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US20150196779A1 - Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy - Google Patents

Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy
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Publication number
US20150196779A1
US20150196779A1US14/413,033US201314413033AUS2015196779A1US 20150196779 A1US20150196779 A1US 20150196779A1US 201314413033 AUS201314413033 AUS 201314413033AUS 2015196779 A1US2015196779 A1US 2015196779A1
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Prior art keywords
fiducial markers
fluorescent
charged
particle beam
energy
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US14/413,033
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Brian P. Tonner
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H Lee Moffitt Cancer Center and Research Institute Inc
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H Lee Moffitt Cancer Center and Research Institute Inc
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Assigned to H. LEE MOFFITT CANCER CENTER AND RESEARCH INSTITUTE, INC.reassignmentH. LEE MOFFITT CANCER CENTER AND RESEARCH INSTITUTE, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: TONNER, BRIAN P
Assigned to H. LEE MOFFITT CANCER CANCER CENTER AND RESEARCH INSTITUTE, INC.reassignmentH. LEE MOFFITT CANCER CANCER CENTER AND RESEARCH INSTITUTE, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: TONNER, BRIAN P.
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Abstract

The accuracy charged-particle beam trajectories used for radiation therapy in patients is improved by providing feedback on the beam location within a patient's body or a quality assurance phantom. Particle beams impinge on a patient or phantom in an arrangement designed to deliver radiation dose to a tumor, while avoiding as much normal tissue as can be achieved. By placing fiducial markers in the tumor or phantom that contain specific atomic constituents, a detection signal consisting of atomic fluorescence is produced by the particle beam. An algorithm can combine the detected fluorescence signal with the known location of the fiducial markers to determine the location of the particle beam in the patient or phantom.

Description

Claims (17)

1. A method for improving the trajectory of charged-particle beams used in cancer therapy in a subject comprising:
(a) placing in a subject one or more fiducial markers that produce fluorescent x-rays of one or more distinct energies when struck by a charged-particle beam;
(b) determining the locations of the one or more fiducial markers;
(c) changing as a function of time the energy of a charged-particle beam which impinges on the subject;
(d) recording as a function of time fluorescent x-ray emissions from the fiducial markers when the subject is struck by the charged-particles;
(e) applying an algorithm to the recorded information to determine the location of the particle beam in the target relative to the known locations of the fiducial markers;
(f) processing the results of the algorithm in a form suitable for display; and
(g) displaying location of the particle beam position relative to the fiducial markers.
12. A system for improving the accuracy of a charged-particle beam used in cancer therapy comprising:
(a) a source of charged-particles of suitable energy for therapeutic effect which can be varied in energy as a function of time;
(b) one or more fiducial markers that produce fluorescent x-rays of one or more distinct energies when struck by a charged-particle beam;
(c) one or more fluorescent energy detectors suitable for measuring fluorescent x-rays emitted by the fiducial markers;
(d) a recorder suitable to record the energy of the charged-particle beam and the fluorescent x-ray emissions as a function of time;
(e) a processor and memory to calculate penetration of the charged-particle beam in the target based on the recorded information; and
(f) a display by which the information on penetration is presented in suitable form.
US14/413,0332012-07-272013-07-29Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapyAbandonedUS20150196779A1 (en)

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US14/413,033US20150196779A1 (en)2012-07-272013-07-29Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy

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US201261676673P2012-07-272012-07-27
PCT/US2013/052563WO2014018976A1 (en)2012-07-272013-07-29Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy
US14/413,033US20150196779A1 (en)2012-07-272013-07-29Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy

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US14/413,033AbandonedUS20150196779A1 (en)2012-07-272013-07-29Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy
US17/148,531Active2034-07-27US11878186B2 (en)2012-07-272021-01-13Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy
US18/531,960ActiveUS12128254B2 (en)2012-07-272023-12-07Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy

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US17/148,531Active2034-07-27US11878186B2 (en)2012-07-272021-01-13Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy
US18/531,960ActiveUS12128254B2 (en)2012-07-272023-12-07Multi-spectral fluorescence for in-vivo determination of proton energy and range in proton therapy

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US20170216628A1 (en)*2016-02-032017-08-03University Hospital OstravaMethods and devices for stereotactic radiosurgery
US9962560B2 (en)2013-12-202018-05-08Mevion Medical Systems, Inc.Collimator and energy degrader
US20180126189A1 (en)*2016-05-242018-05-10The Trustees Of Princeton UniversityPrecise Proton Positioning Method for Proton Therapy Treatment, and Proton Therapy Treatment Method
EP3326694A1 (en)*2016-11-292018-05-30RaySearch Laboratories ABSystem and method for ion-based radiotherapy planning
US20180209925A1 (en)*2017-01-232018-07-26Institut National De La Recherche ScientifiqueMethod and system for analysis of objects
US10258810B2 (en)2013-09-272019-04-16Mevion Medical Systems, Inc.Particle beam scanning
US10646728B2 (en)2015-11-102020-05-12Mevion Medical Systems, Inc.Adaptive aperture
US10653892B2 (en)2017-06-302020-05-19Mevion Medical Systems, Inc.Configurable collimator controlled using linear motors
US10675487B2 (en)2013-12-202020-06-09Mevion Medical Systems, Inc.Energy degrader enabling high-speed energy switching
US10925147B2 (en)2016-07-082021-02-16Mevion Medical Systems, Inc.Treatment planning
US11103730B2 (en)2017-02-232021-08-31Mevion Medical Systems, Inc.Automated treatment in particle therapy
CN113950354A (en)*2019-04-082022-01-18会聚R.N.R有限公司System and method for optimizing radiation therapy
US11291861B2 (en)2019-03-082022-04-05Mevion Medical Systems, Inc.Delivery of radiation by column and generating a treatment plan therefor
US11480692B2 (en)*2017-02-032022-10-25The University Of LiverpoolPhantom
WO2022251300A1 (en)*2021-05-252022-12-01The Trustees Of Dartmouth CollegeSystems and methods for flash therapy
US12427341B1 (en)*2018-07-132025-09-30The United States Of America, As Represented By The Secretary Of The NavyLuminescence-based method for planning precisely delivered ion beam therapy

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KR102210318B1 (en)2014-09-262021-02-01애플 인크.Transmitter for inductive power transfer system

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US20080067401A1 (en)*2005-02-042008-03-20Mitsubishi Denki Kabushiki KaishaParticle Beam Irradiation Method and Particle Beam Irradiation Apparatus Used for the Same
US20090238325A1 (en)*2008-03-182009-09-24Siemens Medical Solutions Usa, Inc.X-ray Imaging System for Performing Automated Imaging of Patient Anatomy

Cited By (30)

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Publication numberPriority datePublication dateAssigneeTitle
US10456591B2 (en)2013-09-272019-10-29Mevion Medical Systems, Inc.Particle beam scanning
US10258810B2 (en)2013-09-272019-04-16Mevion Medical Systems, Inc.Particle beam scanning
US9962560B2 (en)2013-12-202018-05-08Mevion Medical Systems, Inc.Collimator and energy degrader
US10675487B2 (en)2013-12-202020-06-09Mevion Medical Systems, Inc.Energy degrader enabling high-speed energy switching
US10434331B2 (en)2014-02-202019-10-08Mevion Medical Systems, Inc.Scanning system
US9661736B2 (en)2014-02-202017-05-23Mevion Medical Systems, Inc.Scanning system for a particle therapy system
US11717700B2 (en)2014-02-202023-08-08Mevion Medical Systems, Inc.Scanning system
US10646728B2 (en)2015-11-102020-05-12Mevion Medical Systems, Inc.Adaptive aperture
US11786754B2 (en)2015-11-102023-10-17Mevion Medical Systems, Inc.Adaptive aperture
US10786689B2 (en)2015-11-102020-09-29Mevion Medical Systems, Inc.Adaptive aperture
US11213697B2 (en)2015-11-102022-01-04Mevion Medical Systems, Inc.Adaptive aperture
US20170216628A1 (en)*2016-02-032017-08-03University Hospital OstravaMethods and devices for stereotactic radiosurgery
US20180126189A1 (en)*2016-05-242018-05-10The Trustees Of Princeton UniversityPrecise Proton Positioning Method for Proton Therapy Treatment, and Proton Therapy Treatment Method
US10925147B2 (en)2016-07-082021-02-16Mevion Medical Systems, Inc.Treatment planning
US12150235B2 (en)2016-07-082024-11-19Mevion Medical Systems, Inc.Treatment planning
EP3326694A1 (en)*2016-11-292018-05-30RaySearch Laboratories ABSystem and method for ion-based radiotherapy planning
US20180209925A1 (en)*2017-01-232018-07-26Institut National De La Recherche ScientifiqueMethod and system for analysis of objects
US10705036B2 (en)*2017-01-232020-07-07Universitá Della CalabriaMethod and system for analysis of objects
US11480692B2 (en)*2017-02-032022-10-25The University Of LiverpoolPhantom
US11103730B2 (en)2017-02-232021-08-31Mevion Medical Systems, Inc.Automated treatment in particle therapy
US10653892B2 (en)2017-06-302020-05-19Mevion Medical Systems, Inc.Configurable collimator controlled using linear motors
US12427341B1 (en)*2018-07-132025-09-30The United States Of America, As Represented By The Secretary Of The NavyLuminescence-based method for planning precisely delivered ion beam therapy
US11291861B2 (en)2019-03-082022-04-05Mevion Medical Systems, Inc.Delivery of radiation by column and generating a treatment plan therefor
US11717703B2 (en)2019-03-082023-08-08Mevion Medical Systems, Inc.Delivery of radiation by column and generating a treatment plan therefor
US11311746B2 (en)2019-03-082022-04-26Mevion Medical Systems, Inc.Collimator and energy degrader for a particle therapy system
US12161885B2 (en)2019-03-082024-12-10Mevion Medical Systems, Inc.Delivery of radiation by column and generating a treatment plan therefor
US12168147B2 (en)2019-03-082024-12-17Mevion Medical Systems, Inc.Collimator and energy degrader for a particle therapy system
CN113950354A (en)*2019-04-082022-01-18会聚R.N.R有限公司System and method for optimizing radiation therapy
WO2022251300A1 (en)*2021-05-252022-12-01The Trustees Of Dartmouth CollegeSystems and methods for flash therapy
US12036421B2 (en)2021-05-252024-07-16The Trustees Of Dartmouth CollegeSystems and methods for FLASH therapy

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US12128254B2 (en)2024-10-29
US11878186B2 (en)2024-01-23
WO2014018976A1 (en)2014-01-30
US20210236851A1 (en)2021-08-05
US20240100362A1 (en)2024-03-28

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