Patents by Inventor James Cooley

James Cooley 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: 10675487
    Abstract: An example particle therapy system may include: a synchrocyclotron to produce a particle beam; a scanner to move the particle beam in one or more dimensions relative to an irradiation target; and an energy degrader that is between the scanner and the irradiation target. The energy degrader may include multiple plates that are movable relative to a path of the particle beam, with the multiple plates each being controllable to move while in the path of the particle beam and during movement of the particle beam. An aperture may be between the energy degrader and the irradiation target. The aperture being may be to trim the particle beam prior to the particle beam reaching the irradiation target.
    Type: Grant
    Filed: January 5, 2017
    Date of Patent: June 9, 2020
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, James Cooley, Adam Molzahn
  • Patent number: 10653892
    Abstract: An example device for trimming a particle beam includes: structures made of material that blocks passage of the particle beam, with the structures being configurable to define an edge that is movable into a path of the particle beam; and linear motors that are controllable to configure the structures to define the edge.
    Type: Grant
    Filed: June 29, 2018
    Date of Patent: May 19, 2020
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Mark R. Jones, James Cooley
  • Patent number: 10646728
    Abstract: An example particle therapy system includes a particle accelerator to output a particle beam having a spot size; a scanning system for the particle accelerator to scan the particle beam in two dimensions across at least part of a treatment area of an irradiation target; and an adaptive aperture between the scanning system and the irradiation target. The adaptive aperture includes structures that are movable relative to the irradiation target to approximate a shape to trim part of the treatment area. The part of the treatment area has a size that is based on an area of the spot size.
    Type: Grant
    Filed: February 21, 2017
    Date of Patent: May 12, 2020
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, Miles S. Wagner, James Cooley, Eros Pedroni, Robert Silva
  • Patent number: 10456591
    Abstract: An example particle therapy system includes: a synchrocyclotron to output a particle beam; a magnet to affect a direction of the particle beam to scan the particle beam across at least part of an irradiation target; scattering material that is configurable to change a spot size of the particle beam, where the scattering material is down-beam of the magnet relative to the synchrocyclotron; and a degrader to change an energy of the beam prior to output of the particle beam to the irradiation target, where the degrader is down-beam of the scattering material relative to the synchrocyclotron.
    Type: Grant
    Filed: October 27, 2017
    Date of Patent: October 29, 2019
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Gerrit Townsend Zwart, James Cooley, Ken Yoshiki Franzen, Mark R. Jones, Tao Li, Michael Busky
  • Patent number: 10368707
    Abstract: A vacuum cleaner tube assembly includes an outer tube defining a vacuum passage extending from a first end to a second end and an inner tube disposed at least partially within the vacuum passage and connected to the outer tube for telescopic adjustment. The inner tube includes a first end and a second end distal from the first end. The vacuum tube assembly further includes an adjustment clamp connected to the second end of the outer tube. The adjustment clamp includes a clamp body with an inner diameter connected to the second end of the outer tube. The adjustment clamp also includes a lever connected to the clamp body and moveable between a first, latched position and a second, unlatched position to permit selective adjustment of the inner diameter of the clamp body and selective clamping between the clamp body and the inner tube.
    Type: Grant
    Filed: March 2, 2017
    Date of Patent: August 6, 2019
    Assignee: Emerson Electric Co.
    Inventors: Christopher Lutz, Jason Hill, Matthew A. Williams, Nicholas James Cooley, Douglas C. Schultz, Jeremy Sanders
  • Patent number: 10258810
    Abstract: An example particle therapy system includes: a synchrocyclotron to output a particle beam; a magnet to affect a direction of the particle beam to scan the particle beam across at least part of an irradiation target; scattering material that is configurable to change a spot size of the particle beam, where the scattering material is down-beam of the magnet relative to the synchrocyclotron; and a degrader to change an energy of the beam prior to output of the particle beam to the irradiation target, where the degrader is down-beam of the scattering material relative to the synchrocyclotron.
    Type: Grant
    Filed: September 26, 2014
    Date of Patent: April 16, 2019
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Gerrit Townsend Zwart, James Cooley, Ken Yoshiki Franzen, Mark R. Jones, Tao Li, Michael Busky
  • Publication number: 20190001153
    Abstract: An example device for trimming a particle beam includes: structures made of material that blocks passage of the particle beam, with the structures being configurable to define an edge that is movable into a path of the particle beam; and linear motors that are controllable to configure the structures to define the edge.
    Type: Application
    Filed: June 29, 2018
    Publication date: January 3, 2019
    Inventors: Mark R. Jones, James Cooley
  • Patent number: 10155124
    Abstract: An example particle therapy system includes the following: a gantry that is rotatable relative to a patient position; a particle accelerator mounted to the gantry, where the particle accelerator is for outputting a particle beam essentially directly to the patient position; and a control system to receive a prescription and to generate machine instructions for configuring one or more operational characteristics of the particle therapy system. At least one of the operational characteristics relates to a rotational angle of the gantry relative to the patient position.
    Type: Grant
    Filed: September 14, 2016
    Date of Patent: December 18, 2018
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Kenneth P. Gall, Stanley J. Rosenthal, Thomas C. Sobczynski, Adam C. Molzahn, Charles D. O'Neal, James Cooley
  • Publication number: 20180236268
    Abstract: An example particle therapy system includes a particle beam output device to direct output of a particle beam; a treatment couch to support a patient containing an irradiation target, with the treatment couch being configured for movement; a movable device on which the particle beam output device is mounted for movement relative to the treatment couch; and a control system to provide automated control of at least one of the movable device or the treatment couch to position at least one of the particle beam or the irradiation target for treatment of the irradiation target with the particle beam and, following the treatment of the irradiation target with the particle beam, to provide automated control of at least one of the movable device or the treatment couch to reposition at least one of the particle beam or the irradiation target for additional treatment of the irradiation target with the particle beam.
    Type: Application
    Filed: February 23, 2017
    Publication date: August 23, 2018
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, James Cooley, Stanley J. Rosenthal
  • Patent number: 9962560
    Abstract: A particle therapy system includes a particle accelerator to output a particle beam; and a scanning system for the particle accelerator to scan the particle beam across at least part of an irradiation target. The scanning system is configured to scan the particle beam in two dimensions that are at an angle relative to a direction of the particle beam. A structure defines an edge. The structure is controllable to move in the two dimensions relative to the irradiation target such that at least part of the structure is between at least part of the particle beam and the irradiation target. The structure includes a material that inhibits transmission of the particle beam.
    Type: Grant
    Filed: December 20, 2013
    Date of Patent: May 8, 2018
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, James Cooley
  • Publication number: 20180043181
    Abstract: An example particle therapy system includes: a synchrocyclotron to output a particle beam; a magnet to affect a direction of the particle beam to scan the particle beam across at least part of an irradiation target; scattering material that is configurable to change a spot size of the particle beam, where the scattering material is down-beam of the magnet relative to the synchrocyclotron; and a degrader to change an energy of the beam prior to output of the particle beam to the irradiation target, where the degrader is down-beam of the scattering material relative to the synchrocyclotron.
    Type: Application
    Filed: October 27, 2017
    Publication date: February 15, 2018
    Inventors: Gerrit Townsend Zwart, James Cooley, Ken Yoshiki Franzen, Mark R. Jones, Tao Li, Michael Busky
  • Publication number: 20180020535
    Abstract: An example method includes: receiving, from a treatment planning process, information that is based on a dose distribution for an irradiation target; and performing at least one of the following operations: moving structures to trim spots of a particle beam so that the spots of the particle beam approximate pre-trimmed spots for which characteristics are obtained based on the information received; moving structures to produce a trimming curve for a layer of an irradiation target based on a specification of a trimming curve for the layer included in the information received; moving structures to produce a single trimming curve for all radiation fields of an irradiation target based on specifications of the single trimming curve included in the information received; or moving structures based on configuration information for the structures in the information received.
    Type: Application
    Filed: July 7, 2017
    Publication date: January 18, 2018
    Inventors: James Cooley, Gerrit Townsend Zwart, Stanley J. Rosenthal, Mark R. Jones, Lionel G. Bouchet, Robert Cessac, Joseph Jachinowski
  • Publication number: 20170251895
    Abstract: A vacuum cleaner tube assembly includes an outer tube defining a vacuum passage extending from a first end to a second end and an inner tube disposed at least partially within the vacuum passage and connected to the outer tube for telescopic adjustment. The inner tube includes a first end and a second end distal from the first end. The vacuum tube assembly further includes an adjustment clamp connected to the second end of the outer tube. The adjustment clamp includes a clamp body with an inner diameter connected to the second end of the outer tube. The adjustment clamp also includes a lever connected to the clamp body and moveable between a first, latched position and a second, unlatched position to permit selective adjustment of the inner diameter of the clamp body and selective clamping between the clamp body and the inner tube.
    Type: Application
    Filed: March 2, 2017
    Publication date: September 7, 2017
    Inventors: Christopher Lutz, Jason Hill, Matthew A. Williams, Nicholas James Cooley, Douglas C. Schultz, Jeremy Sanders
  • Patent number: 9723705
    Abstract: In an example, a synchrocyclotron includes a particle source to provide pulses of ionized plasma to a cavity; a voltage source to provide a radio frequency (RF) voltage to the cavity to accelerate particles from the plasma column outwardly; and an extraction channel to receive a beam of particles from the cavity for output from the particle accelerator. The particle source is configured to control pulse widths of the ionized plasma in order to control an intensity of the beam of particles. This example synchrocyclotron may include one or more of the following features, either alone or in combination.
    Type: Grant
    Filed: September 27, 2013
    Date of Patent: August 1, 2017
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Kenneth P. Gall, Gerrit Townsend Zwart, Jan Van der Laan, Adam C. Molzahn, Charles D. O'Neal, III, Thomas C. Sobczynski, James Cooley
  • Publication number: 20170182338
    Abstract: An example particle therapy system may include: a synchrocyclotron to produce a particle beam; a scanner to move the particle beam in one or more dimensions relative to an irradiation target; and an energy degrader that is between the scanner and the irradiation target. The energy degrader may include multiple plates that are movable relative to a path of the particle beam, with the multiple plates each being controllable to move while in the path of the particle beam and during movement of the particle beam. An aperture may be between the energy degrader and the irradiation target. The aperture being may be to trim the particle beam prior to the particle beam reaching the irradiation target.
    Type: Application
    Filed: January 5, 2017
    Publication date: June 29, 2017
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, James Cooley, Adam Molzahn
  • Publication number: 20170157422
    Abstract: An example particle therapy system includes a particle accelerator to output a particle beam having a spot size; a scanning system for the particle accelerator to scan the particle beam in two dimensions across at least part of a treatment area of an irradiation target; and an adaptive aperture between the scanning system and the irradiation target. The adaptive aperture includes structures that are movable relative to the irradiation target to approximate a shape to trim part of the treatment area. The part of the treatment area has a size that is based on an area of the spot size.
    Type: Application
    Filed: February 21, 2017
    Publication date: June 8, 2017
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, Miles S. Wagner, James Cooley, Eros Pedroni, Robert Silva
  • Publication number: 20170128746
    Abstract: An example particle therapy system includes a particle accelerator to output a particle beam having a spot size; a scanning system for the particle accelerator to scan the particle beam in two dimensions across at least part of a treatment area of an irradiation target; and an adaptive aperture between the scanning system and the irradiation target. The adaptive aperture includes structures that are movable relative to the irradiation target to approximate a shape to trim part of the treatment area. The part of the treatment area has a size that is based on an area of the spot size.
    Type: Application
    Filed: November 10, 2015
    Publication date: May 11, 2017
    Inventors: Gerrit Townsend Zwart, Mark R. Jones, Miles S. Wagner, James Cooley, Eros Pedroni, Robert Silva
  • Publication number: 20170014649
    Abstract: An example particle therapy system includes the following: a gantry that is rotatable relative to a patient position; a particle accelerator mounted to the gantry, where the particle accelerator is for outputting a particle beam essentially directly to the patient position; and a control system to receive a prescription and to generate machine instructions for configuring one or more operational characteristics of the particle therapy system. At least one of the operational characteristics relates to a rotational angle of the gantry relative to the patient position.
    Type: Application
    Filed: September 14, 2016
    Publication date: January 19, 2017
    Inventors: Kenneth P. Gall, Stanley J. Rosenthal, Thomas C. Sobczynski, Adam C. Molzahn, Charles D. O'Neal, James Cooley
  • Patent number: 9545528
    Abstract: An example particle therapy system includes the following: a gantry that is rotatable relative to a patient position; a particle accelerator mounted to the gantry, where the particle accelerator is for outputting a particle beam essentially directly to the patient position; and a control system to receive a prescription and to generate machine instructions for configuring one or more operational characteristics of the particle therapy system. At least one of the operational characteristics relates to a rotational angle of the gantry relative to the patient position.
    Type: Grant
    Filed: September 27, 2013
    Date of Patent: January 17, 2017
    Assignee: Mevion Medical Systems, Inc.
    Inventors: Kenneth P. Gall, Stanley Rosenthal, Thomas C. Sobczynski, Adam C. Molzahn, Charles D. O'Neal, III, James Cooley
  • Publication number: 20150090894
    Abstract: An example particle therapy system includes: a synchrocyclotron to output a particle beam; a magnet to affect a direction of the particle beam to scan the particle beam across at least part of an irradiation target; scattering material that is configurable to change a spot size of the particle beam, where the scattering material is down-beam of the magnet relative to the synchrocyclotron; and a degrader to change an energy of the beam prior to output of the particle beam to the irradiation target, where the degrader is down-beam of the scattering material relative to the synchrocyclotron.
    Type: Application
    Filed: September 26, 2014
    Publication date: April 2, 2015
    Inventors: Gerrit Townsend Zwart, James Cooley, Ken Yoshiki Franzen, Mark R. Jones, Tao Li, Michael Busky