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Imaging properties of the Medipix2 system exploiting single and dual energy thresholds

Low noise, high resolution and high dose efficiency are the common requirements for most X-ray imaging applications. Especially in medical applications the dose efficiency is a necessity for detector systems. We present the imaging performance of the Medipix2 readout chip bump bonded to a 300 mu m t...

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Autores principales: Tlustos, Lukas, Ballabriga-Sune, Rafael, Campbell, Michael, Heijne, Erik H M, Kincade, Karla Lorraine, Llopart-Cudie, Xavier, Stejskal, Pavel
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TNS.2006.872627
http://cds.cern.ch/record/913827
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author Tlustos, Lukas
Ballabriga-Sune, Rafael
Campbell, Michael
Heijne, Erik H M
Kincade, Karla Lorraine
Llopart-Cudie, Xavier
Stejskal, Pavel
author_facet Tlustos, Lukas
Ballabriga-Sune, Rafael
Campbell, Michael
Heijne, Erik H M
Kincade, Karla Lorraine
Llopart-Cudie, Xavier
Stejskal, Pavel
author_sort Tlustos, Lukas
collection CERN
description Low noise, high resolution and high dose efficiency are the common requirements for most X-ray imaging applications. Especially in medical applications the dose efficiency is a necessity for detector systems. We present the imaging performance of the Medipix2 readout chip bump bonded to a 300 mu m thick Si detector as a function of the detection threshold, a free parameter not available in conventional integrating imaging systems. Spatial resolution has been measured using the modulation transfer function (MTF) and it varies between 8.2 Ip/mm and 11.0 Ip/mm at 70%. An associated measurement of noise power spectrum (NPS) permits us to derive the detective quantum efficiency (DQE) which can be as a high as 25.5 % for a broadband incoming spectrum. The influence of charge diffusion in the sensor together with threshold variation in the readout chip is discussed. Although the Medipix2 system is used in photon counting mode with a single threshold in energy, the system is also capable of counting within a given energy window of down to ~1.4 keV. First measurements and images using this feature reveal capabilities that allow to identify fluorescence and other sources of disturbance.
id cern-913827
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
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spelling cern-9138272019-09-30T06:29:59Zdoi:10.1109/TNS.2006.872627http://cds.cern.ch/record/913827engTlustos, LukasBallabriga-Sune, RafaelCampbell, MichaelHeijne, Erik H MKincade, Karla LorraineLlopart-Cudie, XavierStejskal, PavelImaging properties of the Medipix2 system exploiting single and dual energy thresholdsDetectors and Experimental TechniquesLow noise, high resolution and high dose efficiency are the common requirements for most X-ray imaging applications. Especially in medical applications the dose efficiency is a necessity for detector systems. We present the imaging performance of the Medipix2 readout chip bump bonded to a 300 mu m thick Si detector as a function of the detection threshold, a free parameter not available in conventional integrating imaging systems. Spatial resolution has been measured using the modulation transfer function (MTF) and it varies between 8.2 Ip/mm and 11.0 Ip/mm at 70%. An associated measurement of noise power spectrum (NPS) permits us to derive the detective quantum efficiency (DQE) which can be as a high as 25.5 % for a broadband incoming spectrum. The influence of charge diffusion in the sensor together with threshold variation in the readout chip is discussed. Although the Medipix2 system is used in photon counting mode with a single threshold in energy, the system is also capable of counting within a given energy window of down to ~1.4 keV. First measurements and images using this feature reveal capabilities that allow to identify fluorescence and other sources of disturbance.oai:cds.cern.ch:9138272006
spellingShingle Detectors and Experimental Techniques
Tlustos, Lukas
Ballabriga-Sune, Rafael
Campbell, Michael
Heijne, Erik H M
Kincade, Karla Lorraine
Llopart-Cudie, Xavier
Stejskal, Pavel
Imaging properties of the Medipix2 system exploiting single and dual energy thresholds
title Imaging properties of the Medipix2 system exploiting single and dual energy thresholds
title_full Imaging properties of the Medipix2 system exploiting single and dual energy thresholds
title_fullStr Imaging properties of the Medipix2 system exploiting single and dual energy thresholds
title_full_unstemmed Imaging properties of the Medipix2 system exploiting single and dual energy thresholds
title_short Imaging properties of the Medipix2 system exploiting single and dual energy thresholds
title_sort imaging properties of the medipix2 system exploiting single and dual energy thresholds
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/TNS.2006.872627
http://cds.cern.ch/record/913827
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