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Automatically operated accelerator using obtained operating patterns 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H05H-013/04
출원번호 US-0436270 (1995-05-16)
국제출원번호 PCT/JP93/01343 (1993-09-20)
§371/§102 date 1995May1 (1995May1)
국제공개번호 WO-9508909 (1995-03-30)
발명자 / 주소
  • Hirota Junichi (Hitachi JPX) Hiramoto Kazuo (Hitachioota JPX)
출원인 / 주소
  • Hitachi, Ltd. (Tokyo JPX 03)
인용정보 피인용 횟수 : 113  인용 특허 : 1

초록

A beam transfer system has a bending magnet, a quadrupole magnet for converging or diverging a beam, and a beam current monitor. The controller of an accelerator body for the beam transfer system has a beam current measuring apparatus, a quantity-of-control measuring apparatus for measuring a quanti

대표청구항

An operating method of an accelerator, comprising the steps of: obtaining an operating pattern of a component of the accelerator by using data for the injection energy, storage energy, and accelerating time of a charged particle beam of the accelerator; and controlling the component in accordance wi

이 특허에 인용된 특허 (1)

  1. Tsuzuki Naohisa (Chofu JPX), Control device for particle accelerator.

이 특허를 인용한 특허 (113)

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  3. 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.
  4. Samy Hanna ; Sherman Kenney ; Rod Loewen, Automated system for conditioning a linear accelerator.
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  6. Balakin, Vladimir, Carbon ion beam injector apparatus and method of use thereof.
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  8. Balakin, Vladimir, Charged particle beam acceleration and extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
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  10. Balakin, Vladimir, Charged particle beam acceleration and extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
  11. Balakin, Vladimir, Charged particle beam acceleration and extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
  12. Balakin, Vladimir Yegorovich, Charged particle beam acceleration method and apparatus as part of a charged particle cancer therapy system.
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  14. Balakin, Vladimir Yegorovich, Charged particle beam extraction method and apparatus used in conjunction with a charged particle cancer therapy system.
  15. Balakin, Vladimir Yegorovich, Charged particle beam injection method and apparatus used in conjunction with a charged particle cancer therapy system.
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  17. Balakin, Vladimir, Charged particle cancer therapy and patient breath monitoring method and apparatus.
  18. Balakin, Vladimir, Charged particle cancer therapy and patient positioning method and apparatus.
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  21. 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.
  22. Balakin, Vladimir, Charged particle cancer therapy dose distribution method and apparatus.
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  28. Balakin, Vladimir, Charged particle cancer therapy patient positioning method and apparatus.
  29. Balakin, Vladimir Yegorovich, Charged particle cancer therapy patient positioning method and apparatus.
  30. Balakin, Vladimir, Charged particle cancer therapy system X-ray apparatus and method of use thereof.
  31. Balakin, Vladimir, Charged particle cancer therapy system magnet control method and apparatus.
  32. Balakin, Vladimir, Charged particle cancer therapy x-ray method and apparatus.
  33. Balakin, Vladimir, Charged particle extraction apparatus and method of use thereof.
  34. Lee, W. Davis; Spotts, Stephen L.; Michaud, Susan L., Charged particle state determination apparatus and method of use thereof.
  35. Ueno,Daisuke; Chiba,Daishun; Fujishima,Yasutake, Charged particle therapy apparatus and charged particle therapy system.
  36. Balakin, Vladimir, Charged particle therapy patient constraint apparatus and method of use thereof.
  37. Michaud, Susan L.; Spotts, Stephen L., Charged particle translation slide control apparatus and method of use thereof.
  38. Michaud, Susan L.; Spotts, Stephen L.; Raymond, Daniel J., Charged particle translation slide control apparatus and method of use thereof.
  39. Balakin, Vladimir, Charged particle treatment, rapid patient positioning apparatus and method of use thereof.
  40. Michaud, Susan L.; Spotts, Stephen L.; Bennett, James P.; Lee, W. Davis, Charged particle—patient motion control system apparatus and method of use thereof.
  41. Aoki, Ryusuke; Obata, Jun, Connection plates for power feeding.
  42. Amato, Mark R.; Lee, W. Davis, Continuous ion beam kinetic energy dissipater apparatus and method of use thereof.
  43. Jackson, Gerald Peter, Deceleration of hadron beams in synchrotrons designed for acceleration.
  44. Bertozzi, William; Ledoux, Robert J., Diagnostic methods and apparatus for an accelerator using induction to generate an electric field with a localized curl.
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  55. Balakin, Vladimir, Intensity modulated three-dimensional radiation scanning method and apparatus.
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  64. Bertozzi, William; Korbly, Stephen E.; Ledoux, Robert J., Methods and systems for accelerating particles using induction to generate an electric field with a localized curl.
  65. Bertozzi, William; Ledoux, Robert J., Methods for diagnosing and automatically controlling the operation of a particle accelerator.
  66. Bertozzi, William; Ledoux, Robert J., Methods for diagnosing and automatically controlling the operation of a particle accelerator.
  67. Balakin, Vladimir, Multi-axis charged particle cancer therapy method and apparatus.
  68. Balakin, Vladimir Yegorovich, Multi-axis charged particle cancer therapy method and apparatus.
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  104. Hiramoto Kazuo,JPX ; Umezawa Masumi,JPX ; Matsuda Koji,JPX, Synchrotron type accelerator and medical treatment system employing the same.
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  106. Balakin, Vladimir, Tandem accelerator method and apparatus used in conjunction with a charged particle cancer therapy system.
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  112. Balakin, Vladimir, X-ray tomography method and apparatus used in conjunction with a charged particle cancer therapy system.
  113. Balakin, Vladimir, X-ray tomography method and apparatus used in conjunction with a charged particle cancer therapy system.
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