Patents by Inventor Tommy D. Bennett

Tommy D. Bennett 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: 7704209
    Abstract: A system and method are provided for sensing cardiac electrogram (EGM) signals and ventricular pressure signals and for using the sensed EGM and sensed pressure signals for estimating stroke volume (SV). A measure of cardiac output can be computed from the estimated SV and a heart rate determined from the EGM signals. The sensed ventricular pressure signal and the sensed EGM signal are used to derive landmark points such as an estimated pulmonary diastolic pressure, a mean pulmonary artery pressure, a peak right ventricular pressure (RVP), and various time intervals used in computing an area or a pulse contour integral. The pulse contour integral is used to estimate SV. The estimated pulmonary diastolic pressure, mean pulmonary artery pressure and CO computed from the estimated SV can be used to compute a pulmonary vascular resistance.
    Type: Grant
    Filed: February 11, 2009
    Date of Patent: April 27, 2010
    Assignee: Medtronic, Inc.
    Inventors: Tommy D. Bennett, Robert T. Taepke, II, Barbro M. Kjellstrom
  • Publication number: 20100076325
    Abstract: A method of determining respiratory effort in a medical device in which pressure signals are sensed to generate corresponding sample points, an inspiration and an expiration are detected in response to the sensed pressure signals, a breath is detected in response to the detected inspiration and the detected expiration, and the respiratory effort is determined in response to the detected breath.
    Type: Application
    Filed: October 31, 2008
    Publication date: March 25, 2010
    Inventors: Yong K. Cho, Tommy D. Bennett, Mark K. Erickson, Maneesh Shrivastav, Saul E. Greenhut, Karen J. Kleckner, Charles P. Sperling, Robert A. Corey
  • Publication number: 20100076322
    Abstract: A method of determining a respiration parameter in a medical device in which pressure signals are sensed to generate corresponding sample points, and a breath detection threshold is continuously adjusted in response to the generated sample points to generate a current adjusted breath detection threshold. A current generated sample point is compared to the current adjusted breath detection threshold, and the continuous adjusting of the breath detection threshold is suspended and the breath detection threshold is equal to the most current adjusted breath detection threshold generated prior to the suspending in response to the comparing. A next sample point, generated subsequent to the suspending, is compared to the set breath detection threshold, and the respiration parameter is determined in response to the comparing of a next sample point to the set breath detection threshold.
    Type: Application
    Filed: October 31, 2008
    Publication date: March 25, 2010
    Inventors: Maneesh A. Shrivastav, Yong K. Cho, Tommy D. Bennett, Mark K. Erickson, Saul E. Greenhut, Karen J. Kleckner, Charles P. Sperling
  • Publication number: 20100076324
    Abstract: A medical device for determining a respiratory effort having a pressure sensor to sense pressure signals, a housing having system components positioned therein, and a microprocessor positioned within the housing, wherein the microprocessor detects an inspiration and an expiration in response to the pressure signals, detects a breath in response to the detected inspiration and the detected expiration, and determines the respiratory effort in response to the detected breath.
    Type: Application
    Filed: October 31, 2008
    Publication date: March 25, 2010
    Inventors: Yong K. Cho, Tommy D. Bennett, Mark K. Erickson, Maneesh Shrivastav, Saul E. Greenhut, Karen J. Kleckner, Charles P. Sperling, Robert A. Corey
  • Publication number: 20100076514
    Abstract: A system and method for filtering a pressure signal in a medical device in which a sensor terminal senses the pressure signal, an electrode terminal receives cardiac electrical signals, a signal filtering system filters the sensed pressure signal in response to a determined heart rate to generate a heart-rate dependent frequency response, and a microprocessor derives a respiration signal in response to the heart rate dependent frequency response, and determines metrics of hemodynamic function in response to the derived respiration signal.
    Type: Application
    Filed: October 31, 2008
    Publication date: March 25, 2010
    Inventors: Yong K. Cho, Tommy D. Bennett, Mark K. Erickson, Maneesh Shrivastav, Saul E. Greenhut, Karen J. Kleckner, Charles P. Sperling, Robert A. Corey
  • Publication number: 20100076323
    Abstract: An apparatus for determining a respiration parameter in a medical device in which a pressure sensor senses pressure signals, and a signal processor, coupled to the pressure sensor, receives the sensed pressure signals and generates corresponding sample points.
    Type: Application
    Filed: October 31, 2008
    Publication date: March 25, 2010
    Inventors: Maneesh Shrivastav, Yong K. Cho, Tommy D. Bennett, Mark K. Erickson, Saul E. Greenhut, Karen J. Kleckner, Charles P. Sperling, Robert A. Corey
  • Publication number: 20100056885
    Abstract: An implantable biosensor system is disclosed for determining levels of cardiac markers in a patient to aid in the diagnosis, determination of the severity and management of cardiovascular diseases. The sensor includes nanowire sensor elements having a biological recognition element attached to a nanowire transducer that specifically binds to the cardiac marker being measured. Each of the sensor elements is associated with a protective member that prevents the sensor element from interacting with the surrounding environment. At a selected time, the protective member may be disabled, thereby allowing the sensor element to begin sensing signals within a living body.
    Type: Application
    Filed: November 4, 2009
    Publication date: March 4, 2010
    Applicant: Medtronic, Inc.
    Inventors: Ven Manda, Tommy D. Bennett, Zhongping Yang
  • Patent number: 7632234
    Abstract: An implantable biosensor system is disclosed for determining levels of cardiac markers in a patient to aid in the diagnosis, determination of the severity and management of cardiovascular diseases. The sensor includes nanowire sensor elements having a biological recognition element attached to a nanowire transducer that specifically binds to the cardiac marker being measured. Each of the sensor elements is associated with a protective member that prevents the sensor element from interacting with the surrounding environment. At a selected time, the protective member may be disabled, thereby allowing the sensor element to begin sensing signals within a living body.
    Type: Grant
    Filed: August 29, 2003
    Date of Patent: December 15, 2009
    Assignee: Medtronic, Inc.
    Inventors: Ven Manda, Tommy D. Bennett, Zhongping Yang
  • Publication number: 20090299198
    Abstract: A method for estimating pulmonary artery diastolic pressure, for a single heart beat, includes establishing a time window for sampling and storing pressure data points from a right ventricular pressure transducer. The time window may be established according to predetermined parameters and/or according to one or more triggering events. An approximate time at which the pulmonary artery valve opens is determined, either via the sampled pressure data points, or via another form of more direct monitoring, during the time window, in order to estimate the pulmonary artery diastolic pressure. A plurality of sets of N pressure data points may be collected, from the sampled data, and, for each collected set, a weighted sum is calculated. Each weighted sum may be employed to evaluate a quality of the sampled data and/or to estimate the pulmonary artery diastolic pressure, if the more direct monitoring of the pulmonary artery valve is not employed.
    Type: Application
    Filed: May 30, 2008
    Publication date: December 3, 2009
    Inventors: James K. Carney, Tommy D. Bennett, Mustafa Karamanoglu
  • Publication number: 20090275843
    Abstract: A system and method of determining hemodynamic parameters uses sensed ventricular blood pressure during a portion of ventricular pressure waveform following peak pressure. An estimated arterial diastolic pressure is based upon an amplitude of the sensed ventricular pressure corresponding to a time at which a first derivative of ventricular pressure as a function of time is at a minimum (dP/dtmin). Fill parameters such as isovolumetric relaxation constant, ventricular suction pressure, atrial kick pressure, and transvalve pressure gradient are derived from measured pressures representing minimum ventricular pressure, ventricular diastolic pressure, and diastasis pressure.
    Type: Application
    Filed: April 30, 2008
    Publication date: November 5, 2009
    Inventors: MUSTAFA KARAMANOGLU, Tommy D. Bennett
  • Publication number: 20090209876
    Abstract: A system and method are provided for sensing cardiac electrogram (EGM) signals and ventricular pressure signals and for using the sensed EGM and sensed pressure signals for estimating stroke volume (SV). A measure of cardiac output can be computed from the estimated SV and a heart rate determined from the EGM signals. The sensed ventricular pressure signal and the sensed EGM signal are used to derive landmark points such as an estimated pulmonary diastolic pressure, a mean pulmonary artery pressure, a peak right ventricular pressure (RVP), and various time intervals used in computing an area or a pulse contour integral. The pulse contour integral is used to estimate SV. The estimated pulmonary diastolic pressure, mean pulmonary artery pressure and CO computed from the estimated SV can be used to compute a pulmonary vascular resistance.
    Type: Application
    Filed: February 11, 2009
    Publication date: August 20, 2009
    Applicant: Medtronic, Inc.
    Inventors: Tommy D. Bennett, Robert T. Taepke, II, Barbro M. Kjellstrom
  • Publication number: 20090171220
    Abstract: A method of identifying sleep disordered breathing (SDB) in a patient includes monitoring a hemodynamic pressure, deriving high, middle, and low values representative of the distribution of the hemodynamic pressure over a storage interval, measuring a ratio of a lower range to a full range of the hemodynamic pressure based on the derived high, middle, and low values, and using the ratio to determine whether the patient has experienced an SDB episode. Certain embodiments of the invention compare the ratio to a threshold value to identify the occurrence of an SDB episode, while other embodiments of the invention identify the occurrence of an SDB episode by monitoring for a simultaneous increase in both the ratio and the full range of the hemodynamic pressure. In certain other embodiments of the invention, activity level and/or duration criteria may be employed to confirm the occurrence of an SDB episode detected using the ratio.
    Type: Application
    Filed: December 30, 2008
    Publication date: July 2, 2009
    Applicant: Medtronic, Inc.
    Inventors: Yong Kyun Cho, Tommy D. Bennett, Barbro M. Kjellstrom
  • Patent number: 7507208
    Abstract: A system and method are provided for sensing cardiac electrogram (EGM) signals and ventricular pressure signals and for using the sensed EGM and sensed pressure signals for estimating stroke volume (SV). A measure of cardiac output can be computed from the estimated SV and a heart rate determined from the EGM signals. The sensed ventricular pressure signal and the sensed EGM signal are used to derive landmark points such as an estimated pulmonary diastolic pressure, a mean pulmonary artery pressure, a peak right ventricular pressure (RVP), and various time intervals used in computing an area or a pulse contour integral. The pulse contour integral is used to estimate SV. The estimated pulmonary diastolic pressure, mean pulmonary artery pressure and CO computed from the estimated SV can be used to compute a pulmonary vascular resistance.
    Type: Grant
    Filed: May 21, 2008
    Date of Patent: March 24, 2009
    Assignee: Medtronic, Inc.
    Inventors: Tommy D. Bennett, Robert T. Taepke, II, Barbro M. Kjellstrom
  • Patent number: 7488291
    Abstract: A method of identifying sleep disordered breathing (SDB) in a patient includes monitoring a hemodynamic pressure, deriving high, middle, and low values representative of the distribution of the hemodynamic pressure over a storage interval, measuring a ratio of a lower range to a full range of the hemodynamic pressure based on the derived high, middle, and low values, and using the ratio to determine whether the patient has experienced an SDB episode. Certain embodiments of the invention compare the ratio to a threshold value to identify the occurrence of an SDB episode, while other embodiments of the invention identify the occurrence of an SDB episode by monitoring for a simultaneous increase in both the ratio and the full range of the hemodynamic pressure. In certain other embodiments of the invention, activity level and/or duration criteria may be employed to confirm the occurrence of an SDB episode detected using the ratio.
    Type: Grant
    Filed: September 28, 2005
    Date of Patent: February 10, 2009
    Assignee: Medtronic, Inc.
    Inventors: Yong K. Cho, Tommy D. Bennett, Barbro M. Kjellstrom
  • Patent number: 7470233
    Abstract: The present invention provides an apparatus and method for monitoring muscle function based on an index derived from a pressure or force signal. The muscle function index is derived from an instantaneous muscle stiffness ratio computed as the ratio of the first time derivative of the pressure or force waveform to the corresponding instantaneous pressure or force. The instantaneous stiffness ratio, ?/E(t), is in units of 1/sec and relates to the rate of strong bond formation and will be influenced by calcium handling properties of the muscle fibers and the intracellular calcium concentration. As such, an index derived from ?/E(t) provides a measure of the inotropic status of the muscle.
    Type: Grant
    Filed: January 26, 2005
    Date of Patent: December 30, 2008
    Assignee: Medtronic, Inc.
    Inventors: Mustafa Karamanoglu, Vincent E. Splett, Tommy D. Bennett
  • Patent number: 7367951
    Abstract: A cardiovascular analysis system and method includes an implantable medical device with a sensor positioned to sense a hemodynamic pressure over time. The implantable medical device generates hemodynamic pressure waveform data based upon the hemodynamic pressure sensed. A processor analyzes the hemodynamic waveform data to provide an indication of cardiovascular health based upon prominent peaks in the hemodynamic waveform data.
    Type: Grant
    Filed: January 27, 2005
    Date of Patent: May 6, 2008
    Assignee: Medtronic, Inc.
    Inventors: Tommy D. Bennett, Mark Choi, David A. Igel, Michael R. S. Hill, Teresa A. Whitman, Douglas A. Hettrick
  • Patent number: 7096064
    Abstract: The disclosure provides methods and apparatus of particular benefit for patients suffering heart failure including cardiac dysfunction, chronic HF, and the like and all variants thereof. According to the disclosure monitoring and therapy delivery for a wide variety of acute and chronic cardiac dysfunctions are described and depicted. Various forms of paired or coupled pacing therapy delivery provided alone or in combination with neurostimulation therapy delivered by both implantable and external apparatus, including defibrillation therapy are also provided herein.
    Type: Grant
    Filed: August 28, 2002
    Date of Patent: August 22, 2006
    Assignee: Medtronic, Inc.
    Inventors: D. Curtis Deno, William J. Havel, Tommy D. Bennett, Paul M. Stein, David E. Euler
  • Patent number: 6915157
    Abstract: An implantable heart monitor (IHM) implanted in a patient's body having electrogram (EGM) sense electrodes coupled with EGM sense circuitry to generate sense events upon detection of cardiac depolarizations and a blood pressure measurement transducer disposed in a heart chamber and coupled with blood pressure measurement circuitry operates to assess heart failure state as a function of mechanical pulsus alternans (MPA). MPA episodes are detected, and MPA characteristics of the MPA episode are used alone or as a group as a diagnostic marker of HF state. The MPA episode data set can be stored in memory associated with a time and date stamp. The MPA characteristics of each MPA data set in a series of MPA data sets collected over time can be compared or plotted to determine if a trend indicative of change in HF state is discernible.
    Type: Grant
    Filed: February 18, 2003
    Date of Patent: July 5, 2005
    Assignee: Medtronic, Inc.
    Inventors: Tommy D. Bennett, Lawrence J. Mulligan, Edwin G. Duffin, Robert C. Hamlen, Wael Abo-Auda
  • Publication number: 20040162497
    Abstract: An implantable heart monitor (IHM) implanted in a patient's body having electrogram (EGM) sense electrodes coupled with EGM sense circuitry to generate sense events upon detection of cardiac depolarizations and a blood pressure measurement transducer disposed in a heart chamber and coupled with blood pressure measurement circuitry operates to assess heart failure state as a function of mechanical pulsus alternans (MPA). MPA episodes are detected, and MPA characteristics of the MPA episode are used alone or as a group as a diagnostic marker of HF state. The MPA episode data set can be stored in memory associated with a time and date stamp. The MPA characteristics of each MPA data set in a series of MPA data sets collected over time can be compared or plotted to determine if a trend indicative of change in HF state is discernible.
    Type: Application
    Filed: February 18, 2003
    Publication date: August 19, 2004
    Inventors: Tommy D. Bennett, Lawrence J. Mulligan, Edwin G. Duffin, Robert C. Hamlen, Wael Abo-Auda
  • Publication number: 20040049235
    Abstract: The above-described methods and apparatus are believed to be of particular benefit for patients suffering heart failure including cardiac dysfunction, chronic HF, and the like and all variants as described herein and including those known to those of skill in the art to which the invention is directed. It will understood that the present invention offers the possibility of monitoring and therapy of a wide variety of acute and chronic cardiac dysfunctions. The current invention provides systems and methods for delivering therapy for cardiac hemodynamic dysfunction.
    Type: Application
    Filed: August 28, 2002
    Publication date: March 11, 2004
    Inventors: D. Curtis Deno, William J. Havel, Tommy D. Bennett, Paul M. Stein, David A. Euler