• DocumentCode
    1138205
  • Title

    A study of two-dimensional array transducers for limited diffraction beams

  • Author

    Lu, Jian-Yu ; Greenleaf, James F.

  • Author_Institution
    Dept. of Physiol. & Biophys., Mayo Clinic, Rochester, MN, USA
  • Volume
    41
  • Issue
    5
  • fYear
    1994
  • Firstpage
    724
  • Lastpage
    739
  • Abstract
    The newly developed limited diffraction beams such as the Bessel beams and X waves have a large depth of field and approximate depth-independent property. They have possible applications in medical imaging, color Doppler imaging, tissue characterization, and nondestructive evaluation of materials, and in other wave related physical branches such as electromagnetics and optics. However, limited diffraction beams are currently produced with an annular array transducer that has to be steered mechanically. In this paper, we study the feasibility of steering these beams with a two-dimensional array, and show that there will be almost no distortion of beams if the effective aperture reduction of the array is properly compensated so that the beams have a constant transverse profile as they are steered. In addition, methods for reducing the complexity of the electronic multiplexing of the array elements are proposed. We also investigate the influences of the interelement distance and the size of array elements on the sidelobes and grating lobes of limited diffraction beams as the beams are steered. They are similar to those previously reported for conventional beams.<>
  • Keywords
    acoustic arrays; acoustic transducers; acoustic wave diffraction; Bessel beams; X waves; annular array transducer; aperture compensation; beam distortion; beam steering; color Doppler imaging; depth of field; electromagnetics; electronic multiplexing; grating lobes; limited diffraction beams; medical imaging; nondestructive evaluation; optics; sidelobes; tissue characterization; two-dimensional array transducers; Biological materials; Biomedical imaging; Biomedical optical imaging; Biomedical transducers; Electromagnetic diffraction; Electromagnetic scattering; Optical diffraction; Optical distortion; Optical imaging; Optical materials;
  • fLanguage
    English
  • Journal_Title
    Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-3010
  • Type

    jour

  • DOI
    10.1109/58.308509
  • Filename
    308509