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3D TOF-PET image reconstruction using total variation regularization
Institution:1. Department of Complex Systems, National Centre for Nuclear Research, 05-400 Otwock-?wierk, Poland;2. High Energy Physics Division, National Centre for Nuclear Research, 05-400 Otwock-?wierk, Poland;3. Marian Smoluchowski Institute of Physics, Jagiellonian University, 31-348 Cracow, Poland;4. INFN, Laboratori Nazionali di Frascati, 00044 Frascati, Italy;5. Institute of Nuclear Physics PAN, Cracow, Poland;6. Institute of Physics, Maria Curie-Sk?odowska University, 20-031 Lublin, Poland;7. Faculty of Physics, University of Vienna, 1090 Vienna, Austria;8. Department of Physics, College of Education for Pure Sciences, University of Mosul, Mosul, Iraq
Abstract:In this paper we introduce a semi-analytic algorithm for 3-dimensional image reconstruction for positron emission tomography (PET). The method consists of the back-projection of the acquired data into the most likely image voxel according to time-of-flight (TOF) information, followed by the filtering step in the image space using an iterative optimization algorithm with a total variation (TV) regularization. TV regularization in image space is more computationally efficient than usual iterative optimization methods for PET reconstruction with full system matrix that use TV regularization. The efficiency comes from the one-time TOF back-projection step that might also be described as a reformatting of the acquired data. An important aspect of our work concerns the evaluation of the filter operator of the linear transform mapping an original radioactive tracer distribution into the TOF back-projected image. We obtain concise, closed-form analytical formula for the filter operator. The proposed method is validated with the Monte Carlo simulations of the NEMA IEC phantom using a one-layer, 50 cm-long cylindrical device called Jagiellonian PET scanner. The results show a better image quality compared with the reference TOF maximum likelihood expectation maximization algorithm.
Keywords:Total variation regularization  Positron emission tomography  Time-of-flight  Medical imaging
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