Investigation of CdTe, GaAs, Se and Si as sensor materials for mammography
Abstract: Despite the benefits of mammography investigations, some studies have shown that X-ray exposure from the mammography screening itself can statistically cause breast cancer in a small fraction of women. Therefore, a dose reduction in mammography is desirable. At the same time, there is a demand for a higher spatial resolution in mammographic imaging. The most promising way to achieve these goals is the use of advanced photon-processing semiconductor X-ray detectors with optimum sensor materials. This study addresses the investigation of the optimum semiconductor sensor material for mammography in combination with the photon-processing detector Medipix3RX. The influence of K-shell fluorescence from the sensor material on the achievable contrast-to-noise ratio is investigated, as well as the attenuation efficiency. The three different sensor materials, CdTe, GaAs, and Si are studied, showing advances of CdTe-sensors for mammography. Furthermore, a comparison of the contrast-to-noise ratio between a clinical Se-detector and Medipix3RX detectors with Si- and CdTe-sensors is shown using a self-produced mammography phantom that is based on real human tissue
- Standort
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Deutsche Nationalbibliothek Frankfurt am Main
- Umfang
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Online-Ressource
- Sprache
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Englisch
- Anmerkungen
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IEEE transactions on medical imaging. - 39, 12 (2020) , 3766-3778, ISSN: 1558-254X
- Ereignis
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Veröffentlichung
- (wo)
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Freiburg
- (wer)
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Universität
- (wann)
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2024
- Urheber
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Procz, Szymon
Roque Romero, Gerardo Alfonso
Avila, Carlos A.
Racedo, Jorge
Rueda, Roberto
Santos, Ivan
Fiederle, Michael
- DOI
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10.1109/tmi.2020.3004648
- URN
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urn:nbn:de:bsz:25-freidok-2601944
- Rechteinformation
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Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
- Letzte Aktualisierung
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15.08.2025, 07:28 MESZ
Datenpartner
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Beteiligte
- Procz, Szymon
- Roque Romero, Gerardo Alfonso
- Avila, Carlos A.
- Racedo, Jorge
- Rueda, Roberto
- Santos, Ivan
- Fiederle, Michael
- Universität
Entstanden
- 2024