Patents by Inventor James Murto

James Murto 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: 11116867
    Abstract: Embolic materials, suspensions, kits and related methods useful for embolization are disclosed. An embolic material can comprise a resorbable microsphere including cross-linked gelatin as its primary ingredient and having a substantially spherical shape with a diameter of about 50 micrometers to about 1,500 micrometers, inclusive. The microsphere can optionally include one or both of a marker or an active agent. The microsphere can be cross-linked, such as with glutaraldehyde or formaldehyde, which can affect the microsphere's in vivo degradation profile and ability to withstand a sterilization process at certain temperatures. In an embodiment, the microspheres can resorb during an in vivo time period of between about 24 hours and about 15 weeks, inclusive. An embolization suspension can include a plurality of resorbable microspheres and a liquid carrier, and the suspension can be disposed in a syringe, vial or other applicator for administration to a patient.
    Type: Grant
    Filed: July 13, 2018
    Date of Patent: September 14, 2021
    Assignee: TELEFLEX LIFE SCIENCES LIMITED
    Inventors: Stephen Penegor, Jason Isenburg, James Murto
  • Patent number: 10179188
    Abstract: Embolic materials, suspensions, kits and related methods useful for embolization are disclosed. An embolic material can comprise a resorbable microsphere including cross-linked gelatin as its primary ingredient and having a substantially spherical shape with a diameter of about 50 micrometers to about 1,500 micrometers, inclusive. The microsphere can optionally include one or both of a marker or an active agent. The microsphere can be cross-linked, such as with glutaraldehyde or formaldehyde, which can affect the microsphere's in vivo degradation profile and ability to withstand a sterilization process at certain temperatures. In an embodiment, the microspheres can resorb during an in vivo time period of between about 24 hours and about 15 weeks, inclusive. An embolization suspension can include a plurality of resorbable microspheres and a liquid carrier, and the suspension can be disposed in a syringe, vial or other applicator for administration to a patient.
    Type: Grant
    Filed: July 13, 2018
    Date of Patent: January 15, 2019
    Assignee: TELEFLEX INNOVATIONS S.À.R.L.
    Inventors: Stephen Penegor, Jason Isenburg, James Murto
  • Patent number: 10071181
    Abstract: Embolic materials, suspensions, kits and related methods useful for embolization are disclosed. An embolic material can comprise a resorbable microsphere including cross-linked gelatin as its primary ingredient and having a substantially spherical shape with a diameter of about 50 micrometers to about 1,500 micrometers, inclusive. The microsphere can optionally include one or both of a marker or an active agent. The microsphere can be cross-linked, such as with glutaraldehyde or formaldehyde, which can affect the microsphere's in vivo degradation profile and ability to withstand a sterilization process at certain temperatures. In an embodiment, the microspheres can resorb during an in vivo time period of between about 24 hours and about 15 weeks, inclusive. An embolization suspension can include a plurality of resorbable microspheres and a liquid carrier, and the suspension can be disposed in a syringe, vial or other applicator for administration to a patient.
    Type: Grant
    Filed: April 18, 2016
    Date of Patent: September 11, 2018
    Assignee: TELEFLEX INNOVATIONS S.À.R.L.
    Inventors: Stephen Penegor, Jason Isenburg, James Murto
  • Patent number: 9943314
    Abstract: Assemblies and methods for delivering an implant to a patient are disclosed. A delivery assembly can comprise an elongate tube, an outer magnetic member, and an inner magnetic member. The elongate tube extends from a proximal end portion to a distal end portion and defines a delivery lumen. The outer magnetic member can be movable along an outer surface of the tube; the inner magnetic member can be positioned within the delivery lumen and magnetically coupled to the outer magnetic member through a sidewall of the tube. The inner magnetic member can be movable through the delivery lumen when actuated by relative movement between the outer magnetic member and the tube. The delivery assembly can further comprise a syringe or an inflator/deflator couplable to a hub at the proximal end portion of the tube. The syringe or inflator/deflator can be used to urge fluid against a proximal end portion of the inner magnetic member.
    Type: Grant
    Filed: January 22, 2016
    Date of Patent: April 17, 2018
    Assignee: Teleflex Innovations S.à.r.l.
    Inventors: Chad Kugler, James Murto
  • Publication number: 20160302796
    Abstract: Assemblies and methods for delivering an implant to a patient are disclosed. A delivery assembly can comprise an elongate tube, an outer magnetic member, and an inner magnetic member. The elongate tube extends from a proximal end portion to a distal end portion and defines a delivery lumen. The outer magnetic member can be movable along an outer surface of the tube; the inner magnetic member can be positioned within the delivery lumen and magnetically coupled to the outer magnetic member through a sidewall of the tube. The inner magnetic member can be movable through the delivery lumen when actuated by relative movement between the outer magnetic member and the tube. The delivery assembly can further comprise a syringe or an inflator/deflator couplable to a hub at the proximal end portion of the tube. The syringe or inflator/deflator can be used to urge fluid against a proximal end portion of the inner magnetic member.
    Type: Application
    Filed: January 22, 2016
    Publication date: October 20, 2016
    Inventors: Chad Kugler, James Murto
  • Patent number: 8758427
    Abstract: Assemblies, kits, and methods for occluding a vascular vessel, such as a varicose vein, are disclosed. An assembly can include a removable inner member, a removable outer member, and an elongated expandable member positioned in a compressed form between portions of the inner and outer members. To facilitate their removal, one or both of the inner and outer members can include a handle coupled to a proximal end. The elongated expandable member can include a gelatin material or a collagen material that is configured, when wetted, to expand from a compressed first diametrical size to a second larger diametrical size within a time period of 5 minutes or less. At the second larger diametrical size, the gelatin or collagen material can occlude a vascular vessel for a period of at least 20 days without degrading.
    Type: Grant
    Filed: December 2, 2011
    Date of Patent: June 24, 2014
    Assignee: Vascular Solutions, Inc.
    Inventors: Howard Root, James Murto, Stephen Penegor, Gregg Sutton
  • Publication number: 20130144323
    Abstract: Assemblies, kits, and methods for occluding a vascular vessel, such as a varicose vein, are disclosed. An assembly can include a removable inner member, a removable outer member, and an elongated expandable member positioned in a compressed form between portions of the inner and outer members. To facilitate their removal, one or both of the inner and outer members can include a handle coupled to a proximal end. The elongated expandable member can include a gelatin material or a collagen material that is configured, when wetted, to expand from a compressed first diametrical size to a second larger diametrical size within a time period of 5 minutes or less. At the second larger diametrical size, the gelatin or collagen material can occlude a vascular vessel for a period of at least 20 days without degrading.
    Type: Application
    Filed: December 2, 2011
    Publication date: June 6, 2013
    Applicant: Vascular Solutions, Inc.
    Inventors: Howard Root, James Murto, Stephen Penegor, Gregg Sutton
  • Patent number: 6689615
    Abstract: Approaches are described for separating plasma from whole blood samples and include the use of magnetically attractable particles associated with an agglutinating agent. The magnetically attractable particles bind the cellular components in a whole blood sample. Application of a magnetic field gradient to a container with the blood sample and the magnetically attractable particles draws the particles to the surface of the container near the source of the magnetic field gradient. The plasma can be removed and stored or used for monitoring or detecting analytes in the plasma.
    Type: Grant
    Filed: October 4, 2000
    Date of Patent: February 10, 2004
    Inventors: James Murto, Michael Salvati