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US Patent 11348755 Radiation anode target systems and methods

Patent 11348755 was granted and assigned to Varian Medical Systems on May, 2022 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Varian Medical Systems
Varian Medical Systems
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Current Assignee
Varian Medical Systems
Varian Medical Systems
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
113487550
Patent Inventor Names
James Clayton0
Josh Star-Lack0
Date of Patent
May 31, 2022
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Patent Application Number
170612330
Date Filed
October 1, 2020
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Patent Citations
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US Patent 10080912 Mucosal dose control radiotherapy apparatus using magnetic fields
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US Patent 10007961 Treatment planning system for radiopharmaceuticals
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US Patent 10022564 Systems, methods, and devices for radiation beam alignment and radiation beam measurements using electronic portal imaging devices
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US Patent 10071264 Irradiation device using ionizing radiation, particularly for radiotherapy and/or radiobiology
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US Patent 10549117 Geometric aspects of radiation therapy planning and treatment
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US Patent 10603514 Device and method for high dose per pulse radiotherapy with real time imaging
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US Patent 10609806 Energy modulation of a cyclotron beam
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US Patent 10636609 Bremsstrahlung target for radiation therapy system
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Patent Primary Examiner
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Dani Fox
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CPC Code
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A61N 5/1077
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H01J 35/08
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A61N 5/1065
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A61N 5/10
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A61N 5/00
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Presented systems and methods facilitate efficient and effective generation and delivery of radiation. A radiation generation system can comprise: a particle beam gun, a high energy dissipation anode target (HEDAT); and a liquid anode control component. In some embodiments, the particle beam gun generates an electron beam. The HEDAT includes a solid anode portion (HEDAT-SAP) and a liquid anode portion (HEDAT-LAP) that are configured to receive the electron beam, absorb energy from the electron beam, generate a radiation beam, and dissipate heat. The radiation beam can include photons that can have radiation characteristics (e.g., X-ray wavelength, ionizing capability, etc.). The liquid anode control component can control a liquid anode flow to the HEDAT. The HEDAT-SAP and HEDAT-LAP can cooperatively operate in radiation generation and their configuration can be selected based upon contribution of respective HEDAT-SAP and the HEDAT-LAP characteristics to radiation generation.

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