Patents by Inventor Herbert E. Schwartz

Herbert E. Schwartz 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: 6034140
    Abstract: The present invention relates to improved methods for making and using bioadhesive, bioresorbable, anti-adhesion compositions made of intermacromolecular complexes of carboxyl-containing polysaccharides and polyethers, and to the resulting compositions. The polymers are associated with each other, and are then either dried or are used as fluids. Bioresorbable, bioadhesive, anti-adhesion compositions are useful in surgery to prevent the formation of post-surgical adhesions. The compositions are designed to breakdown in-vivo, and thus be removed from the body. Membranes are inserted during surgery either dry or optionally after conditioning in aqueous solutions. The anti-adhesion, bioadhesive, bioresorptive, antithrombogenic and physical properties of such membranes can be varied as needed by carefully adjusting the pH of the polymer casting solutions, polysaccharide composition, the polyether composition, or by conditioning the membranes prior to surgical use.
    Type: Grant
    Filed: February 13, 1998
    Date of Patent: March 7, 2000
    Assignee: FzioMed, Inc.
    Inventors: Herbert E. Schwartz, John M. Blackmore
  • Patent number: 6017301
    Abstract: The present invention relates to improved methods for making and using bioadhesive, bioresorbable, anti-adhesion compositions made of intermacromolecular complexes of carboxyl-containing polysaccharides and polyethers, and to the resulting compositions. The polymers are associated with each other, and are then either dried or are used as fluids. Bioresorbable, bioadhesive, anti-adhesion compositions are useful in surgery to prevent the formation of post-surgical adhesions. The compositions are designed to breakdown in-vivo, and thus be removed from the body. Membranes are inserted during surgery either dry or optionally after conditioning in aqueous solutions. The anti-adhesion, bioadhesive, bioresorptive, antithrombogenic and physical properties of such membranes can be varied as needed by carefully adjusting the pH of the polymer casting solutions, polysaccharide composition, the polyether composition, or by conditioning the membranes prior to surgical use.
    Type: Grant
    Filed: February 13, 1998
    Date of Patent: January 25, 2000
    Assignee: FzioMed, Inc.
    Inventors: Herbert E. Schwartz, John M. Blackmore
  • Patent number: 5906997
    Abstract: The present invention relates to improved methods for making and using bioadhesive, bioresorbable, anti-adhesion compositions made of intermacromolecular complexes of carboxyl-containing polysaccharides and polyethers, and to the resulting compositions. The polymers are associated with each other, and are then either dried or are used as fluids. Bioresorbable, bioadhesive, anti-adhesion compositions are useful in surgery to prevent the formation of post-surgical adhesions. The compositions are designed to breakdown in-vivo, and thus be removed from the body. Membranes are inserted during surgery either dry or optionally after conditioning in aqueous solutions. The anti-adhesion, bioadhesive, bioresorptive, antithrombogenic and physical properties of such membranes can be varied as needed by carefully adjusting the pH of the polymer casting solutions, polysaccharide composition, the polyether composition, or by conditioning the membranes prior to surgical use.
    Type: Grant
    Filed: June 17, 1997
    Date of Patent: May 25, 1999
    Assignee: Fzio Med, Inc.
    Inventors: Herbert E. Schwartz, John M. Blackmore
  • Patent number: 4971915
    Abstract: A method is provided which can be used to accurately determine the boiling points of middle to heavy petroleum residues (AEBP of 250-1400 degrees F.) using temperatures well below their decomposition temperatures. The method involves the use of a capillary supercritical fluid chromatography apparatus, and consists of a calibration run followed by a measurement run. First, a temperature T1 (between 100 degrees C. and 180 degrees C.) is established in a gas chromatographic (GC) oven of the SFC apparatus, and that temperature is maintained throughout the method. Then a calibration run is performed on a calibration standard using a pressure program, and a calibration function is calculated using the known boiling points of the calibration standard. Then the test sample is run using the same pressure program and the calibration function is used to calculate the boiling point distribution of the test sample.
    Type: Grant
    Filed: May 15, 1987
    Date of Patent: November 20, 1990
    Assignee: Applied Biosystems, Inc.
    Inventors: Herbert E. Schwartz, Robert G. Brownlee