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Elongated lifetime X-ray method and apparatus used in conjunction with a charged particle cancer therapy system 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01J-035/06
출원번호 US-0492515 (2009-06-26)
등록번호 US7940894 (2011-04-26)
발명자 / 주소
  • Balakin, Vladimir
대리인 / 주소
    Kevin, Hazen
인용정보 피인용 횟수 : 71  인용 특허 : 0

초록

The system uses an X-ray imaging system having an elongated lifetime. Further, the system uses an X-ray beam that lies in substantially the same path as a charged particle beam path of a particle beam cancer therapy system. The system creates an electron beam that strikes an X-ray generation source

대표청구항

The invention claimed is: 1. An X-ray apparatus as part of a particle beam cancer therapy system, said particle beam cancer therapy system irradiating a tumor of a patient with a charged particle beam during use, said apparatus comprising:an electron generating cathode;a control electrode;a pluralit

이 특허를 인용한 특허 (71)

  1. Ruebel, Nick; Michaud, Susan L.; Amato, Mark R.; Reno, Jillian; Lee, W. Davis; Bennett, James P., Auto-updated and implemented radiation treatment plan apparatus and method of use thereof.
  2. Balakin, Vladimir; Balakin, Pavel, Cancer surface searing apparatus and method of use thereof.
  3. Balakin, Vladimir, Carbon ion beam injector apparatus and method of use thereof.
  4. Balakin, Vladimir; Valyaev, Yury, Charged particle accelerator magnet apparatus and method of use thereof.
  5. Balakin, Vladimir, Charged particle beam acceleration and extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
  6. Balakin, Vladimir, Charged particle beam acceleration and extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
  7. Balakin, Vladimir, Charged particle beam extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
  8. Balakin, Vladimir, Charged particle cancer therapy and patient breath monitoring method and apparatus.
  9. Balakin, Vladimir, Charged particle cancer therapy and patient positioning method and apparatus.
  10. Balakin, Vladimir, Charged particle cancer therapy beam path control method and apparatus.
  11. Lee, W. Davis; Michaud, Susan L.; Raymond, Daniel J.; Amato, Mark R., Charged particle cancer therapy beam state determination apparatus and method of use thereof.
  12. Balakin, Vladimir, Charged particle cancer therapy dose distribution method and apparatus.
  13. Balakin, Vladimir, Charged particle cancer therapy dose distribution method and apparatus.
  14. Balakin, Vladimir, Charged particle cancer therapy imaging method and apparatus.
  15. Balakin, Vladimir, Charged particle cancer therapy patient constraint apparatus and method of use thereof.
  16. Balakin, Vladimir, Charged particle cancer therapy patient positioning method and apparatus.
  17. Balakin, Vladimir, Charged particle cancer therapy patient positioning method and apparatus.
  18. Balakin, Vladimir, Charged particle cancer therapy system X-ray apparatus and method of use thereof.
  19. Balakin, Vladimir, Charged particle cancer therapy system magnet control method and apparatus.
  20. Balakin, Vladimir, Charged particle cancer therapy x-ray method and apparatus.
  21. Lee, W. Davis; Spotts, Stephen L.; Michaud, Susan L., Charged particle state determination apparatus and method of use thereof.
  22. Balakin, Vladimir, Charged particle therapy patient constraint apparatus and method of use thereof.
  23. Michaud, Susan L.; Spotts, Stephen L., Charged particle translation slide control apparatus and method of use thereof.
  24. Michaud, Susan L.; Spotts, Stephen L.; Raymond, Daniel J., Charged particle translation slide control apparatus and method of use thereof.
  25. Balakin, Vladimir, Charged particle treatment, rapid patient positioning apparatus and method of use thereof.
  26. Michaud, Susan L.; Spotts, Stephen L.; Bennett, James P.; Lee, W. Davis, Charged particle—patient motion control system apparatus and method of use thereof.
  27. Zwart, Gerrit Townsend; Jones, Mark R.; Cooley, James, Collimator and energy degrader.
  28. Amato, Mark R.; Lee, W. Davis, Continuous ion beam kinetic energy dissipater apparatus and method of use thereof.
  29. Michaud, Susan L.; Raymond, Daniel J.; Lee, W. Davis, Dual rotation charged particle imaging / treatment apparatus and method of use thereof.
  30. Lee, W. Davis; Amato, Mark R.; Penfold, Scott, Dynamic energy control of a charged particle imaging/treatment apparatus and method of use thereof.
  31. Balakin, Vladimir, Elongated lifetime X-ray method and apparatus used in conjunction with a charged particle cancer therapy system.
  32. Balakin, Vladimir, Fast magnet method and apparatus used in conjunction with a charged particle cancer therapy system.
  33. Lee, W. Davis; Amato, Mark R.; Ruebel, Nick; Reno, Jillian; Michaud, Susan L., Fiducial marker/cancer imaging and treatment apparatus and method of use thereof.
  34. Michaud, Susan L.; Raymond, Daniel J.; Lee, W. Davis, Hybrid charged particle / X-ray-imaging / treatment apparatus and method of use thereof.
  35. Bennett, James P.; Spotts, Stephen L.; Lee, W. Davis; Michaud, Susan L., Integrated cancer therapy—imaging apparatus and method of use thereof.
  36. Balakin, Vladimir, Integrated tomography—cancer treatment apparatus and method of use thereof.
  37. Michaud, Susan L.; Raymond, Daniel J.; Lee, W. Davis, Integrated translation/rotation charged particle imaging/treatment apparatus and method of use thereof.
  38. Balakin, Vladimir, Intensity control of a charged particle beam extracted from a synchrotron.
  39. Balakin, Vladimir, Intensity modulated three-dimensional radiation scanning method and apparatus.
  40. Lee, W. Davis; Amato, Mark R.; Bennett, James P., Ion beam extraction apparatus and method of use thereof.
  41. Bashkirov, Vladimir; Schulte, Reinhard W., Ion induced impact ionization detector and uses thereof.
  42. Balakin, Vladimir, Ion source method and apparatus used in conjunction with a charged particle cancer therapy system.
  43. Balakin, Vladimir, Magnetic field control method and apparatus used in conjunction with a charged particle cancer therapy system.
  44. Balakin, Vladimir, Magnetic field control method and apparatus used in conjunction with a charged particle cancer therapy system.
  45. Balakin, Vladimir, Method and apparatus coordinating synchrotron acceleration periods with patient respiration periods.
  46. Balakin, Vladimir, Method and apparatus for intensity control of a charged particle beam extracted from a synchrotron.
  47. Balakin, Vladimir, Multi-axis charged particle cancer therapy method and apparatus.
  48. Balakin, Vladimir, Multi-axis/multi-field charged particle cancer therapy method and apparatus.
  49. Balakin, Vladimir, Multi-axis/multi-field charged particle cancer therapy method and apparatus.
  50. Balakin, Vladimir, Multi-field cancer therapy apparatus and method of use thereof.
  51. Balakin, Vladimir, Multi-field charged particle cancer therapy method and apparatus.
  52. Balakin, Vladimir, Multi-field charged particle cancer therapy method and apparatus coordinated with patient respiration.
  53. Lee, W. Davis; Reno, Jillian; Bennett, James P., Multiple beamline position isocenterless positively charged particle cancer therapy apparatus and method of use thereof.
  54. Balakin, Vladimir, Patient immobilization and repositioning method and apparatus used in conjunction with charged particle cancer therapy.
  55. Bouchet, Lionel G.; Rakes, Richard Bruce, Patient positioning system.
  56. Michaud, Susan L.; Raymond, Daniel J.; Spotts, Stephen L., Patient specific beam control assembly of a cancer therapy apparatus and method of use thereof.
  57. Balakin, Vladimir, Proton tomography apparatus and method of operation therefor.
  58. Balakin, Vladimir, RF accelerator method and apparatus used in conjunction with a charged particle cancer therapy system.
  59. Spotts, Stephen L.; Lee, W. Davis; Bennett, James P., Redundant charged particle state determination apparatus and method of use thereof.
  60. Balakin, Vladimir, Rotatable targeting magnet apparatus and method of use thereof in conjunction with a charged particle cancer therapy system.
  61. Lee, W. Davis; Amato, Mark R.; Spotts, Stephen L.; Bennett, James P., Scintillation array apparatus and method of use thereof.
  62. Balakin, Vladimir, Semi-vertical positioning method and apparatus used in conjunction with a charged particle cancer therapy system.
  63. Balakin, Vladimir, Synchronized X-ray / breathing method and apparatus used in conjunction with a charged particle cancer therapy system.
  64. Balakin, Vladimir, Synchrotron energy control apparatus and method of use thereof.
  65. Balakin, Vladimir, Synchrotron power supply apparatus and method of use thereof.
  66. Pearlstein, Robert D.; Kittle, David Scott; Holshouser, Barbara Ann, Systems and methods for characterizing spatial distortion in 3D imaging systems.
  67. Balakin, Vladimir, Tandem charged particle accelerator including carbon ion beam injector and carbon stripping foil.
  68. Balakin, Vladimir, Treatment delivery control system and method of operation thereof.
  69. Spotts, Stephen L., Treatment delivery control system and method of operation thereof.
  70. Penfold, Scott; Lee, W. Davis; Amato, Mark R., X-ray detector for proton transit detection apparatus and method of use thereof.
  71. Balakin, Vladimir, X-ray tomography method and apparatus used in conjunction with a charged particle cancer therapy system.
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