Patents by Inventor Yiheng Zhang

Yiheng Zhang 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: 20250140219
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Application
    Filed: November 18, 2024
    Publication date: May 1, 2025
    Applicant: Hologic, Inc.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Xiangwei Zhang, Haili Chui, Christopher Ruth, Yiheng Zhang, Liyang Wei, Jay Stein
  • Publication number: 20250038240
    Abstract: Anion exchange membranes and materials including silica-based ceramics, and associated methods, are provided. In some aspects, anion exchange membranes that include a silica-based ceramic that forms a coating on and/or within a porous support membrane are described. The anion exchange membranes and materials may have certain structural or chemical attributes (e.g., pore size/distribution, chemical functionalization) that, alone or in combination, can result in advantageous performance characteristics in any of a variety of applications for which selective transport of positively charged ions through membranes/materials is desired. In some embodiments, the silica-based ceramic contains relatively small pores (e.g., substantially spherical nanopores) that may contribute to some such advantageous properties. In some embodiments, the anion exchange membrane or material includes quaternary ammonium groups covalently bound to the silica-based ceramic.
    Type: Application
    Filed: August 1, 2024
    Publication date: January 30, 2025
    Applicant: Membrion, Inc.
    Inventors: Gregory Matthew Newbloom, Olivia Marie Lenz, Phillip Reaves Pickett, Rachel Alexis Malone, Stephanie Lynn Candelaria, Yiheng Zhang, Kathryn Lynn Corp, Aditya Ashok Salunkhe
  • Patent number: 12183309
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Grant
    Filed: October 24, 2023
    Date of Patent: December 31, 2024
    Assignee: Hologic, Inc.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Xiangwei Zhang, Haili Chui, Christopher Ruth, Yiheng Zhang, Liyang Wei, Jay Stein
  • Publication number: 20240399318
    Abstract: Cation exchange membranes and materials including silica-based ceramics, and associated methods, are provided. In some aspects, cation exchange membranes that include a silica-based ceramic that forms a coating on and/or within a porous support membrane are described. The cation exchange membranes and materials may have certain structural or chemical attributes (e.g., pore size/distribution, chemical functionalization) that, alone or in combination, can result in advantageous performance characteristics in any of a variety of applications for which selective transport of positively charged ions through membranes/materials is desired. In some embodiments, the silica-based ceramic contains relatively small pores (e.g., substantially spherical nanopores) that may contribute to some such advantageous properties. In some embodiments, the cation exchange membrane or material includes sulfonate and/or sulfonic acid groups covalently bound to the silica-based ceramic.
    Type: Application
    Filed: June 7, 2024
    Publication date: December 5, 2024
    Applicant: Membrion, Inc.
    Inventors: Gregory Matthew Newbloom, Olivia Marie Lenz, Phillip Reaves Pickett, Rachel Alexis Malone, Stephanie Lynn Candelaria, Yiheng Zhang, Kathryn Lynn Corp, Aditya Ashok Salunkhe, Matthew Jason Canin
  • Publication number: 20240382795
    Abstract: Provided herein is a buckle for dumbbells and barbells, the buckle including: a clamping head, two locking keys symmetrically mounted on the clamping head, and two operation bars symmetrically mounted on the clamping head and hinged to the locking keys. The clamping head is of a C-shaped structure having an opening at one end thereof, an accommodating groove and two mounting holes which are in communication with each other are formed in the clamping head, the accommodating groove is located on the outer side of the clamping head away from the opening and is configured to accommodate the operation bars, and the mounting holes are located on the inner side of the clamping head close to the opening and are configured to accommodate the locking keys.
    Type: Application
    Filed: June 2, 2023
    Publication date: November 21, 2024
    Inventor: Yiheng ZHANG
  • Publication number: 20240386714
    Abstract: The present disclosure relates to the field of video learning. Provided are a video representation self-supervised contrastive learning method and apparatus. The method includes, according to optical flow information corresponding to each video frame of a video clip, obtaining, by means of calculation, a motion amplitude diagram which corresponds to each video frame of the video clip; according to the motion amplitude diagram corresponding to each video frame of the video clip, determining motion information which corresponds to the video clip; and performing video representation self-supervised contrastive learning according to a video clip sequence, and the motion information corresponding to each video clip.
    Type: Application
    Filed: May 7, 2022
    Publication date: November 21, 2024
    Inventors: Yiheng ZHANG, Zhaofan QIU, Ting YAO, Tao MEI
  • Patent number: 12087982
    Abstract: Anion exchange membranes and materials including silica-based ceramics, and associated methods, are provided. In some aspects, anion exchange membranes that include a silica-based ceramic that forms a coating on and/or within a porous support membrane are described. The anion exchange membranes and materials may have certain structural or chemical attributes (e.g., pore size/distribution, chemical functionalization) that, alone or in combination, can result in advantageous performance characteristics in any of a variety of applications for which selective transport of positively charged ions through membranes/materials is desired. In some embodiments, the silica-based ceramic contains relatively small pores (e.g., substantially spherical nanopores) that may contribute to some such advantageous properties. In some embodiments, the anion exchange membrane or material includes quaternary ammonium groups covalently bound to the silica-based ceramic.
    Type: Grant
    Filed: June 3, 2020
    Date of Patent: September 10, 2024
    Assignee: Membrion, Inc.
    Inventors: Gregory Matthew Newbloom, Olivia Marie Lenz, Phillip Reaves Pickett, Rachel Alexis Malone, Stephanie Lynn Candelaria, Yiheng Zhang, Kathryn Lynn Corp, Aditya Ashok Salunkhe
  • Patent number: 12042769
    Abstract: Cation exchange membranes and materials including silica-based ceramics, and associated methods, are provided. In some aspects, cation exchange membranes that include a silica-based ceramic that forms a coating on and/or within a porous support membrane are described. The cation exchange membranes and materials may have certain structural or chemical attributes (e.g., pore size/distribution, chemical functionalization) that, alone or in combination, can result in advantageous performance characteristics in any of a variety of applications for which selective transport of positively charged ions through membranes/materials is desired. In some embodiments, the silica-based ceramic contains relatively small pores (e.g., substantially spherical nanopores) that may contribute to some such advantageous properties. In some embodiments, the cation exchange membrane or material includes sulfonate and/or sulfonic acid groups covalently bound to the silica-based ceramic.
    Type: Grant
    Filed: June 3, 2020
    Date of Patent: July 23, 2024
    Assignee: Membrion, Inc.
    Inventors: Gregory Matthew Newbloom, Olivia Marie Lenz, Phillip Reaves Pickett, Rachel Alexis Malone, Stephanie Lynn Candelaria, Yiheng Zhang, Kathryn Lynn Corp, Aditya Ashok Salunkhe, Matthew Jason Canin
  • Publication number: 20240169958
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Application
    Filed: October 24, 2023
    Publication date: May 23, 2024
    Applicant: Hologic, Inc.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Xiangwei Zhang, Haili Chui, Christopher Ruth, Yiheng Zhang, Liyang Wei, Jay Stein
  • Patent number: 11837197
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Grant
    Filed: July 20, 2022
    Date of Patent: December 5, 2023
    Assignee: Hologic, Inc.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Xiangwei Zhang, Haili Chui, Christopher Ruth, Yiheng Zhang, Liyang Wei, Jay Stein
  • Patent number: 11754973
    Abstract: The present invention relates to the technical fields of optical imaging, microwave imaging, radar detection, sonar, ultrasonic imaging, and target detection, imaging identification and wireless communication based on media such as sound, light and electricity, and in particular, to a fast imaging method suitable for passive imaging and active imaging and application of the fast imaging method in the above fields. According to the method provided by the present invention, image field distribution corresponding to a target is achieved based on a lens imaging principle, in combination with an electromagnetic field theory, according to a target signal received by an antenna array, through the amplitude and phase weighting of a unit signal and by using an efficient parallel algorithm.
    Type: Grant
    Filed: June 28, 2022
    Date of Patent: September 12, 2023
    Inventors: Jilong Zhang, Jikang Zhang, Yiheng Zhang, Yuhua Song, Xiaolin Yu
  • Publication number: 20230097480
    Abstract: The present invention relates to the technical fields of optical imaging, microwave imaging, radar detection, sonar, ultrasonic imaging, and target detection, imaging identification and wireless communication based on media such as sound, light and electricity, and in particular, to a fast imaging method suitable for passive imaging and active imaging and application of the fast imaging method in the above fields. According to the method provided by the present invention, image field distribution corresponding to a target is achieved based on a lens imaging principle, in combination with an electromagnetic field theory, according to a target signal received by an antenna array, through the amplitude and phase weighting of a unit signal and by using an efficient parallel algorithm.
    Type: Application
    Filed: June 28, 2022
    Publication date: March 30, 2023
    Inventors: Jilong Zhang, Jikang Zhang, Yiheng Zhang, Yuhua Song, Xiaolin Yu
  • Publication number: 20230053489
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Application
    Filed: July 20, 2022
    Publication date: February 23, 2023
    Applicant: Hologic, Inc.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Xiangwei Zhang, Haili Chui, Christopher Ruth, Yiheng Zhang, Liyang Wei, Jay Stein
  • Patent number: 11508340
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Grant
    Filed: April 1, 2021
    Date of Patent: November 22, 2022
    Assignee: Hologic, Inc.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Yiheng Zhang, Haili Chui, Christopher Ruth, Xiangwei Zhang, Liyang Wei, Jay Stein
  • Publication number: 20220013089
    Abstract: The invention includes a method including the steps of obtaining a plurality of images, each of the images in the plurality having at least one corresponding region, generating a merged image, the merged image also having the corresponding region. The step of generating includes selecting an image source from the plurality of images to source image data for the corresponding region in the merged image by comparing attributes of the corresponding regions of the plurality of images to identify the image source having preferred attributes.
    Type: Application
    Filed: April 1, 2021
    Publication date: January 13, 2022
    Applicant: HOLOGIC, INC.
    Inventors: Kevin Kreeger, Andrew P. Smith, Ashwini Kshirsagar, Jun Ge, Yiheng Zhang, Haili Chui, Christopher Ruth, Xiangwei Zhang, Liyang Wei, Jay Stein
  • Patent number: 11198101
    Abstract: Cation exchange membranes and materials including silica-based ceramics, and associated methods, are provided. In some aspects, cation exchange membranes that include a silica-based ceramic that forms a coating on and/or within a porous support membrane are described. The cation exchange membranes and materials may have certain structural or chemical attributes (e.g., pore size/distribution, chemical functionalization) that, alone or in combination, can result in advantageous performance characteristics in any of a variety of applications for which selective transport of positively charged ions through membranes/materials is desired. In some embodiments, the silica-based ceramic contains relatively small pores (e.g., substantially spherical nanopores) that may contribute to some such advantageous properties. In some embodiments, the cation exchange membrane or material includes sulfonate and/or sulfonic acid groups covalently bound to the silica-based ceramic.
    Type: Grant
    Filed: April 29, 2021
    Date of Patent: December 14, 2021
    Assignee: Membrion, Inc.
    Inventors: Gregory Matthew Newbloom, Olivia Marie Lenz, Phillip Reaves Pickett, Rachel Alexis Malone, Stephanie Lynn Candelaria, Yiheng Zhang, Kathryn Lynn Corp, Aditya Ashok Salunkhe, Matthew Jason Canin
  • Publication number: 20210260534
    Abstract: Cation exchange membranes and materials including silica-based ceramics, and associated methods, are provided. In some aspects, cation exchange membranes that include a silica-based ceramic that forms a coating on and/or within a porous support membrane are described. The cation exchange membranes and materials may have certain structural or chemical attributes (e.g., pore size/distribution, chemical functionalization) that, alone or in combination, can result in advantageous performance characteristics in any of a variety of applications for which selective transport of positively charged ions through membranes/materials is desired. In some embodiments, the silica-based ceramic contains relatively small pores (e.g., substantially spherical nanopores) that may contribute to some such advantageous properties. In some embodiments, the cation exchange membrane or material includes sulfonate and/or sulfonic acid groups covalently bound to the silica-based ceramic.
    Type: Application
    Filed: April 29, 2021
    Publication date: August 26, 2021
    Applicant: Membrion, Inc.
    Inventors: Gregory Matthew Newbloom, Olivia Marie Lenz, Phillip Reaves Pickett, Rachel Alexis Malone, Stephanie Lynn Candelaria, Yiheng Zhang, Kathryn Lynn Corp, Aditya Ashok Salunkhe, Matthew Jason Canin
  • Patent number: D1001926
    Type: Grant
    Filed: March 31, 2023
    Date of Patent: October 17, 2023
    Inventor: Yiheng Zhang
  • Patent number: D1027084
    Type: Grant
    Filed: March 31, 2023
    Date of Patent: May 14, 2024
    Inventor: Yiheng Zhang
  • Patent number: D1060550
    Type: Grant
    Filed: May 19, 2023
    Date of Patent: February 4, 2025
    Inventor: Yiheng Zhang