Patents by Inventor Daniel Boggs

Daniel Boggs 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: 20230277735
    Abstract: A cell processing system includes a processor connectable to a source container filled with a biological fluid, the processor including a separator configured to separate the biological fluid from the source container into at least two streams according to a process including at least one process parameter, and a controller coupled to the processor and an input. The controller is configured to receive the at least one process parameter, to evaluate the process using the at least one process parameter before performing the process, and to carry out one or more actions based on the evaluation, such as providing an output estimate to the operator, preventing the process from being performed according to a comparison between a calculated condition and a control, or providing an error indication to the operator according to the calculated condition and a measured in-process condition.
    Type: Application
    Filed: March 8, 2023
    Publication date: September 7, 2023
    Inventors: Christopher J. Wegener, Daniel Boggs, Bret M. Olson, Steven C. Binninger, James D. Hosek
  • Patent number: 11672891
    Abstract: A cell processing system includes a processor connectable to a source container filled with a biological fluid, the processor including a separator configured to separate the biological fluid from the source container into at least two streams according to a process including at least one process parameter, and a controller coupled to the processor and an input. The controller is configured to receive the at least one process parameter, to evaluate the process using the at least one process parameter before performing the process, and to carry out one or more actions based on the evaluation, such as providing an output estimate to the operator, preventing the process from being performed according to a comparison between a calculated condition and a control, or providing an error indication to the operator according to the calculated condition and a measured in-process condition.
    Type: Grant
    Filed: August 10, 2021
    Date of Patent: June 13, 2023
    Assignee: Fenwal, Inc.
    Inventors: Christopher J. Wegener, Daniel Boggs, Bret M. Olson, Steven C. Binninger, James D. Hosek
  • Patent number: 11191879
    Abstract: A cell processing system includes a processor connectable to a source container filled with a biological fluid, the processor including a separator configured to separate the biological fluid from the source container into at least two streams according to a process including at least one process parameter, and a controller coupled to the processor and an input. The controller is configured to receive the at least one process parameter, to evaluate the process using the at least one process parameter before performing the process, and to carry out one or more actions based on the evaluation, such as providing an output estimate to the operator, preventing the process from being performed according to a comparison between a calculated condition and a control, or providing an error indication to the operator according to the calculated condition and a measured in-process condition.
    Type: Grant
    Filed: March 13, 2017
    Date of Patent: December 7, 2021
    Assignee: FENWAL, INC.
    Inventors: Christopher J. Wegener, Daniel Boggs, Bret M. Olson, Steven C. Binninger, James D. Hosek
  • Publication number: 20210361835
    Abstract: A cell processing system includes a processor connectable to a source container filled with a biological fluid, the processor including a separator configured to separate the biological fluid from the source container into at least two streams according to a process including at least one process parameter, and a controller coupled to the processor and an input. The controller is configured to receive the at least one process parameter, to evaluate the process using the at least one process parameter before performing the process, and to carry out one or more actions based on the evaluation, such as providing an output estimate to the operator, preventing the process from being performed according to a comparison between a calculated condition and a control, or providing an error indication to the operator according to the calculated condition and a measured in-process condition.
    Type: Application
    Filed: August 10, 2021
    Publication date: November 25, 2021
    Inventors: Christopher J. Wegener, Daniel Boggs, Bret M. Olson, Steven C. Binninger, James D. Hosek
  • Publication number: 20170340783
    Abstract: A cell processing system includes a processor connectable to a source container filled with a biological fluid, the processor including a separator configured to separate the biological fluid from the source container into at least two streams according to a process including at least one process parameter, and a controller coupled to the processor and an input. The controller is configured to receive the at least one process parameter, to evaluate the process using the at least one process parameter before performing the process, and to carry out one or more actions based on the evaluation, such as providing an output estimate to the operator, preventing the process from being performed according to a comparison between a calculated condition and a control, or providing an error indication to the operator according to the calculated condition and a measured in-process condition.
    Type: Application
    Filed: March 13, 2017
    Publication date: November 30, 2017
    Inventors: Christopher J. Wegener, Daniel Boggs, Bret M. Olson, Steven C. Binninger, James D. Hosek
  • Publication number: 20060257877
    Abstract: A validatable method for determining a photochemically effective dose for inactivating pathogens in a fluid sample is described herein. In particular, the instant invention covers methods for determining a photochemically effective dose sufficient to inactivate pathogens in a biological sample while leaving biologically active substances of interest unaffected. A batch irradiation reactor effective for inactivating pathogens in biological samples is also described.
    Type: Application
    Filed: February 27, 2004
    Publication date: November 16, 2006
    Inventors: Heinz Anderle, Peter Matthiessen, Hans-Peter Schwarz, Peter Turecek, Thomas Kreil, Daniel Boggs
  • Publication number: 20060045796
    Abstract: The present invention relates to a method for determining an effective dose of monochromatic or polychromatic light from one or more light sources to inactivate microorganisms present in a biological fluid, preferably a non-transparent fluid. Moreover, there is provided a method for the inactivation of microorganism in a biological fluid in a flow-through-reactor. Moreover, the invention advantageously provides a flow-through-reactor with one or more thermostated light sources. The invention further provides a method of controlling the light sum dose of monochromatic or polychromatic light emitted from one or more light sources to effectively inactivate microorganisms present in a biological fluid in a batch reactor.
    Type: Application
    Filed: August 24, 2004
    Publication date: March 2, 2006
    Inventors: Heinz Anderle, Peter Matthiessen, Hans-Peter Schwarz, Peter Turecek, Thomas Kreil, Daniel Boggs
  • Publication number: 20030113932
    Abstract: A membrane capable of sensing gaseous phase ammonia is provided. The membrane includes a hydrophobic membrane layer that has a microporous structure and a pH sensitive dye embedded within the microporous structure such that the membrane is capable of calorimetrically sensing a change in ammonia with a high degree of sensitivity and responsiveness as applied to, for example, a change in ammonia dissolved in a dialysis solution during dialysis therapy.
    Type: Application
    Filed: December 14, 2001
    Publication date: June 19, 2003
    Inventors: Shmuel Sternberg, Daniel Boggs, Rosa Yeh, Li Pan