DocumentCode :
227232
Title :
Latest high performance X-ray tubes for medical imaging
Author :
Behling, Rolf
Author_Institution :
Philips Tube & Generator Technol. Manage., Philips Healthcare, Hamburg, Germany
fYear :
2014
fDate :
June 30 2014-July 4 2014
Firstpage :
1
Lastpage :
1
Abstract :
Why still vacuum technology to generate Bremsstrahlung, nearly 120 years after Conrad Roentgen´s discovery? How do X-ray source and detection contribute to modern medical imaging? How do latest medical X-ray tubes work and look like? What´s next? Will we see replacements of bremsstrahlung from practical sources for medical imaging in the clinical environment? After touching historic achievements to demonstrate the high level which the technology has today, we will shortly dive into physics of X-ray generation, study key characteristics, material boundary conditions, manufacturing technology. A particular focus area will be the generation of free electrons under the adverse conditions inside an X-ray tube, grid switching and focusing of the beam. The high level of residual gas as well as ion and discharge processes severely limit the range of suitable technologies. Other topics will be overall design concepts of glass and metal frame, single ended and dual polar tubes with reflection targets. We will touch the principle of rotating anode tubes, their bearings, anode discs, motors, cooling, heat balance, electron emitters and beam focusing, focal spot characteristics, off-focal radiation, and discuss the improvements of image quality by focal spot deflection.
Keywords :
X-ray detection; X-ray tubes; biomedical equipment; bremsstrahlung; diagnostic radiography; X-ray detection; X-ray generation; X-ray source; anode discs; beam focusing; bearings; bremsstrahlung; clinical environment; cooling; discharge processes; dual polar tubes; electron emitters; focal spot characteristics; focal spot deflection; free electron generation; glass frame; grid switching; heat balance; image quality; latest high performance X-ray tubes; manufacturing technology; material boundary conditions; medical X-ray tubes; medical imaging; metal frame; motors; off-focal radiation; practical sources; reflection targets; residual gas; rotating anode tubes; single ended polar tubes; vacuum technology; Anodes; Biomedical imaging; Electron tubes; Focusing; Physics; Vacuum technology; X-ray imaging;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electron Sources Conference (IVESC), 2014 Tenth International
Conference_Location :
St. Petersburg
Print_ISBN :
978-1-4799-5770-5
Type :
conf
DOI :
10.1109/IVESC.2014.6891953
Filename :
6891953
Link To Document :
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