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      Multiview Hilbert transformation for full-view photoacoustic computed tomography using a linear array.

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          Abstract

          Due to their low cost, hand-held convenience, wide selection of bandwidths, and ultrasound imaging capability, linear ultrasonic transducer arrays have been widely studied for photoacoustic computed tomography (PACT). As linear-array PACT suffers from a limited view, full-view imaging requires either the transducer or the object to be rotated. So far, both the central frequencies and bandwidth of linear transducer arrays applied in full-view PACT are low, limiting the spatial resolutions of the reconstructed images. Here, we present a multiview high-frequency PACT imaging system implemented with a commercial 40-MHz central frequency linear transducer array. By rotating the object through multiple angles with respect to the linear transducer array, we acquired full-view photoacoustic pressure measurements. Further, to quantify the unipolar initial pressures and overcome the limitations of the single-view Hilbert transformation, we developed a multiview Hilbert transformation method. The in-plane spatial resolution of this full-view linear-array PACT was quantified to be isotropically 60  μm within a 10×10  mm² field of view. The system was demonstrated by imaging both a leaf skeleton and a zebrafish in vivo.

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          Author and article information

          Journal
          J Biomed Opt
          Journal of biomedical optics
          SPIE-Intl Soc Optical Eng
          1560-2281
          1083-3668
          Jun 2015
          : 20
          : 6
          Affiliations
          [1 ] Washington University in St. Louis, Department of Biomedical Engineering, Optical Imaging Laboratory, One Brookings Drive, St. Louis, Missouri 63130, United States.
          Article
          2375483
          10.1117/1.JBO.20.6.066010
          4481023
          26112369
          7f8cea20-2330-405b-988b-58d32408a143
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