Image noise due to quantum fluctuations in flat-panel detector based cone-beam CT imaging

被引:4
|
作者
Zhang, Y [1 ]
Ning, R [1 ]
Conover, D [1 ]
Yu, Y [1 ]
机构
[1] Univ Rochester, Dept ECE & Radiol, Rochester, NY 14627 USA
关键词
quantum noise; image noise level; exposure level; detector size; cone-beam CT; flat panel detector;
D O I
10.1117/12.594672
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Quantum noise in cone beam CT (CBCT) imaging was studied to provide quantitative relationships among 3D cone beam image noise level and CT acquisition and reconstruction parameters, which include entrance exposure level, number of projections, and single detector size. It showed that the level of reconstructed image noise, which was caused by quantum noise in projection data, was spatially variant and related to the shape of the scan object, and that the image noise level was inversely proportional to the square root of entrance exposure level per projection, square root of number of projections, and square of detector size. Both computer simulations and real phantom studies were conducted to verify the derived quantitative relationships between image noise level and CT parameters. Shepp-logan head phantom was used in computer simulations to verify the theoretical relation between noise level and detector size, while a real cylindrical oil-uniformed phantom was studied to verify the theoretical relation between noise level and entrance exposure level. The real phantom studies were carried out on a flat panel detector (FPD)-based CBCT system available in our Lab. This work can provide a guide on how to balance various CBCT parameters to achieve satisfactory image quality with desired signal-to-noise ratio, specified spatial resolution, low contrast detectability and minimal x-ray radiation to patients.
引用
收藏
页码:656 / 663
页数:8
相关论文
共 50 条
  • [21] Super Resolution Dual-Energy Cone-Beam CT Imaging With Dual-Layer Flat-Panel Detector
    Su, Ting
    Zhu, Jiongtao
    Zhang, Xin
    Tan, Yuhang
    Cui, Han
    Zeng, Dong
    Guo, Jinchuan
    Zheng, Hairong
    Ma, Jianhua
    Liang, Dong
    Ge, Yongshuai
    [J]. IEEE TRANSACTIONS ON MEDICAL IMAGING, 2024, 43 (02) : 734 - 744
  • [22] Simulation of Motion Artifacts in Offset Flat-Panel Cone-Beam CT
    Hansis, Eberhard
    Shao, Lingxiong
    [J]. 2011 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE (NSS/MIC), 2011, : 2471 - 2475
  • [23] Image lag modeling and correction method for flat panel detector in cone-beam CT
    Huang Kui-Dong
    Zhang Ding-Hua
    Li Ming-Jun
    Zhang Hua
    [J]. ACTA PHYSICA SINICA, 2013, 62 (21)
  • [24] Image quality vs. sampling strategy for offset flat-panel cone-beam CT
    Hansis, Eberhard
    Sowards-Emmerd, David
    Bredno, Joerg
    Wang, Jiong
    Shao, Lingxiong
    [J]. JOURNAL OF NUCLEAR MEDICINE, 2011, 52
  • [25] Cone-beam CT with flat-panel detectors: Applications in diagnostic and image-guided procedures
    Siewerdsen, I
    [J]. MEDICAL PHYSICS, 2005, 32 (06) : 2057 - 2058
  • [26] NEQ description of 3-D imaging performance in flat-panel cone-beam CT
    Siewerdsen, J
    Jaffray, D
    [J]. MEDICAL PHYSICS, 2002, 29 (06) : 1321 - 1321
  • [27] Flat panel detector-based cone-beam volume CT angiography imaging: System evaluation
    Ning, R
    Chen, B
    Yu, RF
    Conover, D
    Tang, XY
    Ning, Y
    [J]. IEEE TRANSACTIONS ON MEDICAL IMAGING, 2000, 19 (09) : 949 - 963
  • [28] Flat Detector Cone-Beam CT
    Kachelriess, Marc
    [J]. ZEITSCHRIFT FUR MEDIZINISCHE PHYSIK, 2013, 23 (02): : 91 - 91
  • [30] Image quality advances in flat panel cone-beam CT
    Sowards-Emmerd, David
    Elenbaas, Thijs
    Hansis, Eberhard
    van de Haar, Peter
    Shao, Lingxiong
    Timmer, Jan
    [J]. JOURNAL OF NUCLEAR MEDICINE, 2010, 51