Patents by Inventor Houssein Nasseri

Houssein Nasseri 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: 20230293792
    Abstract: A dialysis system (e.g., a hemodialysis (HD) system) can be designed to operate in alternative environments, such as disaster relief settings or underdeveloped regions. The dialysis system can include a solar panel for generating electricity to power the dialysis machine and an atmospheric water generator for extracting water from ambient air. The extracted water can be used to generate dialysate and saline on-site. One or more of the components of the dialysis machine can be discrete components that are configured to facilitate fast shipping and simple on-site assembly (e.g., at a remote location). In some implementations, the discrete components may be configured to be attached to an existing dialysis system (e.g., a dialysis system designed for operation in a traditional environment) to permit the dialysis system to operate in an alternative environment.
    Type: Application
    Filed: May 30, 2023
    Publication date: September 21, 2023
    Inventors: Roger Caluya, Martin Joseph Crnkovich, Bert D. Egley, David Charles Griffith, Jr., Roland Levin, Houssein Nasseri, Kulwinder S. Plahey, David Yuds
  • Patent number: 11701456
    Abstract: A dialysis system (e.g., a hemodialysis (HD) system) can be designed to operate in alternative environments, such as disaster relief settings or underdeveloped regions. The dialysis system can include a solar panel for generating electricity to power the dialysis machine and an atmospheric water generator for extracting water from ambient air. The extracted water can be used to generate dialysate and saline on-site. One or more of the components of the dialysis machine can be discrete components that are configured to facilitate fast shipping and simple on-site assembly (e.g., at a remote location). In some implementations, the discrete components may be configured to be attached to an existing dialysis system (e.g., a dialysis system designed for operation in a traditional environment) to permit the dialysis system to operate in an alternative environment.
    Type: Grant
    Filed: March 16, 2020
    Date of Patent: July 18, 2023
    Assignee: Fresenius Medical Care Holdings, Inc.
    Inventors: Roger Caluya, Martin Joseph Crnkovich, Bert D. Egley, David Charles Griffith, Jr., Roland Levin, Houssein Nasseri, Kulwinder S. Plahey, David Yuds
  • Publication number: 20200222611
    Abstract: A dialysis system (e.g., a hemodialysis (HD) system) can be designed to operate in alternative environments, such as disaster relief settings or underdeveloped regions. The dialysis system can include a solar panel for generating electricity to power the dialysis machine and an atmospheric water generator for extracting water from ambient air. The extracted water can be used to generate dialysate and saline on-site. One or more of the components of the dialysis machine can be discrete components that are configured to facilitate fast shipping and simple on-site assembly (e.g., at a remote location). In some implementations, the discrete components may be configured to be attached to an existing dialysis system (e.g., a dialysis system designed for operation in a traditional environment) to permit the dialysis system to operate in an alternative environment.
    Type: Application
    Filed: March 16, 2020
    Publication date: July 16, 2020
    Inventors: Roger Caluya, Martin Joseph Crnkovich, Bert D. Egley, David Charles Griffith, Roland Levin, Houssein Nasseri, Kulwinder S. Plahey, David Yuds
  • Patent number: 10632242
    Abstract: A dialysis system (e.g., a hemodialysis (HD) system) can be designed to operate in alternative environments, such as disaster relief settings or underdeveloped regions. The dialysis system can include a solar panel for generating electricity to power the dialysis machine and an atmospheric water generator for extracting water from ambient air. The extracted water can be used to generate dialysate and saline on-site. One or more of the components of the dialysis machine can be discrete components that are configured to facilitate fast shipping and simple on-site assembly (e.g., at a remote location). In some implementations, the discrete components may be configured to be attached to an existing dialysis system (e.g., a dialysis system designed for operation in a traditional environment) to permit the dialysis system to operate in an alternative environment.
    Type: Grant
    Filed: October 4, 2016
    Date of Patent: April 28, 2020
    Assignee: Fresenius Medical Care Holdings, Inc.
    Inventors: Roger Caluya, Martin Joseph Crnkovich, Bert D. Egley, David Charles Griffith, Jr., Roland Levin, Houssein Nasseri, Kulwinder S. Plahey, David Yuds
  • Publication number: 20170189597
    Abstract: A dialysis system (e.g., a hemodialysis (HD) system) can be designed to operate in alternative environments, such as disaster relief settings or underdeveloped regions. The dialysis system can include a solar panel for generating electricity to power the dialysis machine and an atmospheric water generator for extracting water from ambient air. The extracted water can be used to generate dialysate and saline on-site. One or more of the components of the dialysis machine can be discrete components that are configured to facilitate fast shipping and simple on-site assembly (e.g., at a remote location). In some implementations, the discrete components may be configured to be attached to an existing dialysis system (e.g., a dialysis system designed for operation in a traditional environment) to permit the dialysis system to operate in an alternative environment.
    Type: Application
    Filed: October 4, 2016
    Publication date: July 6, 2017
    Inventors: Roger Caluya, Martin Joseph Crnkovich, Bert D. Egley, David Charles Griffith, JR., Roland Levin, Houssein Nasseri, Kulwinder S. Plahey, David Yuds