Patents by Inventor Walter J. Rogers, Jr.

Walter J. Rogers, Jr. 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: 5477144
    Abstract: A method for removing image artifacts in MRI created when data acquisition is synchronized to a physiological and therefore uneven intervals. The method simultaneously records both image data from the MRI scanner as well as the exact interval between each data acquisition. The image data is then modified according to the timing file to create a image data file free from signal variations and artifacts resulting from the uneven data sampling intervals.
    Type: Grant
    Filed: February 18, 1993
    Date of Patent: December 19, 1995
    Assignee: Johns Hopkins University
    Inventor: Walter J. Rogers, Jr.
  • Patent number: 5397563
    Abstract: Accordingly, the present invention is directed to biological compounds derivatized so as to contain at least one perfluoro-t-butyl moiety for use in fluorine-19 NMR and/or MRI studies. The perfluoro-t-butyl (PFTB) moiety, ##STR1## is an excellent reporter group for fluorine-19 NMR/MRI. It is a source of nine magnetically equivalent fluorine nuclei which generate a single intense resonance for easy detection in spectroscopy or imaging. This signal is a sharp singlet, not split by neighboring nuclei or spread over a wide frequency range and eliminates any chance of ghost images which might arise from multiple resonances. These spectral properties ensure a maximum signal-to-noise ratio (S/N) for readily detecting this moiety. The foregoing allows either reduction in the concentration of the derivatized compound, ability to use MRI instruments with lower field strengths, a reduction in imaging times, or a combination of the foregoing as a result of this moiety producing a single, sharp, intense resonance.
    Type: Grant
    Filed: March 1, 1994
    Date of Patent: March 14, 1995
    Assignees: The Johns Hopkins University, Towson State University
    Inventors: Walter J. Rogers, Jr., Thomas S. Everett
  • Patent number: 5324504
    Abstract: Accordingly, the present invention is directed to biological compounds derivatized so as to contain at least one perfluoro-t-butyl moiety for use in fluorine-19 NMR and/or MRI studies. The perfluoro-t-butyl (PFTB) moiety, ##STR1## is an excellent reported group for fluorine-19 NMR/MRI. It is a source of nine magnetically equivalent fluorine nuclei which generate a single intense resonance for each detection in spectroscopy or imaging. This signal is a sharp singlet, not split by neighboring nuclei or spread over a wide frequency range and eliminates any change of ghost images which might arise from multiple resonances. These spectral properties ensure a maximum signal-to-noise ratio (S/N) for readily detecting this moiety. The foregoing allows either reduction in the concentration of the derivatized compound, ability to use MRI instruments with lower field strengths, a reduction in imaging times, or a combination of the foregoing as a result of this moiety producing a single, sharp, intense resonance.
    Type: Grant
    Filed: March 4, 1993
    Date of Patent: June 28, 1994
    Assignees: The Johns Hopkins University, Towson State University
    Inventors: Walter J. Roger, Jr., Thomas S. Everett
  • Patent number: 5234680
    Abstract: The present invention is directed to biological compounds derivatized so as to contain at least one perfluoro-t-butyl moiety for use in fluorine-19 NMR and/or MRI studies. The perfluoro-t-butyl (PFTB) moiety, ##STR1## is an excellent reporter group for fluorine-19 NMR/MRI. It is a source of nine magnetically equivalent fluorine nuclei which generate a single intense resonance for easy detection in spectroscopy or imaging. This signal is a sharp singlet, not split by neighboring nuclei or spread over a wide frequency range and eliminates any chance of ghost images which might arise from multiple resonances. These spectral properties ensure a maximum signal-to-noise ratio (S/N) for readily detecting this moiety. The foregoing allows either reduction in the concentration of the derivatized compound, ability to use MRI instruments with lower field strengths, a reduction in imaging times, or a combination of the foregoing as a result of this moiety producing a single, sharp, intense resonance.
    Type: Grant
    Filed: September 19, 1991
    Date of Patent: August 10, 1993
    Assignees: Johns Hopkins Univ., Towson State University
    Inventors: Walter J. Rogers, Jr., Thomas S. Everett
  • Patent number: 5116599
    Abstract: Accordingly, the present invention is directed to biological compounds derivatized so as to contain at least one perfluoro-t-butyl moiety for use in fluorine-19 NMR and/or MRI studies. The perfluoro-t-butyl (PFTB) moiety, ##STR1## is an excellent reporter group for fluorine-19 NMR/MRI. It is a source of nine magnetically equivalent fluorine nuclei which generate a single intense resonance for easy detection in spectroscopy or imaging. This signal is a sharp singlet, not split by neighboring nuclei or spread over a wide frequency range and eliminates any chance of ghost images which might arise from multiple resonances. These spectral properties ensure a maximum signal-to-noise ratio (S/N) for readily detecting this moiety. The foregoing allows either reduction in the concentration of the derivatized compound, ability to use MRI instruments with lower field strengths, a reduction in imaging times, or a combination of the foregoing as a result of this moiety producing a single, sharp, intense resonance.
    Type: Grant
    Filed: July 31, 1989
    Date of Patent: May 26, 1992
    Assignees: Johns Hopkins Univ., Towson State Univ.
    Inventors: Walter J. Rogers, Jr., Thomas S. Everett