye artery portions. The eye in which the blood flow is monitored is subjected to a small pressure, sufficient to equalize the pulsatility index measurements of the internal and external portions of the eye artery. The pressure at which such equalization occurs is used as a reference for autocalibration of the apparatus so that continuous absolute intracranial pressure measurements may be taken over a particular sampling period.
    Type: Application
    Filed: June 4, 2012
    Publication date: September 20, 2012
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaldas Raisutis
  • Patent number: 7998075
    Abstract: A non-invasive method for monitoring of cerebrovascular blood flow autoregulation state includes sensing intracranial blood volume waves, filtering a slow wave, respiratory wave, and pulse wave informative components from said intracranial blood volume waves, filtering slow wave and respiratory wave reference components from the pulse wave envelope, calculating a first phase shift between said slow wave informative component and said slow wave reference component, calculating a second phase shift between said respiratory wave informative component and said respiratory wave reference component, and calculating the index of evaluation of the status of cerebral autoregulation state (ICAS) from said first phase shift and said second phase shift.
    Type: Grant
    Filed: April 25, 2008
    Date of Patent: August 16, 2011
    Assignee: UAB Vittamed Technologijos
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaidas Raisutis
  • Patent number: 7938780
    Abstract: An ultrasonic method for indicating a characteristic of intracranial components' volume changes includes the transmission of broadband ultrasound from a transmitting transducer positioned on one side of a human head to a receiving transducer located on another side of the human head with decomposition of the received signal into narrowband components and determination therefrom of group delay, phase angle and attenuation as a basis for derivation of the characteristic of the intracranial media.
    Type: Grant
    Filed: January 31, 2008
    Date of Patent: May 10, 2011
    Assignee: UAB Vittamed Technologijos
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaldas Raisutis
  • Publication number: 20100331684
    Abstract: A method and apparatus for obtaining the absolute value of intracranial pressure in a non-invasive manner is described by using an ultrasonic Doppler measuring device which detects the intracranial and extracranial blood flow velocities of the intracranial and extracranial segments of the ophthalmic artery. The eye in which the blood flow is monitored is subjected to an external pressure, sufficient to equalize the intracranial and extracranial angle-independent blood flow factors calculated from the intracranial velocity signal and extracranial velocity signal. The absolute value of the intracranial pressure is identified as that external pressure at which such equalization occurs.
    Type: Application
    Filed: June 26, 2009
    Publication date: December 30, 2010
    Inventors: Arminas Ragauskas, Vytautas Petkus, Romanas Chomskis, Rolandas Zakelis, Gediminas Daubaris, Mark Moehring, Gene Saxon, Robert Giansiracusa, Steve Swedenburg
  • Publication number: 20090287084
    Abstract: A method and apparatus for continuously measuring the absolute intracranial pressure in a non-invasive manner is described by using an ultrasonic Doppler device which detects the pulsatility indexes of the blood flow inside the eye artery for both intracranial and extracranial eye artery portions. The eye in which the blood flow is monitored is subjected to a small pressure, sufficient to equalize the pulsatility index measurements of the internal and external portions of the eye artery. The pressure at which such equalization occurs is used as a reference for autocalibration of the apparatus so that continuous absolute intracranial pressure measurements may be taken over a particular sampling period.
    Type: Application
    Filed: May 15, 2008
    Publication date: November 19, 2009
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaldas Raisutis
  • Publication number: 20090270734
    Abstract: A non-invasive method for monitoring of cerebrovascular blood flow autoregulation state includes sensing intracranial blood volume waves, filtering a slow wave, respiratory wave, and pulse wave informative components from said intracranial blood volume waves, filtering slow wave and respiratory wave reference components from the pulse wave envelope, calculating a first phase shift between said slow wave informative component and said slow wave reference component, calculating a second phase shift between said respiratory wave informative component and said respiratory wave reference component, and calculating the index of evaluation of the status of cerebral autoregulation state (ICAS) from said first phase shift and said second phase shift.
    Type: Application
    Filed: April 25, 2008
    Publication date: October 29, 2009
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaidas Raisutis
  • Publication number: 20090198137
    Abstract: An ultrasonic method for indicating a characteristic of intracranial components' volume changes includes the transmission of broadband ultrasound from a transmitting transducer positioned on one side of a human head to a receiving transducer located on another side of the human head with decomposition of the received signal into narrowband components and determination therefrom of group delay, phase angle and attenuation as a basis for derivation of the characteristic of the intracranial media.
    Type: Application
    Filed: January 31, 2008
    Publication date: August 6, 2009
    Inventors: Arminas Ragauskas, Gediminas Daubaris, Vytautas Petkus, Renaldas Raisutis