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Hauptverfasser: Sámuel Beke, Emese Zsarnóczay, Lili Száraz, Borbála Vattay, Dmitrij Kravchenko, Milan Vecsey‐Nagy, Giuseppe Tremamunno, Tilman Emrich, Akos Varga‐Szemes, Bálint Szilveszter, Pál Maurovich‐Horvat
Format: Artículo Open Access
Veröffentlicht: Wiley 2025
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Online-Zugang:https://onlinelibrary.wiley.com/doi/10.1111/echo.70177
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author Sámuel Beke
Emese Zsarnóczay
Lili Száraz
Borbála Vattay
Dmitrij Kravchenko
Milan Vecsey‐Nagy
Giuseppe Tremamunno
Tilman Emrich
Akos Varga‐Szemes
Bálint Szilveszter
Pál Maurovich‐Horvat
author_facet Sámuel Beke
Emese Zsarnóczay
Lili Száraz
Borbála Vattay
Dmitrij Kravchenko
Milan Vecsey‐Nagy
Giuseppe Tremamunno
Tilman Emrich
Akos Varga‐Szemes
Bálint Szilveszter
Pál Maurovich‐Horvat
Sámuel Beke
Emese Zsarnóczay
Lili Száraz
Borbála Vattay
Dmitrij Kravchenko
Milan Vecsey‐Nagy
Giuseppe Tremamunno
Tilman Emrich
Akos Varga‐Szemes
Bálint Szilveszter
Pál Maurovich‐Horvat
collection Wiley Open Access
contents Spectral Imaging Techniques in Heart Disease Assessment Using Photon‐Counting Detector Computed Tomography Sámuel Beke Emese Zsarnóczay Lili Száraz Borbála Vattay Dmitrij Kravchenko Milan Vecsey‐Nagy Giuseppe Tremamunno Tilman Emrich Akos Varga‐Szemes Bálint Szilveszter Pál Maurovich‐Horvat Echocardiography ABSTRACT The photon‐counting detector (PCD) system was developed to overcome the limitations of traditional energy‐integrating detectors (EIDs) in computed tomography. This technique results in a higher contrast‐to‐noise ratio (CNR), better spatial resolution, and additionally provides detector‐based spectral information. Spectral imaging is based on the acquisition and detection of different photon energy spectra. By using spectral information, image quality (IQ) can be improved, and materials can be distinguished; furthermore, their quantity and concentration can be determined. Spectral data‐based parameters and reconstructions can be utilized in calcification measurement, luminal stenosis assessment, and myocardium characterization. The aim of this review is to summarize the spectral imaging applications of PCD computed tomography in the assessment of heart diseases. 10.1111/echo.70177 http://onlinelibrary.wiley.com/termsAndConditions#vor
doi_str_mv 10.1111/echo.70177
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institution Wiley Open Access
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publishDate 2025
publisher Wiley
record_format wiley_oa
spellingShingle Spectral Imaging Techniques in Heart Disease Assessment Using Photon‐Counting Detector Computed Tomography
Sámuel Beke
Emese Zsarnóczay
Lili Száraz
Borbála Vattay
Dmitrij Kravchenko
Milan Vecsey‐Nagy
Giuseppe Tremamunno
Tilman Emrich
Akos Varga‐Szemes
Bálint Szilveszter
Pál Maurovich‐Horvat
Echocardiography
Spectral Imaging Techniques in Heart Disease Assessment Using Photon‐Counting Detector Computed Tomography Sámuel Beke Emese Zsarnóczay Lili Száraz Borbála Vattay Dmitrij Kravchenko Milan Vecsey‐Nagy Giuseppe Tremamunno Tilman Emrich Akos Varga‐Szemes Bálint Szilveszter Pál Maurovich‐Horvat Echocardiography ABSTRACT The photon‐counting detector (PCD) system was developed to overcome the limitations of traditional energy‐integrating detectors (EIDs) in computed tomography. This technique results in a higher contrast‐to‐noise ratio (CNR), better spatial resolution, and additionally provides detector‐based spectral information. Spectral imaging is based on the acquisition and detection of different photon energy spectra. By using spectral information, image quality (IQ) can be improved, and materials can be distinguished; furthermore, their quantity and concentration can be determined. Spectral data‐based parameters and reconstructions can be utilized in calcification measurement, luminal stenosis assessment, and myocardium characterization. The aim of this review is to summarize the spectral imaging applications of PCD computed tomography in the assessment of heart diseases. 10.1111/echo.70177 http://onlinelibrary.wiley.com/termsAndConditions#vor
title Spectral Imaging Techniques in Heart Disease Assessment Using Photon‐Counting Detector Computed Tomography
topic Echocardiography
url https://onlinelibrary.wiley.com/doi/10.1111/echo.70177