Patents by Inventor Jeffrey Ruberti

Jeffrey Ruberti 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: 12461030
    Abstract: Devices and methods for automated liquid handling and reagent processing to provide labelling and detection of bacteria and viruses are provided. Labelling reactions are performed rapidly and with essentially no generation of hazardous waste or use of consumables. Highly sensitive detection is performed by measuring fluorescence on a rotating sample plate.
    Type: Grant
    Filed: March 10, 2022
    Date of Patent: November 4, 2025
    Assignee: Northeastern University
    Inventors: Brenna Singer, Bridget Bergstrom, Sarah M. Dunbar, Francheska Torres, Alana Persing, Kelsey M. Dupont, Timothy Lannin, Jeffrey Ruberti
  • Patent number: 12461029
    Abstract: Methods and devices for continuous flow monitoring of a liquid sample for presence of an airborne microbial pathogen are provided. The liquid sample can be derived from environmental air. The methods and devices provide for continuous labeling of a targeted pathogen in the liquid sample with a fluorescent probe. A customized fluorescence detector is provided that can detect labeled pathogens during continuous flow.
    Type: Grant
    Filed: March 10, 2022
    Date of Patent: November 4, 2025
    Assignee: Northeastern University
    Inventor: Jeffrey Ruberti
  • Publication number: 20220291128
    Abstract: Methods and devices for continuous flow monitoring of a liquid sample for presence of an airborne microbial pathogen are provided. The liquid sample can be derived from environmental air. The methods and devices provide for continuous labeling of a targeted pathogen in the liquid sample with a fluorescent probe. A customized fluorescence detector is provided that can detect labeled pathogens during continuous flow.
    Type: Application
    Filed: March 10, 2022
    Publication date: September 15, 2022
    Inventor: Jeffrey RUBERTI
  • Publication number: 20220288586
    Abstract: Devices and methods for automated liquid handling and reagent processing to provide labelling and detection of bacteria and viruses are provided. Labelling reactions are performed rapidly and with essentially no generation of hazardous waste or use of consumables. Highly sensitive detection is performed by measuring fluorescence on a rotating sample plate.
    Type: Application
    Filed: March 10, 2022
    Publication date: September 15, 2022
    Inventors: Brenna SINGER, Bridget BERGSTROM, Sarah M. DUNBAR, Francheska TORRES, Alana PERSING, Kelsey M. DUPONT, Timothy LANNIN, Jeffrey RUBERTI
  • Patent number: 9363991
    Abstract: A drilling system including a motor that produces a sonic, linear oscillatory motion is provided for removing a frozen biological sample from a stored frozen specimen and methods of use thereof without thawing the remainder of the specimen. The stator and slider assembly is operated by a servo controller which can communicate and be programmed through a port of a PC equipped with software.
    Type: Grant
    Filed: March 21, 2014
    Date of Patent: June 14, 2016
    Assignees: President and Fellows of Harvard College, Northeastern University
    Inventors: Dale Larson, Jeffrey Ruberti, John Slusarz, Nicholas Goulas, Erin Rush, Trevor Ehret
  • Publication number: 20140283536
    Abstract: A drilling system including a motor that produces a sonic, linear oscillatory motion is provided for removing a frozen biological sample from a stored frozen specimen and methods of use thereof without thawing the remainder of the specimen. The stator and slider assembly is operated by a servo controller which can communicate and be programmed through a port of a PC equipped with software.
    Type: Application
    Filed: March 21, 2014
    Publication date: September 25, 2014
    Applicants: Northeastern University, President and Fellows of Harvard College
    Inventors: Dale Larson, Jeffrey Ruberti, John Slusarz, Nicholas Goulas, Erin Rush, Trevor Ehret
  • Patent number: 8713948
    Abstract: A drilling system including a motor that produces a sonic, linear oscillatory motion is provided for removing a frozen biological sample from a stored frozen specimen and methods of use thereof without thawing the remainder of the specimen. The stator and slider assembly is operated by a servo controller which can communicate and be programmed through a port of a PC equipped with software.
    Type: Grant
    Filed: May 23, 2013
    Date of Patent: May 6, 2014
    Assignees: President and Fellows of Harvard College, Northeastern University
    Inventors: Dale Larson, Jeffrey Ruberti, John Slusarz, Trevor Ehret, Nicholas Goulas, Erin Rush
  • Publication number: 20130333399
    Abstract: A drilling system including a motor that produces a sonic, linear oscillatory motion is provided for removing a frozen biological sample from a stored frozen specimen and methods of use thereof without thawing the remainder of the specimen. The stator and slider assembly is operated by a servo controller which can communicate and be programmed through a port of a PC equipped with software.
    Type: Application
    Filed: May 23, 2013
    Publication date: December 19, 2013
    Applicants: Northeastern University, President and Fellows of Harvard College
    Inventors: Dale Larson, Jeffrey Ruberti, John Slusarz, Nicholas Goulas, Erin Rush, Trevor Ehret
  • Patent number: 8448456
    Abstract: A drilling system including a motor that produces a sonic, linear oscillatory motion is provided for removing a frozen biological sample from a stored frozen specimen and methods of use thereof without thawing the remainder of the specimen. The stator and slider assembly is operated by a servo controller which can communicate and be programmed through a port of a PC equipped with software.
    Type: Grant
    Filed: January 16, 2007
    Date of Patent: May 28, 2013
    Assignees: President and Fellows of Harvard College, Northeastern University
    Inventors: Dale Larson, Jeffrey Ruberti, John Slusarz, Nicholas Goulas, Erin Rush, Trevor Ehret
  • Publication number: 20090019877
    Abstract: A drilling system including a motor that produces a sonic, linear oscillatory motion is provided for removing a frozen biological sample from a stored frozen specimen and methods of use thereof without thawing the remainder of the specimen. The stator and slider assembly is operated by a servo controller which can communicate and be programmed through a port of a PC equipped with software.
    Type: Application
    Filed: January 16, 2007
    Publication date: January 22, 2009
    Inventors: Dale Larson, Jeffrey Ruberti, John Slusarz, Nicholas Goulas, Erin Rush, Trevor Ehret
  • Publication number: 20070167541
    Abstract: In preferred embodiments, the present invention provides methods of controllably making a vinyl polymer hydrogel having desired physical properties without chemical cross links or radiation. The gelation process is modulated by controlling, for example the temperature of a resultant vinyl polymer mixture having a gellant or using active ingredients provided in an inactive gellant complex.
    Type: Application
    Filed: February 4, 2004
    Publication date: July 19, 2007
    Applicant: CAMBRIDGE POLYMER GROUP
    Inventors: Jeffrey Ruberti, Gavin Braithwaite
  • Publication number: 20070054990
    Abstract: In preferred embodiments, the present invention provides methods of controllably making a vinyl polymer hydrogel having desired physical properties without chemical cross links or radiation. The gelation process is modulated by controlling, for example, the temperature of a resultant vinyl polymer mixture having a gellant or using active ingredients provided in an inactive gellant complex.
    Type: Application
    Filed: August 7, 2006
    Publication date: March 8, 2007
    Applicant: Cambridge Plymer Group
    Inventors: Jeffrey RUBERTI, Gavin BRAITHWAITE
  • Publication number: 20060270781
    Abstract: In preferred embodiments, the present invention provides methods of controllably making a vinyl polymer hydrogel having desired physical properties without chemical cross links or radiation. The gelation process is modulated by controlling, for example, the temperature of a resultant vinyl polymer mixture having a gellant or using active ingredients provided in an inactive gellant complex.
    Type: Application
    Filed: August 7, 2006
    Publication date: November 30, 2006
    Applicant: Cambridge Polymer Group
    Inventors: Jeffrey Ruberti, Gavin Braithwaite
  • Publication number: 20060228401
    Abstract: This invention includes a method of producing a thin, oriented layer of polymer material. The material is preferably produced by the method of introducing a shearing flow to a free surface in a predominantly monomeric solution of the self-assembling polymer sub-units, and inducing polymerization or growth of the monomer while in this shearing flow. The system for forming the oriented layer of material provides relative movement between a delivery system and the substrate on or over which the material is deposited. The rate of flow of the material from the delivery system and the relative velocity between the deposition surface and the material as it is developed to the surface are controlled to properly orient the material and desired thickness. These rates can be adjusted to vary the properties of the film in a controlled manner. Preferred embodiments include either angular or linear relative movement between the delivery system and the substrate.
    Type: Application
    Filed: May 23, 2006
    Publication date: October 12, 2006
    Applicant: Cambridge Polymer Group, Inc.
    Inventors: Gavin BRAITHWAITE, Jeffrey Ruberti
  • Publication number: 20060159722
    Abstract: This invention includes a method of producing a nanostructured artificial template comprising one or more thin, oriented layer of polymer material. The material is preferably produced by the method of introducing a shearing flow in a predominantly monomeric solution of the self-assembling polymer sub-units to the free surface of a substrate and inducing polymerization or growth of the monomer while in this shearing flow. The rate of flow of the material from the delivery system and the relative velocity between the deposition surface and the material as it is delivered to the surface are controlled to properly orient the material at the desired thickness. These rates can be adjusted to vary the properties of the film in a controlled manner. The nanostructured artificial template is useful for inducing the production of a templated extracellular matrix by a population of cells.
    Type: Application
    Filed: November 26, 2003
    Publication date: July 20, 2006
    Inventors: Gavin Braithwaite, Jeffrey Ruberti
  • Publication number: 20060079597
    Abstract: The present invention provides methods of making covalently crosslinked vinyl polymer hydrogels having advantageous physical properties, and covalently crosslinked vinyl polymer hydrogel compositions made by such methods, as well as articles of manufacture comprising such covalently crosslinked vinyl polymer hydrogel compositions. The physical properties of the produced hydrogels can be adjusted by varying controlled parameters such as the proportion of physical associations, the concentration of polymer and the amount of radiation applied. Such covalently crosslinked vinyl polymer hydrogels can be made translucent, preferably transparent, or opaque depending on the processing conditions. The stability of the physical properties of the produced vinyl polymer hydrogel can be enhanced by controlling the amount of covalent crosslinks.
    Type: Application
    Filed: October 12, 2004
    Publication date: April 13, 2006
    Applicant: Zimmer, Inc.
    Inventors: Orhun Muratoglu, Stephen Spiegelberg, Jeffrey Ruberti, Niels Abt
  • Publication number: 20050019488
    Abstract: This invention includes a method of producing a nanostructured artificial template comprising more than one thin, oriented layer of polymer material. The material is preferably produced by the method of introducing a shearing flow to a free surface in a predominantly monomeric solution of the self-assembling polymer sub-units, and inducing polymerization or growth of the monomer while in this shearing flow. The system for forming the oriented layer of material provides relative movement between a delivery system and the substrate on or over which the material is deposited. The rate of flow of the material from the delivery system and the relative velocity between the deposition surface and the material as it is delivered to the surface are controlled to properly orient the material at the desired thickness. These rates can be adjusted to vary the properties of the film in a controlled manner.
    Type: Application
    Filed: June 30, 2003
    Publication date: January 27, 2005
    Inventors: Gavin Braithwaite, Jeffrey Ruberti