Patents by Inventor Gordon A. Janaway

Gordon A. Janaway 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: 20230122742
    Abstract: Methods and systems for quantification of a target nucleic acid in a sample are provided. The method includes forming a plurality of discrete sample portions. Each of the plurality of discrete sample portions comprising a portion of the sample, and a reaction mixture. The method further includes amplifying the plurality of discrete sample portions to form a plurality of discrete processed sample portions. At least one discrete processed sample portion containing nucleic acid amplification reaction products. Fluorescence signals are detected from the at least one of the plurality of discrete processed sample portions to determine a presence of the at least one target nucleic acid. The method also includes determining the respective volumes of the plurality of the plurality of discrete processed sample portions, and estimating the number of copies-per-unit-volume of the at least one target nucleic acid in the sample.
    Type: Application
    Filed: October 28, 2022
    Publication date: April 20, 2023
    Inventors: Gordon A. JANAWAY, Mark ANDERSEN, Kornelija ZGONC, Michael C. PALLAS, Marcin SIKORA, Casey R. McFARLAND, Ferrier N. LE, Haopeng Wang, Jian GONG, Gothami Padmabandu
  • Publication number: 20210313010
    Abstract: A computer-implemented method for designing a digital PCR (dPCR) experiment is provided. The method includes receiving, from a user, a selection of optimization type. The optimization type may be maximizing the dynamic range, minimizing the number of substrates including reaction sites needed for the experiment, determining a dilution factor, or determining the lower limit of detection, for example. The method further includes receiving, from the user, a precision measure for an experiment, and a minimum concentration of a target in a reaction site for the experiment. The method also includes determining a set of dPCR experiment design factors for the experiment based on the optimization type. The set of dPCR experiment design factors is then displayed to the user.
    Type: Application
    Filed: March 19, 2021
    Publication date: October 7, 2021
    Inventors: Nivedita Sumi Majumdar, Thomas Wessel, David C. Woo, Marcin Sikora, Gordon A. Janaway, Shweta Raizada, Joanna Lankester, Jeffrey A. Marks, Daniel Wessel
  • Patent number: 10984888
    Abstract: A computer-implemented method for designing a digital PCR (dPCR) experiment is provided. The method includes receiving, from a user, a selection of optimization type. The optimization type may be maximizing the dynamic range, minimizing the number of substrates including reaction sites needed for the experiment, determining a dilution factor, or determining the lower limit of detection, for example. The method further includes receiving, from the user, a precision measure for an experiment, and a minimum concentration of a target in a reaction site for the experiment. The method also includes determining a set of dPCR experiment design factors for the experiment based on the optimization type. The set of dPCR experiment design factors is then displayed to the user.
    Type: Grant
    Filed: September 13, 2013
    Date of Patent: April 20, 2021
    Assignee: Life Technologies Corporation
    Inventors: Nivedita Sumi Majumdar, Thomas Wessel, David C. Woo, Marcin Sikora, Gordon A. Janaway, Shweta Raizada, Joanna Lankester, Jeffrey A. Marks, Daniel Wessel
  • Publication number: 20200224280
    Abstract: Methods and systems for quantification of a target nucleic acid in a sample are provided. The method includes forming a plurality of discrete sample portions. Each of the plurality of discrete sample portions comprising a portion of the sample, and a reaction mixture. The method further includes amplifying the plurality of discrete sample portions to form a plurality of discrete processed sample portions. At least one discrete processed sample portion containing nucleic acid amplification reaction products. Fluorescence signals are detected from the at least one of the plurality of discrete processed sample portions to determine a presence of the at least one target nucleic acid. The method also includes determining the respective volumes of the plurality of the plurality of discrete processed sample portions, and estimating the number of copies-per-unit-volume of the at least one target nucleic acid in the sample.
    Type: Application
    Filed: January 13, 2020
    Publication date: July 16, 2020
    Inventors: Gordon A. JANAWAY, Mark ANDERSEN, Kornelija ZGONC, Michael C. PALLAS, Marcin SIKORA, Casey R. McFARLAND, Ferrier N. LE, Haopeng Wang, Jian GONG, Gothami Padmabandu
  • Patent number: 10629290
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Grant
    Filed: October 26, 2018
    Date of Patent: April 21, 2020
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan
  • Patent number: 10557174
    Abstract: Methods and systems for quantification of a target nucleic acid in a sample are provided. The method includes forming a plurality of discrete sample portions. Each of the plurality of discrete sample portions comprising a portion of the sample, and a reaction mixture. The method further includes amplifying the plurality of discrete sample portions to form a plurality of discrete processed sample portions. At least one discrete processed sample portion containing nucleic acid amplification reaction products. Fluorescence signals are detected from the at least one of the plurality of discrete processed sample portions to determine a presence of the at least one target nucleic acid. The method also includes determining the respective volumes of the plurality of the plurality of discrete processed sample portions, and estimating the number of copies-per-unit-volume of the at least one target nucleic acid in the sample.
    Type: Grant
    Filed: March 25, 2016
    Date of Patent: February 11, 2020
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Mark Andersen, Kornelija Zgonc, Michael C. Pallas, Marcin Sikora, Casey R. McFarland, Ferrier N. Le, Haopeng Wang, Jian Gong, Gothami Padmabandu
  • Publication number: 20200035329
    Abstract: A computer-implemented method of generating a digital polymerase chain reaction (dPCR) result is provided. The method includes detecting of emission data from a planiality of samples, each included in a sample region of a plurality of sample regions, at a first time amplification period. The method further includes determining a positive or negative amplification determination for each sample of the plurality of samples based in part on the first set of emission data, A dPCR result is generated based on the positive amplification determinations for the plurality of samples.
    Type: Application
    Filed: October 1, 2019
    Publication date: January 30, 2020
    Applicant: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Manjula Aliminati, Ruoyun Wu, David Fortescue, Ming Shen
  • Patent number: 10453557
    Abstract: A computer-implemented method of generating a digital polymerase chain reaction (dPCR) result is provided. The method includes detecting a first set of emission data from a plurality of samples, each included in a sample region of a plurality of sample regions, at a first time during an amplification period. The method further includes determining a positive or negative amplification determination for each sample of the plurality of samples based in part on the first set of emission data. A dPCR result is generated based on the positive or negative amplification determinations for the plurality of samples.
    Type: Grant
    Filed: September 28, 2012
    Date of Patent: October 22, 2019
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Manjula Aliminati, Ruoyun Wu, David Fortescue, Ming Shen
  • Publication number: 20190130995
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Application
    Filed: October 26, 2018
    Publication date: May 2, 2019
    Applicant: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan
  • Patent number: 10127348
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Grant
    Filed: July 8, 2016
    Date of Patent: November 13, 2018
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan
  • Publication number: 20170103162
    Abstract: Methods for the determination of a copy number of a target genomic sequence; either a target gene or genomic sequence of interest, in a biological sample are described. Various methods utilize a model drawn from a probability density function (PDF) for the assignment of a copy number of a target genomic sequence in a biological sample. Additionally, the methods provide for the determination of a confidence value for a copy number assigned to a sample based on attributes of the sample data. Accordingly, the various methods for the determination of a copy number provide the end user with significant information for the evaluation of a copy number of a target genomic sequence; either a gene or genomic sequence of interest.
    Type: Application
    Filed: October 24, 2016
    Publication date: April 13, 2017
    Inventors: Harrison Leong, Catalin Barbacioru, Gordon Janaway
  • Publication number: 20170011165
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Application
    Filed: July 8, 2016
    Publication date: January 12, 2017
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan
  • Publication number: 20160208342
    Abstract: Methods and systems for quantification of a target nucleic acid in a sample are provided. The method includes forming a plurality of discrete sample portions. Each of the plurality of discrete sample portions comprising a portion of the sample, and a reaction mixture. The method further includes amplifying the plurality of discrete sample portions to form a plurality of discrete processed sample portions. At least one discrete processed sample portion containing nucleic acid amplification reaction products. Fluorescence signals are detected from the at least one of the plurality of discrete processed sample portions to determine a presence of the at least one target nucleic acid. The method also includes determining the respective volumes of the plurality of the plurality of discrete processed sample portions, and estimating the number of copies-per-unit-volume of the at least one target nucleic acid in the sample.
    Type: Application
    Filed: March 25, 2016
    Publication date: July 21, 2016
    Inventors: Gordon A. Janaway, Mark Andersen, Kornelija Zgonc, Michael C. Pallas, Marcin Sikora, Casey R. McFarland, Ferrier N. Le, Haopeng Wang, Jian Gong, Gothami Padmabandu
  • Patent number: 9390227
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Grant
    Filed: October 25, 2013
    Date of Patent: July 12, 2016
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan
  • Patent number: 9322055
    Abstract: Methods and systems for quantification of a target nucleic acid in a sample are provided. The method includes forming a plurality of discrete sample portions. Each of the plurality of discrete sample portions comprising a portion of the sample, and a reaction mixture. The method further includes amplifying the plurality of discrete sample portions to form a plurality of discrete processed sample portions. At least one discrete processed sample portion containing nucleic acid amplification reaction products. Fluorescence signals are detected from the at least one of the plurality of discrete processed sample portions to determine a presence of the at least one target nucleic acid. The method also includes determining the respective volumes of the plurality of the plurality of discrete processed sample portions, and estimating the number of copies-per-unit-volume of the at least one target nucleic acid in the sample.
    Type: Grant
    Filed: March 30, 2012
    Date of Patent: April 26, 2016
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Mark Andersen, Kornelija Zgonc, Michael Pallas, Marcin Sikora, Casey McFarland, Ferrier N. Le, Haopeng Wang, Jian Gong, Gothami Padmabandu
  • Publication number: 20150278437
    Abstract: A computer-implemented method for designing a digital PCR (dPCR) experiment is provided. The method includes receiving, from a user, a selection of optimization type. The optimization type may be maximizing the dynamic range, minimizing the number of substrates including reaction sites needed for the experiment, determining a dilution factor, or determining the lower limit of detection, for example. The method further includes receiving, from the user, a precision measure for an experiment, and a minimum concentration of a target in a reaction site for the experiment. The method also includes determining a set of dPCR experiment design factors for the experiment based on the optimization type. The set of dPCR experiment design factors is then displayed to the user.
    Type: Application
    Filed: September 13, 2013
    Publication date: October 1, 2015
    Inventors: Nivedita Sumi Majumdar, Thomas Wessel, David C. Woo, Marcin Sikora, Gordon A. Janaway, Shweta Raizada, Joanna Lankester, Jeffrey A. Marks, Daniel Wessel
  • Publication number: 20140248623
    Abstract: Methods and systems for quantification of a target nucleic acid in a sample are provided. The method includes forming a plurality of discrete sample portions. Each of the plurality of discrete sample portions comprising a portion of the sample, and a reaction mixture. The method further includes amplifying the plurality of discrete sample portions to form a plurality of discrete processed sample portions. At least one discrete processed sample portion containing nucleic acid amplification reaction products. Fluorescence signals are detected from the at least one of the plurality of discrete processed sample portions to determine a presence of the at least one target nucleic acid. The method also includes determining the respective volumes of the plurality of the plurality of discrete processed sample portions, and estimating the number of copies-per-unit-volume of the at least one target nucleic acid in the sample.
    Type: Application
    Filed: March 30, 2012
    Publication date: September 4, 2014
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Gordon A. Janaway, Mark Andersen, Kornelija Zgonc, Michael Pallas, Marcin Sikora, Casey McFarland, Ferrier N. Le, Haopeng Wang, Jian Gong, Gothami Padmabandu
  • Publication number: 20140236496
    Abstract: A computer-implemented method of generating a digital polymerase chain reaction (dPCR) result is provided. The method includes detecting a first set of emission data from a plurality of samples, each included in a sample region of a plurality of sample regions, at a first time during an amplification period. The method further includes determining a positive or negative amplification determination for each sample of the plurality of samples based in part on the first set of emission data. A dPCR result is generated based on the positive or negative amplification determinations for the plurality of samples.
    Type: Application
    Filed: September 28, 2012
    Publication date: August 21, 2014
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Gordon A. Janaway, Manjula Aliminati, Ruoyun Wu, David Fortescue, Ming Shen
  • Publication number: 20140053095
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Application
    Filed: October 25, 2013
    Publication date: February 20, 2014
    Applicant: LIFE TECHNOLOGIES CORPORATION
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan
  • Patent number: 8572506
    Abstract: Systems and methods are used to display data obtained from a qPCR instrument. Each of two or more samples is probed with a first labeling probe and a second labeling probe. A first data set is received from a qPCR instrument at a first cycle number that includes for each sample a first labeling probe intensity, and a second labeling probe intensity. A second data set is received at a second cycle number that includes for each sample a first labeling probe intensity and a second labeling probe intensity. A first plot of first labeling probe intensity as a function of second labeling probe intensity is created using the first data set. A second plot of first labeling probe intensity as a function of second labeling probe intensity is created using the second data set. The first plot and the second plot are displayed in response to user defined input to provide dynamic and real-time analysis of genotyping data.
    Type: Grant
    Filed: April 8, 2011
    Date of Patent: October 29, 2013
    Assignee: Life Technologies Corporation
    Inventors: Gordon A. Janaway, Evelyn Wing-Sim Chan