Patents by Inventor Adrian Ponce

Adrian Ponce 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: 12410459
    Abstract: A biological indicator includes: a BI housing; a germinant container inside the BI housing and housing a germinant composition; a germinant releaser configured to release the germinant composition from the germinant container; a germinant releaser support supporting the germinant releaser and configured to bring the germinant releaser into contact with the germinant container upon application of a force to the germinant releaser support or the germinant container; a first spore carrier inside the BI housing, the first spore carrier having a plurality of spores deposited at a first surface thereof; and an imaging window at a first surface of the BI housing. A BI reader is configured to detect and quantify the presence of live spores in the BI, and includes an excitation source, a camera for capturing images of the spores over time, and a processor for analyzing the images to determine the presence of live spores.
    Type: Grant
    Filed: May 16, 2022
    Date of Patent: September 9, 2025
    Assignee: STERITEC PRODUCTS MFG. CO., INC.
    Inventors: Adrian Ponce, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker, Edward MacLeod Perkins, Robert G. Waarts
  • Publication number: 20230235377
    Abstract: A biological indicator includes: a BI housing; a germinant container inside the BI housing and housing a germinant composition; a germinant releaser configured to release the germinant composition from the germinant container; a germinant releaser support supporting the germinant releaser and configured to bring the germinant releaser into contact with the germinant container upon application of a force to the germinant releaser support or the germinant container; a first spore carrier inside the BI housing, the first spore carrier having a plurality of spores deposited at a first surface thereof; and an imaging window at a first surface of the BI housing. A BI reader is configured to detect and quantify the presence of live spores in the BI, and includes an excitation source, a camera for capturing images of the spores over time, and a processor for analyzing the images to determine the presence of live spores.
    Type: Application
    Filed: April 4, 2023
    Publication date: July 27, 2023
    Inventors: Adrian PONCE, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker, Edward MacLeod Perkins, Robert G. Waarts
  • Patent number: 11603551
    Abstract: A biological indicator includes: a BI housing; a germinant container inside the BI housing and housing a germinant composition; a germinant releaser configured to release the germinant composition from the germinant container; a germinant releaser support supporting the germinant releaser and configured to bring the germinant releaser into contact with the germinant container upon application of a force to the germinant releaser support or the germinant container; a first spore carrier inside the BI housing, the first spore carrier having a plurality of spores deposited at a first surface thereof; and an imaging window at a first surface of the BI housing. A BI reader is configured to detect and quantify the presence of live spores in the BI, and includes an excitation source, a camera for capturing images of the spores over time, and a processor for analyzing the images to determine the presence of live spores.
    Type: Grant
    Filed: December 2, 2020
    Date of Patent: March 14, 2023
    Assignee: STERITEC PRODUCTS MFG. CO., INC.
    Inventors: Adrian Ponce, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker, Edward MacLeod Perkins, Robert G. Waarts
  • Publication number: 20220275422
    Abstract: A biological indicator includes: a BI housing; a germinant container inside the BI housing and housing a germinant composition; a germinant releaser configured to release the germinant composition from the germinant container; a germinant releaser support supporting the germinant releaser and configured to bring the germinant releaser into contact with the germinant container upon application of a force to the germinant releaser support or the germinant container; a first spore carrier inside the BI housing, the first spore carrier having a plurality of spores deposited at a first surface thereof; and an imaging window at a first surface of the BI housing. A BI reader is configured to detect and quantify the presence of live spores in the BI, and includes an excitation source, a camera for capturing images of the spores over time, and a processor for analyzing the images to determine the presence of live spores.
    Type: Application
    Filed: May 16, 2022
    Publication date: September 1, 2022
    Inventors: Adrian PONCE, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker, Edward MacLeod Perkins, Robert G. Waarts
  • Publication number: 20220275423
    Abstract: A biological indicator includes: a BI housing; a germinant container inside the BI housing and housing a germinant composition; a germinant releaser configured to release the germinant composition from the germinant container; a germinant releaser support supporting the germinant releaser and configured to bring the germinant releaser into contact with the germinant container upon application of a force to the germinant releaser support or the germinant container; a first spore carrier inside the BI housing, the first spore carrier having a plurality of spores deposited at a first surface thereof; and an imaging window at a first surface of the BI housing. A BI reader is configured to detect and quantify the presence of live spores in the BI, and includes an excitation source, a camera for capturing images of the spores over time, and a processor for analyzing the images to determine the presence of live spores.
    Type: Application
    Filed: May 16, 2022
    Publication date: September 1, 2022
    Inventors: Adrian PONCE, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker, Edward MacLeod Perkins, Robert G. Waarts
  • Publication number: 20220170067
    Abstract: A biological indicator includes: a BI housing; a germinant container inside the BI housing and housing a germinant composition; a germinant releaser configured to release the germinant composition from the germinant container; a germinant releaser support supporting the germinant releaser and configured to bring the germinant releaser into contact with the germinant container upon application of a force to the germinant releaser support or the germinant container; a first spore carrier inside the BI housing, the first spore carrier having a plurality of spores deposited at a first surface thereof; and an imaging window at a first surface of the BI housing. A BI reader is configured to detect and quantify the presence of live spores in the BI, and includes an excitation source, a camera for capturing images of the spores over time, and a processor for analyzing the images to determine the presence of live spores.
    Type: Application
    Filed: December 2, 2020
    Publication date: June 2, 2022
    Inventors: Adrian PONCE, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker, Edward MacLeod Perkins, Robert G. Waarts
  • Patent number: 10612067
    Abstract: Described herein are methods and apparatus for assays of bacterial spores. In particular, methods and apparatus for lateral flow immunoassay for bacterial spore detection and quantification, live/dead assay for bacterial spores, lifetime-gated measurements of bacterial spores and imaging bacterial spores using an active pixel sensor, and unattended monitoring of bacterial spores in the air are described.
    Type: Grant
    Filed: August 1, 2017
    Date of Patent: April 7, 2020
    Assignee: CALIFORNIA INSTITUTE OF TECHNOLOGY
    Inventors: Adrian Ponce, Gregory H. Bearman
  • Publication number: 20170342455
    Abstract: Described herein are methods and apparatus for assays of bacterial spores. In particular, methods and apparatus for lateral flow immunoassay for bacterial spore detection and quantification, live/dead assay for bacterial spores, lifetime-gated measurements of bacterial spores and imaging bacterial spores using an active pixel sensor, and unattended monitoring of bacterial spores in the air are described.
    Type: Application
    Filed: August 1, 2017
    Publication date: November 30, 2017
    Inventors: Adrian PONCE, Gregory H. BEARMAN
  • Patent number: 9816126
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: a matrix including lanthanide ions is provided on the surface containing the bacterial spores; functionalized aromatic molecules are released from the bacterial spores on the surface; a complex of the lanthanide ion and the aromatic molecule is formed on the surface; the complex of the lanthanide ion and the aromatic molecule is excited to generate a characteristic luminescence of the complex on the surface; and the bacterial spores exhibiting the luminescence of the complex on the surface are detected and quantified.
    Type: Grant
    Filed: September 3, 2009
    Date of Patent: November 14, 2017
    Assignee: California Institute of Technology
    Inventor: Adrian Ponce
  • Publication number: 20170022535
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: bacterial spores are transferred from a place of origin to a test surface, the test surface comprises lanthanide ions. Aromatic molecules are released from the bacterial spores; a complex of the lanthanide ions and aromatic molecules is formed on the test surface, the complex is excited to generate a characteristic luminescence on the test surface; the luminescence on the test surface is detected and quantified.
    Type: Application
    Filed: September 30, 2016
    Publication date: January 26, 2017
    Inventor: Adrian Ponce
  • Patent number: 9469866
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: bacterial spores are transferred from a place of origin to a test surface, the test surface comprises lanthanide ions. Aromatic molecules are released from the bacterial spores; a complex of the lanthanide ions and aromatic molecules is formed on the test surface, the complex is excited to generate a characteristic luminescence on the test surface; the luminescence on the test surface is detected and quantified.
    Type: Grant
    Filed: September 3, 2009
    Date of Patent: October 18, 2016
    Assignee: California Institute of Technology
    Inventor: Adrian Ponce
  • Publication number: 20150004683
    Abstract: Described herein are methods and apparatus for assays of bacterial spores. In particular, methods and apparatus for lateral flow immunoassay for bacterial spore detection and quantification, live/dead assay for bacterial spores, lifetime-gated measurements of bacterial spores and imaging bacterial spores using an active pixel sensor, and unattended monitoring of bacterial spores in the air are described.
    Type: Application
    Filed: April 2, 2012
    Publication date: January 1, 2015
    Applicant: CALIFORNIA INSTITUTE OF TECHNOLOGY
    Inventors: Adrian PONCE, Gregory H. BEARMAN
  • Patent number: 8173359
    Abstract: A sample of unknown bacterial spores is added to a test strip. The sample of unknown bacterial spores is drawn to a first sample region on the test strip by capillary action. Species-specific antibodies are bound to the sample when the unknown bacterial spores match the species-specific antibodies, otherwise the sample is left unbound. DPA is released from the bacterial spores in the bound sample. The terbium ions are combined with the DPA to form a Tb-DPA complex. The combined terbium ions and DPA are excited to generate a luminescence characteristic of the combined terbium ions and DPA to detect the bacterial spores. A live/dead assay is performed by a release of the DPA for live spores and a release of DPA for all spores. The detection concentrations are compared to determine the fraction of live spores.
    Type: Grant
    Filed: June 4, 2007
    Date of Patent: May 8, 2012
    Assignee: California Institute of Technology
    Inventors: Adrian Ponce, Gregory H. Bearman
  • Publication number: 20100075371
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: a matrix including lanthanide ions is provided on the surface containing the bacterial spores; functionalized aromatic molecules are released from the bacterial spores on the surface; a complex of the lanthanide ion and the aromatic molecule is formed on the surface; the complex of the lanthanide ion and the aromatic molecule is excited to generate a characteristic luminescence of the complex on the surface; and the bacterial spores exhibiting the luminescence of the complex on the surface are detected and quantified.
    Type: Application
    Filed: September 3, 2009
    Publication date: March 25, 2010
    Inventor: Adrian Ponce
  • Publication number: 20100068756
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: bacterial spores are transferred from a place of origin to a test surface, the test surface comprises lanthanide ions. Aromatic molecules are released from the bacterial spores; a complex of the lanthanide ions and aromatic molecules is formed on the test surface, the complex is excited to generate a characteristic luminescence on the test surface; the luminescence on the test surface is detected and quantified.
    Type: Application
    Filed: September 3, 2009
    Publication date: March 18, 2010
    Inventor: Adrian PONCE
  • Patent number: 7651862
    Abstract: Optical time domain reflectometry caused by absorption of a volatile or analyte into the fiber optic cladding is used an optical nose. The fiber optics (14) are covered with a gas permeable film (44) which is patterned to leave millimeter wide gas permeable notches (48a-48d). The notches contain a sensing polymer that responds to different gases by expanding or contracting.
    Type: Grant
    Filed: February 26, 2002
    Date of Patent: January 26, 2010
    Assignee: California Institute of Technology
    Inventors: Adrian Ponce, Dmitri A. Kossakovski, Gregory H. Bearman
  • Patent number: 7611862
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: bacterial spores are transferred from a place of origin to a test surface, the test surface comprises lanthanide ions. Aromatic molecules are released from the bacterial spores; a complex of the lanthanide ions and aromatic molecules is formed on the test surface, the complex is excited to generate a characteristic luminescence on the test surface; the luminescence on the test surface is detected and quantified.
    Type: Grant
    Filed: January 12, 2006
    Date of Patent: November 3, 2009
    Assignee: California Institute of Technology
    Inventor: Adrian Ponce
  • Patent number: 7608419
    Abstract: A method and an apparatus for detecting and quantifying bacterial spores on a surface. In accordance with the method: a matrix including lanthanide ions is provided on the surface containing the bacterial spores; functionalized aromatic molecules are released from the bacterial spores on the surface; a complex of the lanthanide ion and the aromatic molecule is formed on the surface; the complex of the lanthanide ion and the aromatic molecule is excited to generate a characteristic luminescence of the complex on the surface; and the bacterial spores exhibiting the luminescence of the complex on the surface are detected and quantified.
    Type: Grant
    Filed: November 12, 2004
    Date of Patent: October 27, 2009
    Assignee: California Institute of Technology
    Inventor: Adrian Ponce
  • Patent number: D1036694
    Type: Grant
    Filed: March 4, 2022
    Date of Patent: July 23, 2024
    Assignee: STERITEC PRODUCTS MFG. CO., INC.
    Inventors: Adrian Ponce, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker
  • Patent number: D1037481
    Type: Grant
    Filed: March 4, 2022
    Date of Patent: July 30, 2024
    Assignee: STERITEC PRODUCTS MFG. CO., INC.
    Inventors: Adrian Ponce, Kok-Hwee Ng, Darshan Yeliyur Siddegowda, Jenna Zimmerman, Dat Nguyen, Mitchell London, Jake Douglas Knickerbocker