Multi-Energy CT with Triple X-ray Beams and Photon-Counting-Detector CT for Simultaneous Imaging of Two Contrast Agents: An Experimental Comparison

被引:0
|
作者
Ren, Liqiang [1 ]
McCollough, Cynthia H. [1 ]
Yu, Lifeng [1 ]
机构
[1] Mayo Clin, Dept Radiol, Rochester, MN 55902 USA
基金
美国国家卫生研究院;
关键词
Multi-energy CT (MECT); Photon-counting-detector CT (PCD-CT); Dual-energy CT (DECT); Material Decomposition; Multiple Contrast Agents; DUAL-ENERGY CT; IODINE;
D O I
10.1117/12.2513460
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Multi-energy CT (MECT) enabled by energy-resolved photon-counting-detector CT (PCD-CT) is promising for material specific imaging with multiple contrast agents. However, non-idealities of the PCD such as pulse pileup, K-edge escape, and charge sharing may degrade the spectral performance. To perform MECT, an alternative approach was proposed by extending a "Twin Beam" design to a dual-source CT scanner with energy-integrating-detector (EID) by operating one or both sources in the "Twin Beam" mode to acquire three (triple beam configuration) or four (quadruple-beam configuration) distinct X-ray beam measurements. Previous computer simulation studies demonstrated that the image quality and dose efficiency of the triple-beam configuration were comparable to that in PCD-CT for a three-material decomposition task involving iodine, bismuth, and water. The purpose of this work is to experimentally validate the proposed triple-beam MECT technique in comparison with PCD-CT. To mimic the dual-source triple-beam acquisition, two separate scans, one at 80 kV and the other at 120 kV operated in the "Twin Beam" mode, were performed on a single-source CT scanner. Two potential clinical applications of MECT for multiple contrast agents were investigated: iodine/gadolinium for biphasic liver imaging and iodine/bismuth for small bowel imaging. The results indicate that the imaging performance of the EID-based MECT may be comparable to that on the current PCD-CT platform for both the iodine/gadolinium and the iodine/bismuth material decomposition tasks.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] A STATISTICAL FRAMEWORK FOR MATERIAL DECOMPOSITION USING MULTI-ENERGY PHOTON COUNTING X-RAY DETECTOR
    Choi, Jiyoung
    Kang, Dong-Goo
    Kang, Sunghoon
    Sung, Younghun
    Ye, Jong Chul
    2012 9TH IEEE INTERNATIONAL SYMPOSIUM ON BIOMEDICAL IMAGING (ISBI), 2012, : 1300 - 1303
  • [22] Simulation Research of Potential Contrast Agents for X-Ray Fluorescence CT with Photon Counting Detectors
    Yan, Luo
    Feng Peng
    Zhao Ruge
    Zhang Yi
    An Kang
    He Peng
    Yan Shenghao
    Zhao Xiansheng
    FRONTIERS IN PHYSICS, 2021, 9
  • [23] Photon Counting Detectors for X-Ray Imaging With Emphasis on CT
    Ballabriga, R.
    Alozy, J.
    Bandi, F. N.
    Campbell, M.
    Egidos, N.
    Fernandez-Tenllado, J. M.
    Heijne, E. H. M.
    Kremastiotis, I.
    Llopart, X.
    Madsen, B. J.
    Pennicard, D.
    Sriskaran, V.
    Tlustos, L.
    IEEE TRANSACTIONS ON RADIATION AND PLASMA MEDICAL SCIENCES, 2021, 5 (04) : 422 - 440
  • [24] Spectral CT imaging: Technical principles of dual-energy CT and multi-energy photon-counting CT
    Greffier, Joel
    Villani, Nicolas
    Defez, Didier
    Dabli, Djamel
    Si-Mohamed, Salim
    DIAGNOSTIC AND INTERVENTIONAL IMAGING, 2023, 104 (04) : 167 - 177
  • [25] Multi-energy in-vivo imaging of multiple contrast agents in a mouse using MPPC-based photon-counting CT
    Sato, Daichi
    Arimoto, Makoto
    Ishiguro, Ayumi
    Lucyana, Fitri
    Tomoda, Takahiro
    Okumura, Kenichiro
    Kawashima, Hiroki
    Kobayashi, Satoshi
    Murakami, Kazuhiro
    Kataoka, Jun
    Sagisaka, Mayu
    Terazawa, Shinsuke
    Shiota, Satoshi
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2024, 1064
  • [26] Performance of an improved readout IC for multi-energy photon-counting x-ray detector arrays
    Clajus, Martin
    Cajipe, Victoria B.
    Hayakawa, Satoshi
    Tuemer, Tuemay O.
    HARD X-RAY, GAMMA-RAY, AND NEUTRON DETECTOR PHYSICS X, 2008, 7079
  • [27] Analysis of artifact with X-ray CT using energy band by photon counting CdTe detector
    Matsumoto, G.
    Imura, Y.
    Morii, H.
    Miyake, A.
    Aoki, T.
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2010, 621 (1-3): : 292 - 294
  • [28] X-ray Activated Optical Contrast Agents for Simultaneous Anatomical/Functional CT Imaging
    Pratx, G.
    Carpenter, C. M.
    Sun, C.
    Rao, R.
    Xing, L.
    INTERNATIONAL JOURNAL OF RADIATION ONCOLOGY BIOLOGY PHYSICS, 2010, 78 (03): : S641 - S642
  • [29] Image quality of lung perfusion with photon-counting-detector CT: comparison with dual-source, dual-energy CT
    Remy-Jardin, Martine
    Guiffault, Lucas
    Oufriche, Idir
    Duhamel, Alain
    Flohr, Thomas
    Schmidt, Bernhard
    Remy, Jacques
    EUROPEAN RADIOLOGY, 2024, 34 (12) : 7831 - 7844
  • [30] Photon Counting Energy Dispersive Detector Arrays for X-ray Imaging
    Iwanczyk, Jan S.
    Nygard, Einar
    Meirav, Oded
    Arenson, Jerry
    Barber, William C.
    Hartsough, Neal E.
    Malakhov, Nail
    Wessel, Jan C.
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2009, 56 (03) : 535 - 542