A Photoacoustic Imaging System with Optimized Real-Time Parallel Reconstruction
 
             
            
                    
                                        
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Abstract
    Biomedical photoacoustic tomography (PAT) provides anatomical, functional, metabolic, molecular, and genetic contrasts of vasculature, hemodynamics, oxygen metabolism, biomarkers, and gene expression. These attributes bring PAT to a wide variety of applications in clinical medicine and preclinical research. We report the development of a real-time PAT imaging system, which integrates signal scanning, image reconstruction and displaying photoacoustic images in real time. An optimized back projection algorithm for PAT imaging is proposed and tested on a latest graphics process unit based card. The whole system is built and tested in an experiment for monitoring moving blood events to validate the real-time performance of this system to image moving events.
 
 
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                        FENG Ting, YUAN Jie, YU Yao, ZHOU Yu, XU Guan. A Photoacoustic Imaging System with Optimized Real-Time Parallel Reconstruction[J]. 
Chin. Phys. Lett., 2013, 30(10): 100702. 
DOI: 10.1088/0256-307X/30/10/100702
                     
                    
                        
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                                FENG Ting, YUAN Jie, YU Yao, ZHOU Yu, XU Guan. A Photoacoustic Imaging System with Optimized Real-Time Parallel Reconstruction[J]. Chin. Phys. Lett., 2013, 30(10): 100702. DOI: 10.1088/0256-307X/30/10/100702
                                
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                        FENG Ting, YUAN Jie, YU Yao, ZHOU Yu, XU Guan. A Photoacoustic Imaging System with Optimized Real-Time Parallel Reconstruction[J]. Chin. Phys. Lett., 2013, 30(10): 100702. DOI: 10.1088/0256-307X/30/10/100702
                    
                    
                        
                            | 
                                FENG Ting, YUAN Jie, YU Yao, ZHOU Yu, XU Guan. A Photoacoustic Imaging System with Optimized Real-Time Parallel Reconstruction[J]. Chin. Phys. Lett., 2013, 30(10): 100702. DOI: 10.1088/0256-307X/30/10/100702
                                
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