Dual energy imaging in cardiothoracic pathologies: A primer for radiologists and clinicians

被引:31
作者
Gupta, Amit [1 ]
Kikano, Elias G. [1 ]
Bera, Kaustav [2 ]
Baruah, Dhiraj [3 ]
Saboo, Sachin S. [4 ]
Lennartz, Simon [5 ]
Hokamp, Nils Grosse [5 ]
Gholamrezanezhad, Ali [6 ]
Gilkeson, Robert C. [1 ]
Laukamp, Kai R. [5 ]
机构
[1] Case Western Reserve Univ, Univ Hosp Cleveland, Med Ctr, Dept Radiol, 11100 Euclid Ave, Cleveland, OH 44106 USA
[2] Case Western Reserve Univ, Dept Biomed Engn, Cleveland, OH 44106 USA
[3] Med Univ South Carolina, Dept Radiol, Charleston, SC 29425 USA
[4] Univ Texas Hlth Sci Ctr San Antonio, Dept Radiol, San Antonio, TX 78229 USA
[5] Univ Hosp Cologne, Inst Diagnost & Intervent Radiol, Cologne, Germany
[6] Univ Southern Calif, Keck Sch Med, Dept Radiol, Los Angeles, CA 90007 USA
关键词
Dual energy CT; Dual energy radiography; Photoelectric effect; COMPUTER-AIDED DETECTION; DIGITAL RADIOGRAPHY; CHEST RADIOGRAPHY; SUBTRACTION TECHNIQUE; CORONARY-ANGIOGRAPHY; DETECTOR CT; IODINE LOAD; TOMOGRAPHY; PERFUSION; IMAGES;
D O I
10.1016/j.ejro.2021.100324
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
100231 [临床病理学]; 100902 [航空航天医学];
摘要
Recent advances in dual-energy imaging techniques, dual-energy subtraction radiography (DESR) and dualenergy CT (DECT), offer new and useful additional information to conventional imaging, thus improving assessment of cardiothoracic abnormalities. DESR facilitates detection and characterization of pulmonary nodules. Other advantages of DESR include better depiction of pleural, lung parenchymal, airway and chest wall abnormalities, detection of foreign bodies and indwelling devices, improved visualization of cardiac and coronary artery calcifications helping in risk stratification of coronary artery disease, and diagnosing conditions like constrictive pericarditis and valvular stenosis. Commercially available DECT approaches are classified into emission based (dual rotation/spin, dual source, rapid kilovoltage switching and split beam) and detector-based (dual layer) systems. DECT provide several specialized image reconstructions. Virtual non-contrast images (VNC) allow for radiation dose reduction by obviating need for true non contrast images, low energy virtual monoenergetic images (VMI) boost contrast enhancement and help in salvaging otherwise non-diagnostic vascular studies, high energy VMI reduce beam hardening artifacts from metallic hardware or dense contrast material, and iodine density images allow quantitative and qualitative assessment of enhancement/iodine distribution. The large amount of data generated by DECT can affect interpreting physician efficiency but also limit clinical adoption of the technology. Optimization of the existing workflow and streamlining the integration between post-processing software and picture archiving and communication system (PACS) is therefore warranted.
引用
收藏
页数:18
相关论文
共 83 条
[1]
Acquisition time, radiation dose, subjective and objective image quality of dual-source CT scanners in acute pulmonary embolism: a comparative study [J].
Abdellatif, Waleed ;
Esslinger, Eric ;
Kobes, Kevin ;
Wong, Amanda ;
Powell, Jennifer ;
Ali, Ismail Tawakol ;
Andrews, Gordon ;
Nicolaou, Savvas .
EUROPEAN RADIOLOGY, 2020, 30 (05) :2712-2721
[2]
Dual-energy CT of the heart current and future status [J].
Albrecht, Moritz H. ;
De Cecco, Carlo N. ;
Schoepf, U. Joseph ;
Spandorfer, Adam ;
Eid, Marwen ;
De Santis, Domenico ;
Varga-Szemes, Akos ;
van Assen, Marly ;
von Knebel-Doeberitz, Philipp L. ;
Tesche, Christian ;
Puntmann, Valentina O. ;
Nagel, Eike ;
Vogl, Thomas J. ;
Nance, John W. .
EUROPEAN JOURNAL OF RADIOLOGY, 2018, 105 :110-118
[3]
ENERGY-SELECTIVE RECONSTRUCTIONS IN X-RAY COMPUTERIZED TOMOGRAPHY [J].
ALVAREZ, RE ;
MACOVSKI, A .
PHYSICS IN MEDICINE AND BIOLOGY, 1976, 21 (05) :733-744
[4]
Multimodality approach to the diagnosis and management of constrictive pericarditis [J].
Ansari-Gilani, Kianoush ;
Gilkeson, Robert C. ;
Kikano, Elias G. ;
Hoit, Brian D. .
ECHOCARDIOGRAPHY-A JOURNAL OF CARDIOVASCULAR ULTRASOUND AND ALLIED TECHNIQUES, 2020, 37 (04) :632-636
[5]
Dual-energy Subtraction Chest Radiography Application in Cardiovascular Imaging [J].
Ansari-Gilani, Kianoush ;
Tandon, Yasmeen K. ;
Jordan, David W. ;
Ciancibello, Leslie ;
Wilson, David L. ;
Gilkeson, Robert C. .
JOURNAL OF THORACIC IMAGING, 2020, 35 (03) :W75-W81
[6]
Prognostic impact of average iodine density assessed by dual-energy spectral imaging for predicting lung tumor recurrence after stereotactic body radiotherapy [J].
Aoki, Masahiko ;
Hirose, Katsumi ;
Sato, Mariko ;
Akimoto, Hiroyoshi ;
Kawaguchi, Hideo ;
Hatayama, Yoshiomi ;
Fujioka, Ichitaro ;
Tanaka, Mitsuki ;
Ono, Shuichi ;
Takai, Yoshihiro .
JOURNAL OF RADIATION RESEARCH, 2016, 57 (04) :381-386
[7]
Applications of Dual-Energy CT in Emergency Radiology [J].
Aran, Shima ;
Besheli, Laleh Daftari ;
Karcaaltincaba, Musturay ;
Gupta, Rajiv ;
Flores, Efren J. ;
Abujudeh, Hani H. .
AMERICAN JOURNAL OF ROENTGENOLOGY, 2014, 202 (04) :W314-W324
[8]
Improved coronary artery contrast enhancement using noise-optimised virtual monoenergetic imaging from dual-source dual-energy computed tomography [J].
Arendt, Christophe T. ;
Czwikla, Rouben ;
Lenga, Lukas ;
Wichmann, Julian L. ;
Albrecht, Moritz H. ;
Booz, Christian ;
Martin, Simon S. ;
Leithner, Doris ;
Tischendorf, Patricia ;
Blandino, Alfredo ;
Vogl, Thomas J. ;
D'Angelo, Tommaso .
EUROPEAN JOURNAL OF RADIOLOGY, 2020, 122
[9]
Dual Energy Subtraction Digital Radiography Improves Performance of a Next Generation Computer-aided Detection Program [J].
Balkman, Jason D. ;
Mehandru, Sonali ;
DuPont, Elena ;
Novak, Ronald D. ;
Gilkeson, Robert C. .
JOURNAL OF THORACIC IMAGING, 2010, 25 (01) :41-47
[10]
Dose and image quality at CT pulmonary angiography-comparison of first and second generation dual-energy CT and 64-slice CT [J].
Bauer, Ralf W. ;
Kramer, Sebastian ;
Renker, Matthias ;
Schell, Boris ;
Larson, Maya Christina ;
Beeres, Martin ;
Lehnert, Thomas ;
Jacobi, Volkmar ;
Vogl, Thomas J. ;
Kerl, Josef Matthias .
EUROPEAN RADIOLOGY, 2011, 21 (10) :2139-2147