Patents by Inventor Shengjiang TU

Shengjiang TU 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: 11978206
    Abstract: The present disclosure relates generally to an autonomous cell imaging and modeling platform, and more specifically to machine-learning techniques for using microscopy imaging data to continuously study live biological cells. The autonomous cell imaging and modeling platform can be applied to evaluate various cellular processes, such as cellular differentiation, optimization of cell culture (e.g., in-plate cytometry), disease modeling, histopathology imaging, and genetic and chemical screening, using a dynamic universal imaging system. In some embodiments, the platform comprises a set of label-free computational imaging techniques, self-supervised learning models, and robotic devices configured in an autonomous imaging system to study positional and morphological characteristics in particular cellular substructures of a cell culture in an efficient and non-destructive manner over time.
    Type: Grant
    Filed: December 1, 2023
    Date of Patent: May 7, 2024
    Assignee: Insitro, Inc.
    Inventors: Hervé Marie-Nelly, Jeevaa Velayutham, Zachary Phillips, Shengjiang Tu
  • Publication number: 20240119593
    Abstract: The present disclosure relates generally to an autonomous cell imaging and modeling platform, and more specifically to machine-learning techniques for using microscopy imaging data to continuously study live biological cells. The autonomous cell imaging and modeling platform can be applied to evaluate various cellular processes, such as cellular differentiation, optimization of cell culture (e.g., in-plate cytometry), disease modeling, histopathology imaging, and genetic and chemical screening, using a dynamic universal imaging system. In some embodiments, the platform comprises a set of label-free computational imaging techniques, self-supervised learning models, and robotic devices configured in an autonomous imaging system to study positional and morphological characteristics in particular cellular substructures of a cell culture in an efficient and non-destructive manner over time.
    Type: Application
    Filed: December 1, 2023
    Publication date: April 11, 2024
    Applicant: Insitro, Inc.
    Inventors: Hervé MARIE-NELLY, Jeevaa VELAYUTHAM, Zachary PHILLIPS, Shengjiang TU
  • Publication number: 20240104734
    Abstract: The present disclosure relates generally to an autonomous cell imaging and modeling platform, and more specifically to machine-learning techniques for using microscopy imaging data to continuously study live biological cells. The autonomous cell imaging and modeling platform can be applied to evaluate various cellular processes, such as cellular differentiation, optimization of cell culture (e.g., in-plate cytometry), disease modeling, histopathology imaging, and genetic and chemical screening, using a dynamic universal imaging system. In some embodiments, the platform comprises a set of label-free computational imaging techniques, self-supervised learning models, and robotic devices configured in an autonomous imaging system to study positional and morphological characteristics in particular cellular substructures of a cell culture in an efficient and non-destructive manner over time.
    Type: Application
    Filed: December 1, 2023
    Publication date: March 28, 2024
    Applicant: Insitro, Inc.
    Inventors: Hervé MARIE-NELLY, Jeevaa VELAYUTHAM, Zachary PHILLIPS, Shengjiang TU
  • Patent number: 11875506
    Abstract: The present disclosure relates generally to an autonomous cell imaging and modeling platform, and more specifically to machine-learning techniques for using microscopy imaging data to continuously study live biological cells. The autonomous cell imaging and modeling platform can be applied to evaluate various cellular processes, such as cellular differentiation, optimization of cell culture (e.g., in-plate cytometry), disease modeling, histopathology imaging, and genetic and chemical screening, using a dynamic universal imaging system. In some embodiments, the platform comprises a set of label-free computational imaging techniques, self-supervised learning models, and robotic devices configured in an autonomous imaging system to study positional and morphological characteristics in particular cellular substructures of a cell culture in an efficient and non-destructive manner over time.
    Type: Grant
    Filed: February 17, 2023
    Date of Patent: January 16, 2024
    Assignee: Insitro, Inc.
    Inventors: Hervé Marie-Nelly, Jeevaa Velayutham, Zachary Phillips, Shengjiang Tu
  • Publication number: 20230374090
    Abstract: The present disclosure provides liver-specific Wnt signal enhancing molecules, and related methods of using these molecules to increase Wnt signaling in liver tissues and treat liver diseases and disorders.
    Type: Application
    Filed: May 2, 2023
    Publication date: November 23, 2023
    Applicant: Surrozen Operating, Inc.
    Inventors: Yang LI, Zhengjian ZHANG, Randall J. BREZSKI, Leonard PRESTA, Thomas LOPEZ, Hui CHEN, Helene BARIBAULT, Wen-Chen YEH, Shengjiang TU
  • Publication number: 20220112278
    Abstract: The present invention provides methods of treating ocular disorders with modulators of the WNT signaling pathway. In particular the ocular disorders are retinopathies. Also provided are methods of dosing and pharmaceutical compositions.
    Type: Application
    Filed: February 11, 2020
    Publication date: April 14, 2022
    Inventors: Yang LI, Shengjiang TU, Sungjin LEE, Wen-Chen YEH