Dual-energy CT (DECT) enables simultaneous use of two different tube voltages, thus different x-ray absorption characteristics are acquired in the same anatomic location with two different X-ray spectra. The various DECT techniques allow material decomposition and mapping of the iodine distribution within the myocardium. Static dual-energy myocardial perfusion imaging (sCTMPI) using pharmacological stress agents demonstrate myocardial ischemia by single snapshot images of myocardial iodine distribution. sCTMPI gives incremental values to coronary artery stenosis detected on coronary CT angiography (CCTA) by showing consequent reversible or fixed myocardial perfusion defects. The comprehensive acquisition of CCTA and sCTMPI offers extensive morphological and functional evaluation of coronary artery disease. Recent studies have revealed that dual-energy sCTMPI shows promising diagnostic accuracy for the detection of hemodynamically significant coronary artery disease compared to single-photon emission computed tomography, invasive coronary angiography, and cardiac MRI. The aim of this review is to present currently available DECT techniques for static myocardial perfusion imaging and recent clinical applications and ongoing investigations.

Myocardial perfusion imaging with dual energy CT / Nam Jina, Kwang; De Cecco, Carlo N.; Caruso, Damiano; Tesche, Christian; Spandorfer, Adam; Varga-Szemes, Akos; Joseph Schoepf, U.. - In: EUROPEAN JOURNAL OF RADIOLOGY. - ISSN 0720-048X. - 85:10(2016), pp. 1914-1921. [10.1016/j.ejrad.2016.06.023]

Myocardial perfusion imaging with dual energy CT

Carlo N. De Cecco;Damiano Caruso;
2016

Abstract

Dual-energy CT (DECT) enables simultaneous use of two different tube voltages, thus different x-ray absorption characteristics are acquired in the same anatomic location with two different X-ray spectra. The various DECT techniques allow material decomposition and mapping of the iodine distribution within the myocardium. Static dual-energy myocardial perfusion imaging (sCTMPI) using pharmacological stress agents demonstrate myocardial ischemia by single snapshot images of myocardial iodine distribution. sCTMPI gives incremental values to coronary artery stenosis detected on coronary CT angiography (CCTA) by showing consequent reversible or fixed myocardial perfusion defects. The comprehensive acquisition of CCTA and sCTMPI offers extensive morphological and functional evaluation of coronary artery disease. Recent studies have revealed that dual-energy sCTMPI shows promising diagnostic accuracy for the detection of hemodynamically significant coronary artery disease compared to single-photon emission computed tomography, invasive coronary angiography, and cardiac MRI. The aim of this review is to present currently available DECT techniques for static myocardial perfusion imaging and recent clinical applications and ongoing investigations.
2016
coronary artery disease; coronary CT angiography; dual-energy CT; myocardial ischemia; myocardial perfusion imaging
01 Pubblicazione su rivista::01a Articolo in rivista
Myocardial perfusion imaging with dual energy CT / Nam Jina, Kwang; De Cecco, Carlo N.; Caruso, Damiano; Tesche, Christian; Spandorfer, Adam; Varga-Szemes, Akos; Joseph Schoepf, U.. - In: EUROPEAN JOURNAL OF RADIOLOGY. - ISSN 0720-048X. - 85:10(2016), pp. 1914-1921. [10.1016/j.ejrad.2016.06.023]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1165717
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