Patents by Inventor Victoria Carr-Brendel

Victoria Carr-Brendel 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: 20050161346
    Abstract: An analyte-measuring device, particularly an electrochemical sensor, is provided for measuring current values at multiple bias potential settings to assess the quality of the analyte measurement, identify interference in the signal, and calculate substantially interference-free analyte concentration measurements. The device and method are suitable for calculating substantially interference-free analyte concentration measurements when glucose is the analyte and acetaminophen is an interfering species.
    Type: Application
    Filed: December 7, 2004
    Publication date: July 28, 2005
    Inventors: Peter Simpson, James Brauker, Victoria Carr-Brendel, Paul Goode, Mark Tapsak
  • Publication number: 20050115832
    Abstract: The present invention relates generally to systems and methods for improved electrochemical measurement of analytes. The preferred embodiments employ electrode systems including an analyte-measuring electrode for measuring the analyte or the product of an enzyme reaction with the analyte and an auxiliary electrode configured to generate oxygen and/or reduce electrochemical interferants. Oxygen generation by the auxiliary electrode advantageously improves oxygen availability to the enzyme and/or counter electrode; thereby enabling the electrochemical sensors of the preferred embodiments to function even during ischemic conditions. Interferant modification by the auxiliary electrode advantageously renders them substantially non-reactive at the analyte-measuring electrode, thereby reducing or eliminating inaccuracies in the analyte signal due to electrochemical interferants.
    Type: Application
    Filed: July 21, 2004
    Publication date: June 2, 2005
    Inventors: Peter Simpson, James Petisce, Victoria Carr-Brendel, James Brauker
  • Publication number: 20050112169
    Abstract: A membrane for implantation in soft tissue comprising a first domain that supports tissue ingrowth, disrupts contractile forces typically found in a foreign body response, encourages vascularity, and interferes with barrier cell layer formation, and a second domain that is resistant to cellular attachment, is impermeable to cells and cell processes, and allows the passage of analytes. The membrane allows for long-term analyte transport in vivo and is suitable for use as a biointerface for implantable analyte sensors, cell transplantation devices, drug delivery devices, and/or electrical signal delivering or measuring devices. The membrane architecture, including cavity size, depth, and interconnectivity, provide long-term robust functionality of the membrane in vivo.
    Type: Application
    Filed: August 22, 2003
    Publication date: May 26, 2005
    Applicant: DexCom, Inc.
    Inventors: James Brauker, Victoria Carr-Brendel, Mark Tapsak
  • Publication number: 20050054909
    Abstract: The present invention relates generally to systems and methods for increasing oxygen availability to implantable devices. The preferred embodiments provide a membrane system configured to provide protection of the device from the biological environment and/or a catalyst for enabling an enzymatic reaction, wherein the membrane system includes a polymer formed from a high oxygen soluble material. The high oxygen soluble polymer material is disposed adjacent to an oxygen-utilizing source on the implantable device so as to dynamically retain high oxygen availability to the oxygen-utilizing source during oxygen deficits. Membrane systems of the preferred embodiments are useful for implantable devices with oxygen-utilizing sources and/or that function in low oxygen environments, such as enzyme-based electrochemical sensors and cell transplantation devices.
    Type: Application
    Filed: July 21, 2004
    Publication date: March 10, 2005
    Inventors: James Petisce, Mark Tapsak, Peter Simpson, Victoria Carr-Brendel
  • Publication number: 20050051440
    Abstract: The present invention relates generally to systems and methods for increasing oxygen generation in electrochemical sensors in order to overcome the oxygen limitations. The preferred embodiments employ electrode systems with at least two electrodes in relatively close proximity to each other; wherein at least one electrode is configured to generate oxygen and at least one other electrode is configured to sense an analyte or a product of a reaction indicative of the concentration of analyte. The oxygen generated by the oxygen-generating electrode is available to the catalyst within a membrane system and/or the counter electrode, thereby enabling the electrochemical sensors of the preferred embodiments to function even during ischemic conditions.
    Type: Application
    Filed: July 21, 2004
    Publication date: March 10, 2005
    Inventors: Peter Simpson, Paul Goode, Mark Tapsak, Victoria Carr-Brendel
  • Publication number: 20050043598
    Abstract: Systems and methods for minimizing or eliminating transient non-glucose related signal noise due to non-glucose rate limiting phenomenon such as ischemia, pH changes, temperatures changes, and the like. The system monitors a data stream from a glucose sensor and detects signal artifacts that have higher amplitude than electronic or diffusion-related system noise. The system replaces some or the entire data stream continually or intermittently including signal estimation methods that particularly address transient signal artifacts. The system is also capable of detecting the severity of the signal artifacts and selectively applying one or more signal estimation algorithm factors responsive to the severity of the signal artifacts, which includes selectively applying distinct sets of parameters to a signal estimation algorithm or selectively applying distinct signal estimation algorithms.
    Type: Application
    Filed: August 22, 2003
    Publication date: February 24, 2005
    Applicant: DexCom, Inc.
    Inventors: Paul Goode, James Brauker, Apurv Kamath, James Thrower, Victoria Carr-Brendel
  • Publication number: 20050031689
    Abstract: A biointerface membrane for an implantable device including a nonresorbable solid portion with a plurality of interconnected cavities therein adapted to support tissue ingrowth in vivo, and a bioactive agent incorporated into the biointerface membrane and adapted to modify the tissue response is provided. The bioactive agents can be chosen to induce vascularization and/or prevent barrier cell layer formation in vivo, and are advantageous when used with implantable devices wherein solutes are transported across the device-tissue interface.
    Type: Application
    Filed: May 10, 2004
    Publication date: February 10, 2005
    Applicant: DexCom, Inc.
    Inventors: Mark Shults, James Brauker, Victoria Carr-Brendel, Mark Tapsak, Dubravka Markovic
  • Publication number: 20050033132
    Abstract: An implantable analyte-measuring device including a membrane adapted to promote vascularization and/or interfere with barrier cell layer formation. The membrane includes any combination of materials, architecture, and bioactive agents that facilitate analyte transport to provide long-term in vivo performance of the implantable analyte-measuring device.
    Type: Application
    Filed: May 14, 2004
    Publication date: February 10, 2005
    Inventors: Mark Shults, James Brauker, Victoria Carr-Brendel, Mark Tapsak, Dubravka Markovic, Stuart Updike, Rathbun Rhodes
  • Publication number: 20050027463
    Abstract: Systems and methods for processing sensor analyte data, including initiating calibration, updating calibration, evaluating clinical acceptability of reference and sensor analyte data, and evaluating the quality of sensor calibration. During initial calibration, the analyte sensor data is evaluated over a period of time to determine stability of the sensor. The sensor may be calibrated using a calibration set of one or more matched sensor and reference analyte data pairs. The calibration may be updated after evaluating the calibration set for best calibration based on inclusion criteria with newly received reference analyte data. Fail-safe mechanisms are provided based on clinical acceptability of reference and analyte data and quality of sensor calibration. Algorithms provide for optimized prospective and retrospective analysis of estimated blood analyte data from an analyte sensor.
    Type: Application
    Filed: August 1, 2003
    Publication date: February 3, 2005
    Inventors: Paul Goode, James Brauker, Apurv Kamath, Victoria Carr-Brendel
  • Publication number: 20040199059
    Abstract: An implantable sensor for use in measuring a concentration of an analyte such as glucose in a bodily fluid, including a body with a sensing region adapted for transport of analytes between the sensor and the bodily fluid, wherein the sensing region is located on a curved portion of the body such that when a foreign body capsule forms around the sensor, a contractile force is exerted by the foreign body capsule toward the sensing region. The body is partially or entirely curved, partially or entirely covered with an anchoring material for supporting tissue ingrowth, and designed for subcutaneous tissue implantation. The geometric design, including curvature, shape, and other factors minimize chronic inflammatory response at the sensing region and contribute to improved performance of the sensor in vivo.
    Type: Application
    Filed: August 22, 2003
    Publication date: October 7, 2004
    Applicant: DexCom, Inc.
    Inventors: James H. Brauker, Victoria Carr-Brendel, Paul V. Neale, Laura A. Martinson
  • Patent number: 5549675
    Abstract: A method for implanting cells into a host tissue is provided. The method comprises the steps of: creating an implant assembly for holding cells including wall means for forming a porous boundary between the host tissue and the implanted cells in the device, the pore size of the boundary being sufficient to isolate the implanted cells from the immune response; implanting the assembly without the cells into a host tissue; and accessing an interior of the assembly to add the cells thereto.
    Type: Grant
    Filed: January 11, 1994
    Date of Patent: August 27, 1996
    Assignee: Baxter International, Inc.
    Inventors: Steven Neuenfeldt, James Brauker, Robert Clarke, Victoria Carr-Brendel