Evaluating the impact of x-ray spectral shape on image quality in flat-panel CT breast imaging

2006 ◽  
Vol 34 (1) ◽  
pp. 5-24 ◽  
Author(s):  
Stephen J. Glick ◽  
Samta Thacker ◽  
Xing Gong ◽  
Bob Liu
2009 ◽  
Vol 36 (3) ◽  
pp. 920-928 ◽  
Author(s):  
Ann-Katherine Carton ◽  
Raymond Acciavatti ◽  
Johnny Kuo ◽  
Andrew D. A. Maidment

2000 ◽  
Author(s):  
Shinichi Yamada ◽  
Hiroko Umazaki ◽  
Akihito Takahashi ◽  
Michitaka Honda ◽  
Kunio Shiraishi ◽  
...  

2022 ◽  
Vol 17 (01) ◽  
pp. C01041
Author(s):  
A. Sarno ◽  
R.M. Tucciariello

Abstract Virtual clinical trials in X-ray breast imaging permit to compare different technical solutions and imaging modalities at reduced costs, involved personnel, reduced times and reduced radiation risks to patients. In this context, the detector characteristics (spatial resolution, noise level and efficiency) play a key role for an appropriate generation of simulated images. The project AGATA proposes to compute images as dose deposit maps in a detector layer of defined materials. Simulated images are then post-processed on the basis of suitable comparison between intrinsic characteristics of real and simulated detectors. With this scope, as first step for the post-processing manipulations, we evaluated the presampled modulation transfer function (MTF), the detector-response function and the noise power spectrum (NPS) of the simulated detectors. Two detectors were simulated: (1) 0.20 mm-thick a-Se direct flat panel with 70 µm pixel pitch and (2) CsI(Tl) indirect flat panel with 100 µm pixel pitch and scintillator layer 0.25 mm thick. In addition, the impact of simulating the de-excitation processes (Auger emission and fluorescence) was explored. Simulated detector characteristics were evaluated for W/Rh spectra between 25 kV and 31 kV. The in-silico platform used a Monte Carlo software based on Geant4 toolkit (vers. 6). First, the simulation and tracking of electrons generated from photoelectric or Compton interactions was shown to have neglectable influence on the pixel values for the explored spectra, with the produced electrons presenting short ranges with respect to the pixel dimension. In the case of the CsI detector, which has fluorescence energies higher than those of the simulated X-ray photons, the deexcitation processes have not noticeable influence on the calculated pixel values. On the other hand, the MTF of the a-Se detector resulted slightly lower when the fluorescence is simulated in the detector materials, due to the dose spread derived from the fluorescence photons, which can travel far from the initial ionization interaction. Regarding the a-Se detector, the noise power spectrum resulted lower with simulated deexcitation.


Author(s):  
Olivia Sullivan ◽  
Zongyi Gong ◽  
Kelly Klanian ◽  
Tushita Patel ◽  
Mark B. Williams

2009 ◽  
Vol 2009 ◽  
pp. 1-11 ◽  
Author(s):  
Dong Yang ◽  
Ruola Ning ◽  
Weixing Cai

Flat panel detector-based cone beam breast CT (CBBCT) can provide 3D image of the scanned breast with 3D isotropic spatial resolution, overcoming the disadvantage of the structure superimposition associated with X-ray projection mammography. It is very difficult for Mammography to detect a small carcinoma (a few millimeters in size) when the tumor is occult or in dense breast. CBBCT featured with circular scan might be the most desirable mode in breast imaging due to its simple geometrical configuration and potential applications in functional imaging. An inherited large cone angle in CBBCT, however, will yield artifacts in the reconstruction images when only a single circular scan is employed. These artifacts usually manifest themselves as density drop and object geometrical distortion that are more noticeable in the reconstructed image areas that are further away from the circular scanning plane. In order to combat this drawback, a circle plus partial helical scan scheme is proposed. An exact circle plus straight line scan scheme is also conducted in computer simulation for the purpose of comparison. Computer simulations using a numerical breast phantom demonstrated the practical feasibility of this new scheme and correction to those artifacts to a certain degree.


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