Patents Assigned to Ion Beam Applications
  • Patent number: 12472383
    Abstract: A particle therapy apparatus configured to scan a charged particle beam over a target according to a pre-defined treatment field which covers a treatment surface in an isocenter plane of the apparatus. The apparatus is capable of scanning the beam over a reachable surface which covers and is larger than the treatment surface. A beam stopper is arranged downstream of the scanning magnets of the apparatus, at a position to prevent the beam from reaching at least a portion of the reachable surface and to allow the beam to reach any portion of the treatment surface. A control system is configured to control the apparatus to direct the beam to the beam stopper and to meanwhile measure a position of the beam, to calculate a difference between a desired position and the measured position of the beam when directed to the beam stopper, and to scan the beam over the target according to the pre-defined treatment field by taking into account the calculated difference.
    Type: Grant
    Filed: July 21, 2023
    Date of Patent: November 18, 2025
    Assignee: ION BEAM APPLICATIONS
    Inventors: David Chris Hertlein, François Vander Stappen, Rudi Labarbe
  • Patent number: 12442780
    Abstract: A method for assessing a quality of a beam shaping device includes, establishing with a treatment planning system (TPS) the planned device design of the beam shaping device, manufacturing the beam shaping device according to the planned device design, establishing a CT-scan of the beam shaping device to yield an actual CT-image, determining dimensions and local materials densities from the actual CT-image, determining a calculated dose distribution in the treatment volume (V), and comparing the calculated dose distribution (cDD) with a reference dose distribution (rDD).
    Type: Grant
    Filed: August 23, 2023
    Date of Patent: October 14, 2025
    Assignee: ION BEAM APPLICATIONS
    Inventors: Lucian Hotoiu, Rudi Labarbe, François Vander Stappen, Julia Pakela, Boonkeng Kevin Teo, Wei Zou
  • Patent number: 12399765
    Abstract: A computer-based method for generating one or more FTA fault trees from an FMEA table of a technical system or vice versa. The method includes defining a common data set for both the FMEA table and the one or more FTA fault tree(s) of the technical system, obtaining data of the common data set for the technical system, selecting a representation of the technical system as a FMEA table or as one or more FTA fault tree(s), and using the data of the common data for generating and displaying on a graphical user interface the FMEA table of the technical system or one or more FTA fault tree(s) of the technical system, depending on the selected representation.
    Type: Grant
    Filed: January 27, 2023
    Date of Patent: August 26, 2025
    Assignee: Ion Beam Applications
    Inventors: David Menichelli, Andreas Lämmerzahl
  • Patent number: 12138472
    Abstract: A treatment device includes a pulsed particles accelerator and a processor for controlling the latter to deliver a treatment plan by deposition at HDR of charged particles into a flash volume (Vht) by PBS. To shorten the time for depositing a target dose (Dti) into the cells spanned by the flash spots (Si) of the flash volume (Vht), the flash spots are combined into k sets of n flash spots (Si). After depositing a jth pulse dose (Dij) into the cells spanned by a ith flash spot (Si) the beam commutes from the ith flash spot (Si) to a next (i+1)th flash spot according to a flash scanning subsequence to deposit a jth dose into the cells spanned by each of the subsequent flash spots of the flash scanning subsequence, until returning to the ith flash spot to deposit a (j+1)th dose (Di(j+1)), and so on When all the cells spanned by all the flash spots of a set have received their corresponding target dose, the beam moves to a next set of combined flash spots and repeats the foregoing pulse deposition steps.
    Type: Grant
    Filed: July 7, 2022
    Date of Patent: November 12, 2024
    Assignee: Ion Beam Applications
    Inventors: Rudi Labarbe, Lucian Hotoiu, Arnaud Pin, Yves Claereboudt, Gabriel Krier
  • Publication number: 20240131361
    Abstract: The present invention concerns a method for designing a ridge filter for a charged particle accelerator, for depositing with beams of accelerated particles (100.i) specific doses (Dij) into specific locations within a treatment volume (V) of tissue comprising tumoral cells (3t) by single layer pencil beam scanning (PBS), according to a predefined treatment plan (TP), the method comprising the following steps, Defining an array of spots (Si) defining the bases of cylindrical subvolumes (Vi) defining the treatment volume (V); the subvolumes (Vi) are divided into N cells (Cij). The ridge filter is designed comprising the same number of energy degrading units (11.i) as there are spots (Si). Each energy degrading unit (11.i) is formed by N cylindrical degrading subunits (11.ij) of lengths (Lij) and area (Aij). The lengths (Lij) of each degrading subunit (11.
    Type: Application
    Filed: November 2, 2022
    Publication date: April 25, 2024
    Applicant: Ion Beam Applications
    Inventors: Rudi LABARBE, Lucian HOTOIU, Arnaud PIN
  • Patent number: 11724845
    Abstract: The present invention concerns an apparatus for irradiating goods with X-rays, comprising a first source of X-rays configured for emitting X-rays along a first irradiation volume centered on a longitudinal axis (X), and a conveyor configured for driving goods such as to expose a first portion of the goods through the first irradiation volume, wherein, the conveyor is configured for driving the target products through the irradiation volume along a vertical axis (Z).
    Type: Grant
    Filed: November 23, 2021
    Date of Patent: August 15, 2023
    Assignee: Ion Beam Applications
    Inventors: Peter Baker, Frédéric Stichelbaut, Christophe Malice, Dominique Vincent, Candice Nagel, Frédéric Dessy
  • Patent number: 11594345
    Abstract: The embodiments of the present disclosure provide a method for producing Ac-225 from Ra-226, comprising submitting Ra-226 to a photo-nuclear process, collecting an electrochemical precipitation of an Ac-225 on a cathode in a recipient, removing the cathode from the recipient after the electrochemical precipitation of the Ac-225, transferring the cathode to a hot cell environment, and extracting the Ac-225 from the cathode in the hot cell environment. The Ra-226 may comprise a liquid solution in the recipient, and submitting Ra-226 to the photo-nuclear process may comprise irradiating the Ra-226 to produce Ra-225. The Ra-225 may decay into Ac-225 upon irradiation of the Ra-226.
    Type: Grant
    Filed: November 25, 2020
    Date of Patent: February 28, 2023
    Assignee: Ion Beam Applications
    Inventors: Jozef Comor, Jean-Michel Geets, Gerd-Jürgen Beyer
  • Patent number: 11559702
    Abstract: A treatment planning system for generating a plan for treatment by radiation with charged particles beams applied by pencil beam scanning onto a target tissue comprising tumoral cells is provided. The treatment planning system performs a dose definition stage defining the doses to be deposited within the peripheral surface, a beam definition stage defining positions and dimensions of the beamlets of the PBS during the at least one high rate fraction, the beams definition stage including a dose rate definition stage comprising at least one high rate fraction, and a beamlets scanning sequence stage defining a scanning sequence of irradiation of the beamlets. The beamlets scanning sequence stage optimizes a time sequence of beamlets emission such that at the end of a fraction j, a dose is deposited onto at least a predefined fraction of each specific volume at a mean deposition rate superior or equal to a predefined value.
    Type: Grant
    Filed: June 29, 2021
    Date of Patent: January 24, 2023
    Assignee: Ion Beam Applications
    Inventors: Rudi Labarbe, Lucian Hotoiu, Arnaud Pin
  • Patent number: 11511135
    Abstract: A radiotherapy apparatus for the delivery of an energetic beam to a target tissue in a treatment zone, including: a rotatable gantry for rotating the end of a beam delivery system about a circle centered on an isocentre and normal to an axis of rotation Z1 of the gantry, the path between the end of the beam delivery system and the isocentre defining a central beam axis Z2 at every rotation angle of the gantry about the axis of rotation Z1; an imaging ring having a central bore and an imaging system for acquiring images of a patient in an imaging zone of the imaging system, wherein the imaging ring is located in the radiotherapy apparatus such that its imaging zone intersects the axis of rotation Z1 of the gantry, and wherein the imaging ring is mechanically coupled to the rotatable gantry through a mechanical structure.
    Type: Grant
    Filed: October 29, 2020
    Date of Patent: November 29, 2022
    Assignee: Ion Beam Applications
    Inventors: Alexandre Debatty, Frédéric Dessy, Yves Claereboudt
  • Publication number: 20220347494
    Abstract: A radiotherapy apparatus for the delivery of an energetic beam to a target tissue in a treatment zone, including: a rotatable gantry for rotating the end of a beam delivery system about a circle centered on an isocentre and normal to an axis of rotation Z1 of the gantry, the path between the end of the beam delivery system and the isocentre defining a central beam axis Z2 at every rotation angle of the gantry about the axis of rotation Z1; an imaging ring having a central bore and an imaging system for acquiring images of a patient in an imaging zone of the imaging system, wherein the imaging ring is located in the radiotherapy apparatus such that its imaging zone intersects the axis of rotation Z1 of the gantry, and wherein the imaging ring is mechanically coupled to the rotatable gantry through a mechanical structure.
    Type: Application
    Filed: October 29, 2020
    Publication date: November 3, 2022
    Applicant: ION BEAM APPLICATIONS
    Inventors: Alexandre DEBATTY, Frédéric DESSY, Yves CLAEREBOUDT
  • Publication number: 20220163464
    Abstract: The present invention concerns an apparatus for irradiating goods with X-rays, comprising a first source of X-rays configured for emitting X-rays along a first irradiation volume centered on a longitudinal axis (X), and a conveyor configured for driving goods such as to expose a first portion of the goods through the first irradiation volume, wherein, the conveyor is configured for driving the target products through the irradiation volume along a vertical axis (Z).
    Type: Application
    Filed: November 23, 2021
    Publication date: May 26, 2022
    Applicant: Ion Beam Applications
    Inventors: Peter BAKER, Frédéric Stichelbaut, Christophe Malice, Dominique Vincent, Candice Nagel, Frédéric Dessy
  • Publication number: 20210210245
    Abstract: The embodiments of the present disclosure provide a method for producing Ac-225 from Ra-226, comprising submitting Ra-226 to a photo-nuclear process, collecting an electrochemical precipitation of an Ac-225 on a cathode in a recipient, removing the cathode from the recipient after the electrochemical precipitation of the Ac-225, transferring the cathode to a hot cell environment, and extracting the Ac-225 from the cathode in the hot cell environment. The Ra-226 may comprise a liquid solution in the recipient, and submitting Ra-226 to the photo-nuclear process may comprise irradiating the Ra-226 to produce Ra-225. The Ra-225 may decay into Ac-225 upon irradiation of the Ra-226.
    Type: Application
    Filed: November 25, 2020
    Publication date: July 8, 2021
    Applicant: Ion Beam Applications
    Inventors: Jozef COMOR, Jean-Michel GEETS, Gerd-Jürgen BEYER
  • Publication number: 20170165502
    Abstract: The present disclosure relates to a particle therapy system for irradiating a target with a scanning beam technique. In one implementation, the system includes an irradiation planning device with a planning algorithm configured to associate a particle beam energy E(i) to each spot of the irradiation plan and organize the spots in a sequence of spots according to energy. The system may further include a control system configured for controlling in parallel, from spot to spot, a variation of an output energy of a beam generator, a variation of a magnetic field of one or more electromagnets of a beam transport system and a variation of a magnetic field of the scanning magnet.
    Type: Application
    Filed: December 12, 2016
    Publication date: June 15, 2017
    Applicant: Ion Beam Applications
    Inventors: Yves Claereboudt, Damien Prieels
  • Patent number: 9351391
    Abstract: The present invention relates to an RF system (1) able to generate a voltage for accelerating charged particles in a synchrocyclotron, the RF system (1) including a resonant cavity (2) comprising a conducting enclosure (5) within which are placed a conducting pillar (3) of which a first end is linked to an accelerating electrode (4) able to accelerate the charged particles, a rotary variable capacitor (10) coupled between a second end opposite from the first end of the pillar (3) and the conducting enclosure (5), the said capacitor (10) comprising fixed electrodes (11) and a rotor (13) comprising mobile electrodes (12), the fixed electrodes (11) and the mobile electrodes (12) forming a variable capacitance able to vary a resonant frequency of the resonant cavity (2) in a cyclic manner over time, an exterior layer of the rotor (13) having a conductivity of greater than 20,000,000 S/m at 300 K.
    Type: Grant
    Filed: November 15, 2012
    Date of Patent: May 24, 2016
    Assignee: Ion Beam Applications
    Inventor: Patrick Verbruggen
  • Patent number: 9237640
    Abstract: RF device (1) able to generate an RF acceleration voltage in a synchrocyclotron. The device comprises a resonant cavity (2) formed by a grounded conducting enclosure (5) and enveloping a conducting pillar (3) to a first end of which an accelerating electrode (4) is linked. A rotary variable capacitor (10) is mounted in the conducting enclosure at a second end of the pillar, opposite from the first end, comprising at least one fixed electrode (stator) (11) and a rotor (13) exhibiting a rotation shaft (14) supported and guided in rotation by galvanically isolating bearings (20), said rotor (13) comprising one moveable electrode (12) possibly facing the stator (11). When the shaft (14) rotates, the stator and the moveable electrode together form a variable capacitance whose value varies cyclically with time. The rotor (13) is galvanically isolated from the conducting enclosure (5) and from the pillar (3). The stator (11) is connected to the second end of the pillar (3) or to the conducting enclosure (5).
    Type: Grant
    Filed: November 13, 2012
    Date of Patent: January 12, 2016
    Assignee: Ion Beam Applications
    Inventors: Michel Abs, Jean-Claude Amelia
  • Publication number: 20140320006
    Abstract: RF device (1) able to generate an RF acceleration voltage in a synchrocyclotron. The device comprises a resonant cavity (2) formed by a grounded conducting enclosure (5) and enveloping a conducting pillar (3) to a first end of which an accelerating electrode (4) is linked. A rotary variable capacitor (10) is mounted in the conducting enclosure at a second end of the pillar, opposite from the first end, comprising at least one fixed electrode (stator) (11) and a rotor (13) exhibiting a rotation shaft (14) supported and guided in rotation by galvanically isolating bearings (20), said rotor (13) comprising one moveable electrode (12) possibly facing the stator (11). When the shaft (14) rotates, the stator and the moveable electrode together form a variable capacitance whose value varies cyclically with time. The rotor (13) is galvanically isolated from the conducting enclosure (5) and from the pillar (3). The stator (11) is connected to the second end of the pillar (3) or to the conducting enclosure (5).
    Type: Application
    Filed: November 13, 2012
    Publication date: October 30, 2014
    Applicant: Ion Beam Applications
    Inventors: Michel Abs, Jean-Claude Amelia
  • Publication number: 20140145090
    Abstract: The present invention relates to a particle therapy apparatus used for radiation therapy. More particularly, this invention relates to a compact isocentric gantry for delivering particle beams perpendicularly to a rotation axis of the gantry. The gantry comprises three dipole magnets. The angle of the last dipole magnet is smaller than 90° and a most preferred bending angle for this last dipole magnet is 60°.
    Type: Application
    Filed: March 23, 2012
    Publication date: May 29, 2014
    Applicant: Ion Beam Applications
    Inventor: Yves Jongen
  • Publication number: 20140005463
    Abstract: Methods and assembly for delivering a particle beam dose to a moving target are provided. The assembly comprises breath holding means for holding a patients breath during the delivery of the particle beam dose. With the assembly and method of invention, visualization means are provided to the patient to visualize the moving target such that the patient can actively contribute to the target positioning before actuating the breath holding means and starting the delivery of the particle beam.
    Type: Application
    Filed: July 18, 2012
    Publication date: January 2, 2014
    Applicant: Ion Beam Applications
    Inventor: Yves Jongen
  • Publication number: 20130187060
    Abstract: The present invention relates to a particle therapy apparatus used for radiation therapy. More particularly, this invention relates to a compact isocentric gantry for delivering particle beams perpendicularly to a rotation axis of the gantry . The gantry comprises three dipole magnets. The angle of the last dipole magnet is smaller than 90° and a most preferred bending angle for this last dipole magnet is 60°.
    Type: Application
    Filed: January 9, 2013
    Publication date: July 25, 2013
    Applicant: ION BEAM APPLICATIONS
    Inventor: Yves Jongen
  • Publication number: 20130106315
    Abstract: The present invention relates to a dual-frequency resonant cavity (6) for cyclotron which includes a dee (10), a pillar (20), and a conducting enclosure (40) surrounding the pillar and the dee, an end of the pillar being connected to the base of the conducting enclosure and an opposite end of the pillar (20) supporting the dee (10). The conducting enclosure and the pillar form a transmission line comprising at least three portions (20a, 20b, 20c), each portion having a characteristic impedance (Zc1, Zc2, Zc3). The characteristic impedance Zc2 of the intermediate portion (20b) is substantially lower than the characteristic impedances Zc1 et Zc3 of the two other portions (20a, 20b), which makes it possible to have the cavity resonate according to two modes in order to produce two distinct frequencies, without having to make use of moving components such as for example sliding short-circuits or mobile plates.
    Type: Application
    Filed: June 28, 2011
    Publication date: May 2, 2013
    Applicant: ION BEAM APPLICATIONS
    Inventor: Michel Abs