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2010-12-08T03:39:33+01:00
2010-10-30T14:22:27+01:00
2010-12-08T03:39:33+01:00
Jouve S.A., EPO - Publication - KB, TaggedPDF v1.27
EP-0155064-A3-19890322
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EP-0155064-A3-19890322
An apparatus for slit radiography comprising an X-ray source by means of which a body being irradiated can be scanned through a slit diaphragm by a substantially planar, fan-shaped X-ray beam, the scanning X-ray beam passed through the body impinging upon an X-ray detector. The apparatus comprises controllable attenuation elements coacting with the slit diaphragm, each element being adapted to influence a sector of the scanning X-ray beam under the control of signals generated by a radiation detector device. The radiation detector device is disposed between the body being irradiated and the X-ray detector. The radiation detector device comprises at least one radiation detector extending at any moment into the scanning X-ray beam passed through the body and moving in synchronism with the scanning movement of the X-ray beam. The radiation detector device is divided into sections corresponding with the sectors of the scanning X-ray beam influenceable by the attenuation elements, while, in operation, each section of the radiation detector device generates a signal usable for controlling the attenuation elements.
An apparatus for slit radiography comprising an X-ray source by means of which a body being irradiated can be scanned through a slit diaphragm by a substantially planar, fan-shaped X-ray beam, the scanning X-ray beam passed through the body impinging upon an X-ray detector. The apparatus comprises controllable attenuation elements coacting with the slit diaphragm, each element being adapted to influence a sector of the scanning X-ray beam under the control of signals generated by a radiation detector device. The radiation detector device is disposed between the body being irradiated and the X-ray detector. The radiation detector device comprises at least one radiation detector extending at any moment into the scanning X-ray beam passed through the body and moving in synchronism with the scanning movement of the X-ray beam. The radiation detector device is divided into sections corresponding with the sectors of the scanning X-ray beam influenceable by the attenuation elements, while, in operation, each section of the radiation detector device generates a signal usable for controlling the attenuation elements.
en
European Patent Office
EP0155064
EP 0155064
G21K 01/04
G21K 01/10
G01T 01/17
H05G 01/60
A61B 06/06
An apparatus for slit radiography
An apparatus for slit radiography - European Patent Office - EP 0155064 A3
An apparatus for slit radiography - European Patent Office - EP 0155064 A3
Adobe PDF Library 8.0
"EP0155064"; "EP 0155064"; "G21K 01/04"; "G21K 01/10"; "G01T 01/17"; "H05G 01/60"; "A61B 06/06"; "An apparatus for slit radiography"
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1989-03-22
85200378
1985-03-14
NL
8400845
1984-03-16
G21K 01/04
G21K 01/10
G01T 01/17
H05G 01/60
A61B 06/06
B.V. Optische Industrie "De Oude Delft"
Duinker, Simon
Vlasbloem, Hugo
Smulders, Theodorus A.H.J., Ir. et al
An apparatus for slit radiography
Röntgenaufnahmegerät mit Schlitzblenden
An apparatus for slit radiography
Appareil de radiographie par diaphragme à fente
An apparatus for slit radiography comprising an X-ray source by means of which a body being irradiated can be scanned through a slit diaphragm by a substantially planar, fan-shaped X-ray beam, the scanning X-ray beam passed through the body impinging upon an X-ray detector. The apparatus comprises controllable attenuation elements coacting with the slit diaphragm, each element being adapted to influence a sector of the scanning X-ray beam under the control of signals generated by a radiation detector device. The radiation detector device is disposed between the body being irradiated and the X-ray detector. The radiation detector device comprises at least one radiation detector extending at any moment into the scanning X-ray beam passed through the body and moving in synchronism with the scanning movement of the X-ray beam. The radiation detector device is divided into sections corresponding with the sectors of the scanning X-ray beam influenceable by the attenuation elements, while, in operation, each section of the radiation detector device generates a signal usable for controlling the attenuation elements.
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