Patents by Inventor Megan Zaiyi Chiu

Megan Zaiyi Chiu 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: 20230249175
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Application
    Filed: April 14, 2023
    Publication date: August 10, 2023
    Applicant: Purdue Research Foundation
    Inventors: Jacqueline C. Linnes, Megan Zaiyi Chiu, Rui Shen
  • Patent number: 11628434
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Grant
    Filed: August 13, 2021
    Date of Patent: April 18, 2023
    Assignee: Purdue Research Foundation
    Inventors: Jacqueline C. Linnes, Megan Zaiyi Chiu, Rui Shen
  • Patent number: 11529626
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Grant
    Filed: April 19, 2021
    Date of Patent: December 20, 2022
    Assignee: Purdue Research Foundation
    Inventors: Jacqueline C. Linnes, Megan Zaiyi Chiu, Rui Shen
  • Publication number: 20220032286
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Application
    Filed: August 13, 2021
    Publication date: February 3, 2022
    Applicant: Purdue Research Foundation
    Inventors: Jacqueline C. Linnes, Megan Zaiyi Chiu, Rui Shen
  • Patent number: 11090649
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Grant
    Filed: April 19, 2017
    Date of Patent: August 17, 2021
    Assignee: Purdue Research Foundation
    Inventors: Jacqueline C Linnes, Megan Zaiyi Chiu, Rui Shen
  • Publication number: 20210237054
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Application
    Filed: April 19, 2021
    Publication date: August 5, 2021
    Applicant: Purdue Research Foundation
    Inventors: Jacqueline C. Linnes, Megan Zaiyi Chiu, Rui Shen
  • Publication number: 20190126270
    Abstract: The present invention relates to a low-cost, thermally reversible valve for paper-fluidic diagnostic devices. In particular, this invention demonstrates a tunable valve mechanism fabricated by wax-ink printing and localized heating via thin-film resistors to sequentially release liquids through a cellulose or nitrocellulose membrane. The wax-ink valve can obstruct fluid flow for a sustained time and are thermally actuated to release a controlled amount of liquid past the valve. This integrated paper-fluidic diagnostic assay device requires minimal user involvement, can be easily manufactured and tuned to meet various fluid delivery timing and incubation needs.
    Type: Application
    Filed: April 19, 2017
    Publication date: May 2, 2019
    Applicant: Purdue Research Foundation
    Inventors: Jacqueline C Linnes, Megan Zaiyi Chiu, Rui J Shen