Patents by Inventor Wesley S. Harper

Wesley S. Harper 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: 20180242891
    Abstract: Presented herein is a handheld analyte measurement device. The analyte measurement device includes one or more software applications to help the user manager their diabetes. Embodiments and descriptions of the various applications are provided below in conjunction with the handheld analyte measurement device.
    Type: Application
    Filed: February 21, 2018
    Publication date: August 30, 2018
    Inventors: Daniel M. Bernstein, Brittany K. Bradrick, Erwin S. Budiman, Eric Davis, Timothy C. Dunn, Mani Gopal, Wesley S. Harper, Gary A. Hayter, Steve Scott, Todd Winkler, Howard Wolpert
  • Patent number: 9913599
    Abstract: Presented herein is a handheld analyte measurement device. The analyte measurement device includes one or more software applications to help the user manager their diabetes. Embodiments and descriptions of the various applications are provided below in conjunction with the handheld analyte measurement device.
    Type: Grant
    Filed: December 21, 2011
    Date of Patent: March 13, 2018
    Assignee: ABBOTT DIABETES CARE INC.
    Inventors: Daniel M. Bernstein, Brittany K. Bradrick, Erwin S. Budiman, Eric Davis, Timothy C. Dunn, Mani Gopal, Wesley S. Harper, Gary A. Hayter, Steve Scott, Todd Winkler, Howard Wolpert
  • Publication number: 20140088393
    Abstract: Presented herein is a handheld analyte measurement device. The analyte measurement device includes one or more software applications to help the user manager their diabetes. Embodiments and descriptions of the various applications are provided below in conjunction with the handheld analyte measurement device.
    Type: Application
    Filed: December 21, 2011
    Publication date: March 27, 2014
    Applicant: ABBOTT DIABETES CARE INC.
    Inventors: Daniel M. Bernstein, Brittany K. Bradrick, Erwin S. Budiman, Eric Davis, Timothy C. Dunn, Mani Gopal, Wesley S. Harper, Gary A. Hayter, Steve Scott, Todd Winkler, Howard Wolpert
  • Patent number: 7711493
    Abstract: The present invention comprises one or more microprocessors programmed to execute methods for improving the performance of an analyte monitoring device including prediction of glucose levels in a subject by utilizing a predicted slower-time constant (1/k2). In another aspect of the invention, pre-exponential terms (1/c2) can be used to provide a correction for signal decay (e.g., a Gain Factor). In other aspects, the present invention relates to one or more microprocessors comprising programming to control execution of (i) methods for conditional screening of data points to reduce skipped measurements, (ii) methods for qualifying interpolated/extrapolated analyte measurement values, (iii) various integration methods to obtain maximum integrals of analyte-related signals, as well as analyte monitoring devices comprising such microprocessors.
    Type: Grant
    Filed: November 9, 2005
    Date of Patent: May 4, 2010
    Assignee: Animas Corporation
    Inventors: Miroslaw Bartkowiak, Wesley S. Harper, Eray Kulcu, Matthew J. Lesho, Janet A. Tamada
  • Patent number: 7523004
    Abstract: The present invention comprises one or more microprocessors programmed to execute methods for improving the performance of an analyte monitoring device including prediction of glucose levels in a subject by utilizing a predicted slower-time constant (1/k2). In another aspect of the invention, pre-exponential terms (1/c2) can be used to provide a correction for signal decay (e.g., a Gain Factor). In other aspects, the present invention relates to one or more microprocessors comprising programming to control execution of (i) methods for conditional screening of data points to reduce skipped measurements, (ii) methods for qualifying interpolated/extrapolated analyte measurement values, (iii) various integration methods to obtain maximum integrals of analyte-related signals, as well as analyte monitoring devices comprising such microprocessors.
    Type: Grant
    Filed: November 9, 2005
    Date of Patent: April 21, 2009
    Assignee: Animas Technologies, LLC
    Inventors: Miroslaw Bartkowiak, Wesley S. Harper, Eray Kulcu, Matthew J. Lesho, Janet A. Tamada
  • Patent number: 7519478
    Abstract: The present invention comprises one or more microprocessors programmed to execute methods for improving the performance of an analyte monitoring device including prediction of glucose levels in a subject by utilizing a predicted slower-time constant (1/k2). In another aspect of the invention, pre-exponential terms (1/c2) can be used to provide a correction for signal decay (e.g., a Gain Factor). In other aspects, the present invention relates to one or more microprocessors comprising programming to control execution of (i) methods for conditional screening of data points to reduce skipped measurements, (ii) methods for qualifying interpolated/extrapolated analyte measurement values, (iii) various integration methods to obtain maximum integrals of analyte-related signals, as well as analyte monitoring devices comprising such microprocessors.
    Type: Grant
    Filed: November 9, 2005
    Date of Patent: April 14, 2009
    Assignee: Animas Technologies, LLC
    Inventors: Miroslaw Bartkowiak, Wesley S. Harper, Eray Kulcu, Matthew J. Lesho, Janet A. Tamada
  • Publication number: 20030235817
    Abstract: The present invention comprises one or more microprocessors programmed to execute methods for improving the performance of an analyte monitoring device including prediction of glucose levels in a subject by utilizing a predicted slower-time constant (1/k2). In another aspect of the invention, pre-exponential terms (1/c2) can be used to provide a correction for signal decay (e.g., a Gain Factor). In other aspects, the present invention relates to one or more microprocessors comprising programming to control execution of (i) methods for conditional screening of data points to reduce skipped measurements, (ii) methods for qualifying interpolated/extrapolated analyte measurement values, (iii) various integration methods to obtain maximum integrals of analyte-related signals, as well as analyte monitoring devices comprising such microprocessors.
    Type: Application
    Filed: March 21, 2003
    Publication date: December 25, 2003
    Inventors: Miroslaw Bartkowiak, Wesley S. Harper, Eray Kulcu, Matthew J. Lesho, Janet A. Tamada