Title :
TIMBIR: A Method for Time-Space Reconstruction From Interlaced Views
Author :
Aditya Mohan, K. ; Venkatakrishnan, S.V. ; Gibbs, John W. ; Gulsoy, Emine Begum ; Xianghui Xiao ; De Graef, Marc ; Voorhees, Peter W. ; Bouman, Charles A.
Author_Institution :
Sch. of Electr. & Comput. Eng., Purdue Univ., West Lafayette, IN, USA
fDate :
6/1/2015 12:00:00 AM
Abstract :
Synchrotron X-ray computed tomography (SXCT) is increasingly being used for 3-D imaging of material samples at micron and finer scales. The success of these techniques has increased interest in 4-D reconstruction methods that can image a sample in both space and time. However, the temporal resolution of widely used 4-D reconstruction methods is severely limited by the need to acquire a very large number of views for each reconstructed 3-D volume. Consequently, the temporal resolution of current methods is insufficient to observe important physical phenomena. Furthermore, measurement nonidealities also tend to introduce ring and streak artifacts into the 4-D reconstructions. In this paper, we present a time-interlaced model-based iterative reconstruction (TIMBIR) method, which is a synergistic combination of two innovations. The first innovation, interlaced view sampling, is a novel method of data acquisition, which distributes the view angles more evenly in time. The second innovation is a 4-D model-based iterative reconstruction algorithm (MBIR), which can produce time-resolved volumetric reconstruction of the sample from the interlaced views. In addition to modeling both the sensor noise statistics and the 4-D object, the MBIR algorithm also reduces ring and streak artifacts by more accurately modeling the measurement nonidealities. We present reconstructions of both simulated and real X-ray synchrotron data, which indicate that TIMBIR can improve temporal resolution by an order of magnitude relative to existing approaches.
Keywords :
computerised tomography; data acquisition; image reconstruction; image resolution; image sampling; iterative methods; statistical analysis; synchrotrons; 3D volume image reconstruction; 4D image reconstruction method; SXCT; TIMBIR method; data acquisition; ring artifact; sensor noise statistics; streak artifact; synchrotron X-ray computed tomography; temporal image resolution; time-interlaced model-based iterative reconstruction method; time-resolved volumetric reconstruction; Cost function; Data acquisition; Image reconstruction; Photonics; Reconstruction algorithms; Three-dimensional displays; 4D reconstruction; Compressed sensing; MBIR; X-ray computed tomography; interlaced views; optimization; ring artifacts; streak artifacts; synchrotron; time-space imaging; zingers;
Journal_Title :
Computational Imaging, IEEE Transactions on
DOI :
10.1109/TCI.2015.2431913