Patents by Inventor Elizabeth Mirowski

Elizabeth Mirowski 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: 20230014738
    Abstract: Provided herein are adipose mimic compositions for use in MRI. The compositions of the invention mimic the MRI properties of human adipose tissue, including T1 relaxation kinetics, T2 relaxation kinetics, magnetic susceptibility, and chemical shift artifact. The compositions of the invention are readily manufactured from inexpensive materials. The compositions of the invention may be used in MRI system calibration or for implementing image correction techniques such as fat suppression.
    Type: Application
    Filed: September 18, 2022
    Publication date: January 19, 2023
    Applicant: Caliber MRI, Inc.
    Inventors: Elizabeth Mirowski, Michael Snow
  • Patent number: 10809331
    Abstract: Provided herein are novel liquid crystal based devices for the facile measurement of temperature in an MRI system. The thermometers comprise a plurality of vessels wherein each vessel contains a liquid crystal composition having a unique phase transition temperature. By scanning with appropriate techniques, the state of the liquid crystals in each vessel can be assessed, and the temperature at the time of the scan can be determined by the state of the liquid crystal compositions. Also provided are novel vessels and assemblies of vessels that can be used as MRI thermometers and which are compatible with MRI phantoms.
    Type: Grant
    Filed: March 5, 2018
    Date of Patent: October 20, 2020
    Assignee: QalibreMD
    Inventors: Elizabeth Mirowski, Michael Snow, Kathryn Keenan
  • Publication number: 20190271750
    Abstract: Provided herein are novel liquid crystal based devices for the facile measurement of temperature in an MRI system. The thermometers comprise a plurality of vessels wherein each vessel contains a liquid crystal composition having a unique phase transition temperature. By scanning with appropriate techniques, the state of the liquid crystals in each vessel can be assessed, and the temperature at the time of the scan can be determined by the state of the liquid crystal compositions. Also provided are novel vessels and assemblies of vessels that can be used as MRI thermometers and which are compatible with MRI phantoms.
    Type: Application
    Filed: March 5, 2018
    Publication date: September 5, 2019
    Inventors: Elizabeth Mirowski, Michael Snow, Kathryn Keenan
  • Publication number: 20170293011
    Abstract: Provided herein are adipose mimic compositions for use in MRI. The compositions of the invention mimic the MRI properties of human adipose tissue, including T1 relaxation kinetics, T2 relaxation kinetics, magnetic susceptibility, and chemical shift artifact. The compositions of the invention are readily manufactured from inexpensive materials. The compositions of the invention may be used in MRI system calibration or for implementing image correction techniques such as fat suppression.
    Type: Application
    Filed: April 7, 2017
    Publication date: October 12, 2017
    Inventors: Elizabeth Mirowski, Michael Snow
  • Patent number: 8911678
    Abstract: Moisture and malodor control systems are disclosed. These systems provide moisture control and the sustained delivery of active volatile compounds for imparting fragrance and controlling malodor within innumerable objects and spaces, such as shoes, gloves, closets, etc. The systems utilize a novel combination of active volatiles contained within a diluent carrier and solid adsorbing compound. In some embodiments, increased release of active volatiles is triggered by the presence of moisture in the target environment. The systems of the invention may further include an accessory component for providing fragrance to the target environment and/or an accessory component for absorbing and removing malodorous compounds from the target environment.
    Type: Grant
    Filed: March 4, 2013
    Date of Patent: December 16, 2014
    Inventor: Elizabeth Mirowski
  • Publication number: 20130230431
    Abstract: Moisture and malodor control systems are disclosed. These systems provide moisture control and the sustained delivery of active volatile compounds for imparting fragrance and controlling malodor within innumerable objects and spaces, such as shoes, gloves, closets, etc. The systems utilize a novel combination of active volatiles contained within a diluent carrier and solid adsorbing compound. In some embodiments, increased release of active volatiles is triggered by the presence of moisture in the target environment. The systems of the invention may further include an accessory component for providing fragrance to the target environment and/or an accessory component for absorbing and removing malodorous compounds from the target environment.
    Type: Application
    Filed: March 4, 2013
    Publication date: September 5, 2013
    Inventor: Elizabeth Mirowski
  • Patent number: 7985599
    Abstract: Arrays of spin-valve elements that can be selectively activated to trap, hold, manipulate and release magnetically tagged biological and chemical particles, including molecules and polymers. The spin-valve elements that can be selectively activated and deactivated by applying a momentary applied magnetic field thereto. The spin valve element array can be used for selectively sorting and transporting magnetic particles one particle at a time within the array. As the magnetically tagged particles are held by the spin-valve elements, application of an auxiliary magnetic field can be used to apply tension or torsion to the held particles or to move, e.g. rotate, the trapped particles. The arrays of spin-valve elements can be used in a variety of applications including drug screening, nucleic acid sequencing, structural control and analysis of RNA/DNA and proteins, medical diagnosis, and magnetic particle susceptibility and size homogenization for other medical applications.
    Type: Grant
    Filed: February 13, 2007
    Date of Patent: July 26, 2011
    Assignee: The United States of America as represented by the Secretary of Commerce, The National Institute of Standards and Technology
    Inventors: John Moreland, Elizabeth Mirowski, Stephen E. Russek
  • Patent number: 7981696
    Abstract: Arrays of spin-valve elements that can be selectively activated to trap, hold, manipulate and release magnetically tagged biological and chemical particles, including molecules and polymers. The spin-valve elements that can be selectively activated and deactivated by applying a momentary applied magnetic field thereto. The spin valve element array can be used for selectively sorting and transporting magnetic particles one particle at a time within the array. As the magnetically tagged particles are held by the spin-valve elements, application of an auxiliary magnetic field can be used to apply tension or torsion to the held particles or to move, e.g. rotate, the trapped particles. The arrays of spin-valve elements can be used in a variety of applications including drug screening, nucleic acid sequencing, structural control and analysis of RNA/DNA and protiens, medical diagnosis, and magnetic particle susceptibility and size homogenization for other medical applications.
    Type: Grant
    Filed: February 18, 2005
    Date of Patent: July 19, 2011
    Assignee: The United States of America, as represented by the Secretary of Commerce, The National Institute of Standards and Technology
    Inventors: John Moreland, Elizabeth Mirowski, Stephen E. Russek
  • Publication number: 20070141728
    Abstract: Arrays of spin-valve elements that can be selectively activated to trap, hold, manipulate and release magnetically tagged biological and chemical particles, including molecules and polymers. The spin-valve elements that can be selectively activated and deactivated by applying a momentary applied magnetic field thereto. The spin valve element array can be used for selectively sorting and transporting magnetic particles one particle at a time within the array. As the magnetically tagged particles are held by the spin-valve elements, application of an auxiliary magnetic field can be used to apply tension or torsion to the held particles or to move, e.g. rotate, the trapped particles. The arrays of spin-valve elements can be used in a variety of applications including drug screening, nucleic acid sequencing, structural control and analysis of RNA/DNA and protiens, medical diagnosis, and magnetic particle susceptibility and size homogenization for other medical applications.
    Type: Application
    Filed: February 13, 2007
    Publication date: June 21, 2007
    Inventors: John Moreland, Elizabeth Mirowski, Stephen Russek
  • Publication number: 20050170418
    Abstract: Arrays of spin-valve elements that can be selectively activated to trap, hold, manipulate and release magnetically tagged biological and chemical particles, including molecules and polymers. The spin-valve elements that can be selectively activated and deactivated by applying a momentary applied magnetic field thereto. The spin valve element array can be used for selectively sorting and transporting magnetic particles one particle at a time within the array. As the magnetically tagged particles are held by the spin-valve elements, application of an auxiliary magnetic field can be used to apply tension or torsion to the held particles or to move, e.g. rotate, the trapped particles. The arrays of spin-valve elements can be used in a variety of applications including drug screening, nucleic acid sequencing, structural control and analysis of RNA/DNA and protiens, medical diagnosis, and magnetic particle susceptibility and size homogenization for other medical applications.
    Type: Application
    Filed: February 18, 2005
    Publication date: August 4, 2005
    Inventors: John Moreland, Elizabeth Mirowski, Stephen Russek