Patents by Inventor Rajiv Shah

Rajiv Shah 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: 8352011
    Abstract: The invention provides methods and apparatus for detecting an analyte in blood. The apparatus is particularly suited for bringing a sensor into direct contact with blood in vivo. The apparatus comprises a sensor that detects the presence of an analyte and an assembly means. The assembly means has a sensor end, wherein the sensor end of the assembly means is affixed to the sensor, and the assembly means is adapted for coupling with a venous flow device. By coupling with a venous flow device, the assembly means brings the sensor into direct contact with blood flowing through the venous flow device. Examples of venous flow devices that bring the sensor into direct contact with the blood of a subject include, but are not limited to, intravenous catheters and external blood loops, such as are used in extra corporeal membrane oxygenation or hemodialysis.
    Type: Grant
    Filed: November 4, 2008
    Date of Patent: January 8, 2013
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Nannette M. Van Antwerp, Bradley J. Enegren, John J. Mastrototaro, Rajiv Shah, Udo Hoss, Yanan Zhang, Jenn-Hann Larry Wang, Kent L. Clark
  • Publication number: 20120310063
    Abstract: A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    Type: Application
    Filed: July 16, 2012
    Publication date: December 6, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Lu Wang, Rajiv Shah, Wayne A. Morgan, Barry Keenan
  • Patent number: 8292808
    Abstract: Systems and methods for non-vascular sensor implantation and for measuring physiological parameters in areas of a body where the physiological parameters are heterogeneous. An implant unit is implanted in an area of a body and a foreign body capsule is allowed to form around the implant unit area. A sensor may be directed into a body cavity such as, for example, the peritoneal space, subcutaneous tissues, the foreign body capsule, or other area. A subcutaneous area of the body may be tunneled for sensor placement. Spatially separated sensing elements may be used for detecting individual amounts of the physiological parameter. An overall amount of the physiological parameter may be determined by calculating a statistical measurement of the individual sensed amounts in the area. Another embodiment of the invention, a multi-analyte measuring device, may include a substrate having an electrode array on one side and an integrated circuit on another side.
    Type: Grant
    Filed: September 16, 2008
    Date of Patent: October 23, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Michael E. Miller, Rajiv Shah
  • Publication number: 20120227358
    Abstract: A glucose sensor product is manufactured by a process that maintains the sterility of the glucose sensor while allowing gaseous manufacturing by-products to be vented from the inside of the glucose sensor package. The method begins by placing a glucose sensor assembly into a plastic package tray having a sealing surface surrounding an opening. The method continues by covering the opening with a microbial barrier material such that the microbial barrier material overlies the sealing surface, forming a seal between the sealing surface and the microbial barrier material, resulting in a sealed package tray containing the glucose sensor assembly, and sterilizing the glucose sensor assembly inside the sealed package tray. The microbial barrier material maintains sterility of the glucose sensor assembly while allowing volatile by-products outgassed from the glucose sensor assembly and the plastic package tray to pass therethrough.
    Type: Application
    Filed: March 9, 2011
    Publication date: September 13, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Eric Allan LARSON, Rajiv SHAH
  • Publication number: 20120227737
    Abstract: An analyte sensor and systems for determining analyte levels in a user's body. The analyte sensor and systems are adapted to be used with single dose medication devices and include a communication system to transmit the communications from the analyte sensor to the user to notify the user of an estimated amount of fluid to deliver to the user's body. More particularly, these apparatuses and methods for use are for providing convenient monitoring of blood glucose levels in determining the appropriate amount of insulin to deliver.
    Type: Application
    Filed: May 15, 2012
    Publication date: September 13, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: JOHN J. MASTROTOTARO, Rajiv Shah, Partha Ray, Kenny J. Long, Andrew C. Hayes, Nandita Patel, Cary D. Talbot, Bahar Reghabi
  • Patent number: 8249683
    Abstract: A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    Type: Grant
    Filed: June 29, 2010
    Date of Patent: August 21, 2012
    Assignee: Medtronic Minimed, Inc.
    Inventors: Lu Wang, Rajiv Shah, Wayne A. Morgan, Barry Keenan
  • Publication number: 20120186997
    Abstract: Embodiments of the invention provide amperometric analyte sensors having optimized elements such as electrodes formed from sputtered platinum compositions as well as layers of material selected to optimize the characteristics of a wide variety of sensor elements and sensors. While embodiments of the innovation can be used in a variety of contexts, typical embodiments of the invention include glucose sensors used in the management of diabetes.
    Type: Application
    Filed: January 20, 2011
    Publication date: July 26, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Xiaolong Li, Rajiv Shah, Qingling Yang, Yiwen Li, Barry Phong Pham
  • Publication number: 20120190950
    Abstract: Embodiments of the invention provide amperometric analyte sensors having optimized elements such as electrodes formed from sputtered platinum compositions as well as layers of material selected to optimize the characteristics of a wide variety of sensor elements and sensors. While embodiments of the innovation can be used in a variety of contexts, typical embodiments of the invention include glucose sensors used in the management of diabetes.
    Type: Application
    Filed: January 20, 2011
    Publication date: July 26, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Qingling Yang, Rajiv Shah, Xiaolong Li, Barry Phong Pham, Yiwen Li
  • Patent number: 8187851
    Abstract: A method for formulating and immobilizing a protein and a protein matrix formed by the method. The protein matrix preparation method results in a physically and chemically stable protein matrix that has low swelling, non-leaching, high activity, and high mechanical strength properties. The method includes cross-linking and hardening the protein mixture and using a mold to form a protein into a desired shape and size.
    Type: Grant
    Filed: July 24, 2008
    Date of Patent: May 29, 2012
    Assignee: Medtronic Minimed, Inc.
    Inventors: Rajiv Shah, Bahar Reghabi, Rudy Montalvo, Yanan Zhang
  • Publication number: 20120125075
    Abstract: Disclosed are a system and method for determining a metric and/or indicator of a reliability of a blood glucose sensor in providing glucose measurements. In one aspect, the metric and/or indicator may be computed based, at least in part, on an observed trend associated with signals generated by the blood glucose sensor.
    Type: Application
    Filed: October 26, 2011
    Publication date: May 24, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Rebecca K. Gottlieb, Ying Luo, Raghavendhar Gautham, Bradley Liang, Anirban Roy, Kenneth W. Cooper, Rajiv Shah, Barry Keenan
  • Publication number: 20120123690
    Abstract: A system and method for calibrating a sensor of a characteristic monitoring system in real time utilizes a self-calibration module for periodic determination of, and compensation for, the IR drop across unwanted resistances in a cell. A current-interrupt switch is used to open the self-calibration module circuit and either measure the IR drop using a high-frequency (MHz) ADC module, or estimate it through linear regression of acquired samples of the voltage across the sensor's working and reference electrodes (Vmeasured) over time. The IR drop is then subtracted from the closed-circuit value of Vmeasured to calculate the overpotential that exists in the cell (Vimportant). Vimportant may be further optimized by subtracting the value of the open-circuit voltage (Voc) across the sensor's working and reference electrodes. The values of Vmeasured and Vimportant are then controlled by respective first and second control units to compensate for the IR drop.
    Type: Application
    Filed: December 29, 2011
    Publication date: May 17, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: LU WANG, RAJIV SHAH, WAYNE A. MORGAN, BARRY KEENAN
  • Publication number: 20120108933
    Abstract: The subject matter disclosed herein relates to systems, methods and/or devices for calibrating sensor data to be used in estimating a blood glucose concentration. A relationship between sensor signal values and reference readings may be used to estimate a relationship between sensor signal values and measurements of blood glucose concentration.
    Type: Application
    Filed: September 21, 2011
    Publication date: May 3, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Bradley Liang, Kenneth W. Cooper, Raghavendhar Gautham, Rajiv Shah, Keith Nogueira
  • Publication number: 20120103835
    Abstract: The subject matter disclosed herein relates to systems, methods and/or devices for calibrating sensor data to be used in estimating a blood glucose concentration. A relationship between sensor signal values and reference readings may be used to estimate a relationship between sensor signal values and measurements of blood glucose concentration.
    Type: Application
    Filed: October 26, 2011
    Publication date: May 3, 2012
    Inventors: Bradley Liang, Kenneth W. Cooper, Raghavendhar Gautham, Rajiv Shah
  • Publication number: 20120108935
    Abstract: Disclosed are methods, apparatuses, etc. for glucose sensor signal reliability analysis.
    Type: Application
    Filed: October 26, 2011
    Publication date: May 3, 2012
    Inventors: Bradley Liang, Kenneth W. Cooper, Raghavendhar Gautham, Rajiv Shah
  • Publication number: 20120097554
    Abstract: Embodiments of the invention disclosed herein comprise amperometric glucose sensor systems that include multiple working electrodes having different material properties as well as algorithms and other elements designed for use with such systems. While embodiments of the innovation can be used in a number of contexts, typical embodiments of the invention include glucose sensors used to facilitate the management of diabetes.
    Type: Application
    Filed: October 18, 2011
    Publication date: April 26, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: Rajiv Shah, Eric Allan Larson, Katherine T. Wolfe, Daniel E. Pesantez
  • Patent number: 8160834
    Abstract: The invention disclosed herein provides methods and materials for observing the state of a sensor, for example those used by diabetic patients to monitor blood glucose levels. Typically a voltage such as a voltage pulse is applied to the sensor in order to solicit a current response from which for example, factors such as impedance values can be derived. Such values can then be used as indicators of a sensor's state, for example the state of sensor hydration, sensor noise, sensor offset, sensor drift or the like.
    Type: Grant
    Filed: June 2, 2011
    Date of Patent: April 17, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Bradley Chi Liang, Larry E. Tyler, Mohsen Askarinya, Charles R. Gordon, Randal C. Schulhauser, Kenneth W. Cooper, Kris R. Holtzclaw, Brian T. Kannard, Rajiv Shah
  • Publication number: 20120088996
    Abstract: According to an embodiment of the invention, a method of determining hydration of a sensor having a plurality of electrodes is disclosed. In particular embodiments, the method couples a sensor electronics device to the sensor and measures the open circuit potential between at least two of the plurality of electrodes. Then, the open circuit potential measurement is compared to a predetermined value. In some embodiments, the plurality of electrodes includes a working electrode, a reference electrode, and a counter electrode. In still further embodiments, the open circuit potential between the working electrode and the reference electrode is measured. In other embodiments, the open circuit potential between the working electrode and the counter electrode is measured. In still other embodiments, the open circuit potential between the counter electrode and the reference electrode is measured.
    Type: Application
    Filed: December 16, 2011
    Publication date: April 12, 2012
    Applicant: MEDTRONIC MINIMED, INC.
    Inventors: KENNETH W. COOPER, David Y. Choy, Rajiv Shah, Gopikrishnan Soundararajan, Ratnakar Vejella
  • Patent number: 8152789
    Abstract: A system and method for providing closed loop infusion formulation delivery which accurately calculates a delivery amount based on a sensed biological state by adjusting an algorithm's programmable control parameters. The algorithm calculates a delivery amount having proportional, derivative, and basal rate components. The control parameters may be adjusted in real time to compensate for changes in a sensed biological state that may result from daily events. Safety limits on the delivery amount may be included in the algorithm. The algorithm may be executed by a computing element within a process controller for controlling closed loop infusion formulation delivery. The biological state is sensed by a sensing device which provides a signal to the controller. The controller calculates an infusion formulation delivery amount based on the signal and sends commands to an infusion formulation delivery device which delivers an amount of infusion formulation determined by the commands.
    Type: Grant
    Filed: May 20, 2004
    Date of Patent: April 10, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Timothy J. Starkweather, Ronald J. Lebel, Rajiv Shah, Michael E. Miller
  • Patent number: 8137927
    Abstract: A method for formulating and immobilizing a protein and a protein matrix formed by the method. The protein matrix preparation method results in a physically and chemically stable protein matrix that has low swelling, non-leaching, high activity, and high mechanical strength properties. The method includes cross-linking and hardening the protein mixture and using a mold to form a protein into a desired shape and size.
    Type: Grant
    Filed: May 4, 2005
    Date of Patent: March 20, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Rajiv Shah, Bahar Reghabi, Rudy Montalvo, Yanan Zhang
  • Patent number: 8133435
    Abstract: A sterile device immersed in a sterile buffer and a method for providing same. The sterile device may be a medical device such as a biosensor having a biomolecule as a sensing element such as, for example, a glucose oxidase enzyme. The buffer may be a bicarbonate solution. Both the device and the buffer may be packaged and stored over long term while maintaining sterilization. The sterilization method may comprise a combination of gaseous, liquid and light sterilization.
    Type: Grant
    Filed: December 31, 2004
    Date of Patent: March 13, 2012
    Assignee: Medtronic MiniMed, Inc.
    Inventors: Jennifer M. Reynolds, Aaron Swanson, Rajiv Shah