Patents Assigned to Endomagnetics Limited
  • Publication number: 20230200675
    Abstract: A method for detecting a magnetic marker comprises generating a driving magnetic field comprising first and second frequencies and detecting a response magnetic field comprising first and second response components. The magnetic marker provides a non-linear response to the driving signal. A primary portion of the response components is generated by the magnetic marker, and secondary portion of the response components is generated by a secondary magnetic source. The method comprises determining a driving factor representing a ratio of the frequencies in the driving signal; determining a correction factor corresponding to the secondary ortion of the second response component, based on the first response component and the driving factor; determining a detection signal corresponding to the primary portion of the second response component, based on the second response component and the determined correction factor; and generating an output signal based on a strength of the detection signal.
    Type: Application
    Filed: May 18, 2021
    Publication date: June 29, 2023
    Applicant: ENDOMAGNETICS LIMITED
    Inventors: Tiziano Agostinelli, Simon Richard Hattersley
  • Publication number: 20230176152
    Abstract: A system and method for locating magnetic material. In one embodiment the system includes a magnetic probe; a power module in electrical communication with the magnetic probe to supply current to the magnetic probe; a sense module in electrical communication with the magnetic probe to receive signals from the magnetic probe; and a computer in electrical communication with the power module and the sense module. The computer generates a waveform that controls the supply of current from the power module and receives a signal from the sense module that indicates the presence of magnetic material. The magnetic probe is constructed from a material having a coefficient of thermal expansion of substantially 10?6/° C. or less and a Young's modulus of substantially 50 GPa or greater. In one embodiment magnetic nanoparticles are injected into a breast and the lymph nodes collecting the particles are detected with the probe and deemed sentinel nodes.
    Type: Application
    Filed: January 31, 2023
    Publication date: June 8, 2023
    Applicant: ENDOMAGNETICS LIMITED
    Inventor: Simon Richard Hattersley
  • Publication number: 20220313476
    Abstract: A hyperthermia implant 20 for hyperthermia treatment of tissue 30 of a human or animal body. The implant comprises at least one piece of a large Barkhausen jump material (LBJ) and a magnetic field may be applied to the implant to heat the surrounding tissue. The implant may also be deployed to mark a tissue site in the body for subsequent surgery, thereby providing a combined system for locating an implant and treating the surrounding area. The system includes a handheld probe 14 to excite the implant below the switching field for bistable switching causing a harmonic response to be generated in a sub-bistable mode that allows the implant to be detected and localised.
    Type: Application
    Filed: June 25, 2020
    Publication date: October 6, 2022
    Applicant: ENDOMAGNETICS LIMITED
    Inventors: Quentin John Harmer, Tiziano Agostinelli, Kevin Lorimer
  • Publication number: 20220054224
    Abstract: An implantable magnetic marker comprising at least one piece of a large Barkhausen jump material (LBJ) containing at least one loop. The coiled marker is deployed to mark a tissue site in the body for subsequent surgery, and a magnetic detection system with a handheld probe excites the marker above or below the switching field required for bistable switching of the marker causing a harmonic response to be generated in a bistable or sub-bistable mode that allows the marker to be detected and localised.
    Type: Application
    Filed: November 3, 2021
    Publication date: February 24, 2022
    Applicant: ENDOMAGNETICS LIMITED
    Inventors: Tiziano Agostinelli, Kevin Lorimer, Quentin Harmer
  • Publication number: 20220039683
    Abstract: Dual mode marker and tracer detection system A non-imaging detection system for locating markers or tracers in the body having a common base unit (1) and at least two detection probes, a first detection probe (4) uses a first non-imaging detection technology to detect an implantable marker (8) for lesion localisation and a second detection probe (3) uses a second different, non-imaging detection technology to detect an implantable tracer (9) for lymph node detection, wherein the base unit is capable of receiving detection signals and providing detection information to a user from both probes.
    Type: Application
    Filed: April 27, 2020
    Publication date: February 10, 2022
    Applicant: Endomagnetics Limited
    Inventors: Quentin Harmer, John Gonzalez-Carvajal
  • Publication number: 20210153970
    Abstract: An implantable magnetic marker comprising at least one piece of a large Barkhausen jump material (LBJ) containing at least one loop. The coiled marker is deployed to mark a tissue site in the body for subsequent surgery, and a magnetic detection system with a handheld probe excites the marker above or below the switching field required for bistable switching of the marker causing a harmonic response to be generated in a bistable or sub-bistable mode that allows the marker to be detected and localised.
    Type: Application
    Filed: March 18, 2019
    Publication date: May 27, 2021
    Applicant: ENDOMAGNETICS LIMITED
    Inventors: Tiziano Agostinelli, Kevin Lorimer, Quentin Harmer
  • Patent number: 10124186
    Abstract: The Energy Field and Target Correlation System automatically correlates the characteristics of target particles and a living organism to compute the characteristics of an energy field that is applied to a living organism to activate the target particles which are bound to or consumed or taken up by invasive agents in the living organism to produce detectable effects which can be used to treat the invasive agents. The energy field must be crafted to properly control the response and localize the extent of the illumination. The System automatically selects a set of energy field characteristics, including: field type, frequency, field strength, duration, field modulation, repetition frequency, beam size, and focal point. The determined energy field characteristics then are used to activate field generators to generate the desired energy field.
    Type: Grant
    Filed: December 23, 2015
    Date of Patent: November 13, 2018
    Assignee: Endomagnetics Limited
    Inventors: Daniel B. McKenna, Karl M. Frantz
  • Patent number: 9687668
    Abstract: The Body Cavity Cancer Treatment System achieves extremely uniform temperatures inside the tissue of the body cavity thereby realizing optimal efficacy in enhancing operation of the chemotherapy agent while avoiding harm or pain to the patient. This is accomplished by the inclusion of “target particles”, such as nano-particles, into the body cavity along with the chemotherapy agent to enable the use of an externally generated energy field to cause heating of the chemotherapy agent and the surrounding tissue of the body cavity by the activation of the nano-particles. The proper selection of the applied energy field enables precise control of the heat generated by the movement of the nano-particles.
    Type: Grant
    Filed: August 21, 2012
    Date of Patent: June 27, 2017
    Assignee: ENDOMAGNETICS LIMITED
    Inventors: Daniel B. McKenna, Robert J. Tondu, Alireza Mashal, Karl M. Frantz, Martin A. Huisjen
  • Patent number: 9682247
    Abstract: The body cavity cancer treatment apparatus generates the magnetic field for use in a combined “low temperature hyperthermia” and ionizing radiation and/or chemotherapy cancer treatment protocol. Unlike other competing systems, the body cavity cancer treatment apparatus does not directly kill or ablate the cancer cells with killing temperatures rather, the body cavity cancer treatment apparatus stresses the cancer and cancer stem cells by keeping them at a nominal 42° C. for some period of time via the heating of nano-particles that have been infused into the bladder, using the generated magnetic field.
    Type: Grant
    Filed: July 13, 2015
    Date of Patent: June 20, 2017
    Assignee: ENDOMAGNETICS LIMITED
    Inventors: Michael Edward Susedik, Karl Michael Frantz, Daniel Bernard McKenna, Martin Albert Huisjen, Carolyn Perry Adams
  • Patent number: 8968171
    Abstract: The Energy Field and Target Correlation System automatically correlates the characteristics of target particles and a living organism to compute the characteristics of an energy field that is applied to a living organism to activate the target particles which are bound to or consumed or taken up by invasive agents in the living organism to produce detectable effects which can be used to image and treat the invasive agents. The energy field must be crafted to properly control the response and localize the extent of the illumination. The System automatically selects a set of energy field characteristics, including: field type, frequency, field strength, duration, field modulation, repetition frequency, beam size, and focal point. The determined energy field characteristics then are used to activate field generators to generate the desired energy field.
    Type: Grant
    Filed: January 24, 2011
    Date of Patent: March 3, 2015
    Assignee: Endomagnetics Limited
    Inventors: Daniel B. McKenna, Karl M. Frantz, Marvin A. Ross, Andrew C. Updegrave, Michael E. Susedik