Patents by Inventor Cynthia GOH

Cynthia GOH 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: 12047465
    Abstract: A parent tag in a parent webpage displayed on a computing device sends a unique identifier to a child tag for each child page within the parent webpage and receives a response from a first child page. The parent tag generates a channel message comprising the unique identifier for the first child page and a recording status and sends the channel message to the first child page. The parent tag receives a content message from the first child page comprising activity data captured according to the recording status and comprising one or more actions performed by a user in the first child page. The parent tag sends the activity data comprising one or more actions performed by the user in the webpage and activity data comprising one or more actions performed by the user in the first child page to a server system to generate a session replay.
    Type: Grant
    Filed: December 29, 2023
    Date of Patent: July 23, 2024
    Assignee: Content Square SAS
    Inventors: Tristan Giovangrandi, Nathaniel Zanzouri, Xavier Coutin, David Chamma, Romain Bouic, Cynthia Goh, Alexandre Ilin
  • Publication number: 20230216835
    Abstract: Aspects of the present disclosure involve a system comprising a computer-readable storage medium storing a program and method for streaming a live session. The program and method provide for receiving, from a first device of a first user, indication of first user input provided by the first user with respect to a first data input field of plural data input fields included in a displayed page; determining whether the first user input corresponds to personally identifiable information; causing, when the first user input does not correspond to personally identifiable information, a second device associated with a second user to display the plural data input fields and to display the first user input; and causing, when the first user input corresponds to personally identifiable information, the second device to display the plural data input fields and to mask display of the first user input.
    Type: Application
    Filed: December 30, 2021
    Publication date: July 6, 2023
    Inventors: Doron Hoffman, Cynthia Goh
  • Publication number: 20230199083
    Abstract: The subject technology detects user activity on a web site, the user activity corresponding to a user session on the web site associated with first client device of a visiting user. The subject technology selects a recording process for the user activity based at least in part on a set of recording parameters, the set of recording parameters being configured prior to detecting the user activity. The subject technology performs the recording process to generate an event stream based at least in part on the set of record parameters. The subject technology stores the event stream after the session has ended. The subject technology provides the event stream for viewing the user session on a second client device, the second client device being different from the first client device.
    Type: Application
    Filed: April 28, 2022
    Publication date: June 22, 2023
    Inventors: Cynthia Goh, Aharon Shemesh, Gaia Dolev, Joël Trigalo, Bashar Abed, Zook Kessler, Victor Cojocaru, Immanuel Ajzner, Shahaf Amsalem, Lionel Seguin, Felix Lima Gorito
  • Patent number: 8753872
    Abstract: A method and apparatus for assay of multiple analytes. The method uses a sensing element comprising a substrate upon which is arranged a multiplicity of recognition elements, such that each element is laid out in a predetermined pattern. Each pattern is unique in that it can give rise to a characteristic diffraction pattern in the assay. The patterns may or may not be interpenetrating on the substrate surface. The method of detecting multiple analytes includes contacting the medium of analytes with the patterned substrate, illuminating the substrate by a light source, and detecting any resultant diffraction image. The pattern of diffraction and the intensity of the diffracted signal provides information about the existence of specific analytes and their quantification.
    Type: Grant
    Filed: December 20, 2005
    Date of Patent: June 17, 2014
    Assignee: Axela Inc.
    Inventors: M. Cynthia Goh, Jane B. Goh, Richard Mcaloney, Richard Loo
  • Publication number: 20110111487
    Abstract: The present invention relates to a method and apparatus for detecting analytes in a medium, and more particularly the present invention relates to an assay based on light diffraction which appears or changes upon the binding of analytes to their specific receptors laid out in patterns on a substrate, which has high sensitivity due to the appropriate choice of such patterns. The present invention is based on the principle that the pattern of recognition elements, which gives rise to the diffraction of the incident light in a diffraction-based assay, can be chosen in such a way so as to facilitate detection, and to enhance the signal to be detected compared to known gratings such as parallel straight lines. In one aspect the substrate itself has a surface topography designed to enhance the diffraction pattern signals. In another aspect the substrate is a diffractive optic element having the analyte-specific receptors affixed to the optic element.
    Type: Application
    Filed: October 28, 2010
    Publication date: May 12, 2011
    Applicant: AXELA BIOSENSORS INC.
    Inventors: M. Cynthia GOH, Richard LOO, Jane B. GOH, Richard MCALONEY
  • Publication number: 20080180692
    Abstract: The present invention relates to a method and apparatus for detecting analytes in a medium, and more particularly the present invention relates to an assay based on light diffraction which appears or changes upon the binding of analytes to their specific receptors laid out in patterns on a substrate, which has high sensitivity due to the appropriate choice of such patterns. The present invention is based on the principle that the pattern of recognition elements, which gives rise to the diffraction of the incident light in a diffraction-based assay, can be chosen in such a way so as to facilitate detection, and to enhance the signal to be detected compared to known gratings such as parallel straight lines. In one aspect the substrate itself has a surface topography designed to enhance the diffraction pattern signals. In another aspect the substrate is a diffractive optic element having the analyte-specific receptors affixed to the optic element.
    Type: Application
    Filed: September 28, 2007
    Publication date: July 31, 2008
    Inventors: M. Cynthia Goh, Richard Loo, Jane B. Goh, Richard McAloney
  • Publication number: 20080081192
    Abstract: In various aspects provided are methods for producing a nanoparticle within a cross-linked, collapsed polymeric material, said method including (a) providing a polymeric solution comprising a polymeric material; (b) collapsing at least a portion of the polymeric material about one or more precursor moieties; (c) cross-linking the polymeric material; (d) modifying at least a portion of said precursor moieties to form one or more nanoparticles and thereby forming a composite nanoparticle. In various embodiments, a non-confined nanoparticle can be produced by complete pyrolysis of the confined nanoparticle, and a carbon-coated nanoparticle by incomplete pyrolysis of the confined nanoparticle.
    Type: Application
    Filed: May 7, 2007
    Publication date: April 3, 2008
    Inventors: Cynthia GOH, Jose DINGLASAN, Jane GOH, Richard LOO, Emina VELETANLIC
  • Patent number: 7314749
    Abstract: The present invention relates to a method and apparatus for detecting analytes in a medium, and more particularly the present invention relates to an assay based on light diffraction which appears or changes upon the binding of analytes to their specific receptors laid out in patterns on a substrate, which has high sensitivity due to the appropriate choice of such patterns. The present invention is based on the principle that the pattern of recognition elements, which gives rise to the diffraction of the incident light in a diffraction-based assay, can be chosen in such a way so as to facilitate detection, and to enhance the signal to be detected compared to known gratings such as parallel straight lines. In one aspect the substrate itself has a surface topography designed to enhance the diffraction pattern signals. In another aspect the substrate is a diffractive optic element having the analyte-specific receptors affixed to the optic element.
    Type: Grant
    Filed: September 13, 2002
    Date of Patent: January 1, 2008
    Assignee: Axela Biosensors Inc.
    Inventors: M. Cynthia Goh, Richard Loo, Jane B. Goh, Richard McAloney
  • Patent number: 7008794
    Abstract: A method and apparatus for assay of multiple analytes. The method uses a sensing element comprising a substrate upon which is arranged a multiplicity of recognition elements, such that each element is laid out in a predetermined pattern. Each pattern is unique in that it can give rise to a characteristic diffraction pattern in the assay. The patterns may or may not be interpenetrating on the substrate surface. The method of detecting multiple analytes includes contacting the medium of analytes with the patterned substrate, illuminating the substrate by a light source, and detecting any resultant diffraction image. The pattern of diffraction and the intensity of the diffracted signal provides information about the existence of specific analytes and their quantification.
    Type: Grant
    Filed: March 22, 2001
    Date of Patent: March 7, 2006
    Assignee: Axela Biosensors Inc.
    Inventors: M. Cynthia Goh, Jane B. Goh, Richard McAloney, Richard Loo
  • Patent number: 6981445
    Abstract: An apparatus for producing patterns on a surface of a substrate. The apparatus includes a rigid support such as a rigid tubular structure having first and second opposed ends and a fluid flow passageway extending therethrough. A printing stamp is attached at one of the opposed ends of the rigid support. The printing stamp has a flexible diaphragm portion which has an outer surface which is coated with one or more materials in a pre-selected pattern. A pneumatic pressurizing mechanism communicating with an inner surface of the flexible diaphragm portion through the fluid flow passageway is used to bias the flexible diaphragm portion outwardly into intimate and uniform contact with the surface of the substrate for transferring the pre-selected pattern onto the substrate surface. The rigid tubular supports are attached to a robotic positioning mechanism for providing control of positioning of the stamp relative to the substrate surface.
    Type: Grant
    Filed: December 24, 2003
    Date of Patent: January 3, 2006
    Assignee: Axela Biosensors Inc.
    Inventors: Raymond Francis Cracauer, Rocky Ganske, M. Cynthia Goh, Jane B. Goh, Adam Brian Liederman, Richard Loo, Pui Tam
  • Publication number: 20030049693
    Abstract: The present invention relates to a method and apparatus for detecting analytes in a medium, and more particularly the present invention relates to an assay based on light diffraction which appears or changes upon the binding of analytes to their specific receptors laid out in patterns on a substrate, which has high sensitivity due to the appropriate choice of such patterns. The present invention is based on the principle that the pattern of recognition elements, which gives rise to the diffraction of the incident light in a diffraction-based assay, can be chosen in such a way so as to facilitate detection, and to enhance the signal to be detected compared to known gratings such as parallel straight lines. In one aspect the substrate itself has a surface topography designed to enhance the diffraction pattern signals. In another aspect the substrate is a diffractive optic element having the analyte-specific receptors affixed to the optic element.
    Type: Application
    Filed: September 13, 2002
    Publication date: March 13, 2003
    Inventors: M. Cynthia Goh, Richard Loo, Jane B. Goh, Richard McAloney
  • Publication number: 20020025534
    Abstract: A method and apparatus for assay of multiple analytes. The method uses a sensing element comprising a substrate upon which is arranged a multiplicity of recognition elements, such that each element is laid out in a predetermined pattern. Each pattern is unique in that it can give rise to a characteristic diffraction pattern in the assay. The patterns may or may not be interpenetrating on the substrate surface. The method of detecting multiple analytes includes contacting the medium of analytes with the patterned substrate, illuminating the substrate by a light source, and detecting any resultant diffraction image. The pattern of diffraction and the intensity of the diffracted signal provides information about the existence of specific analytes and their quantification.
    Type: Application
    Filed: March 22, 2001
    Publication date: February 28, 2002
    Inventors: M. Cynthia Goh, Jane B. Goh, Richard McAloney, Richard Loo