Literature DB >> 31603778

Source Density Apodization: Image Artifact Suppression Through Source Pitch Nonuniformity.

Erwin J Alles, Adrien E Desjardins.   

Abstract

Conventional ultrasound imaging probes typically comprise finite-sized arrays of periodically spaced transducer elements which, in the case of phased arrays, can result in severe grating and sidelobe artifacts. Whereas side lobes can be effectively suppressed through amplitude apodization ("AmpA"), grating lobes arising from periodicity in transducer placement can only be suppressed by decreasing the element pitch, which is technologically challenging and costly. In this work, we present source density apodization ("SDA") as an alternative apodization scheme, where the spatial source density (and, hence, the element pitch) is varied across the imaging aperture. Using an all-optical ultrasound imaging setup capable of video-rate 2-D imaging as well as dynamic and arbitrary reconfiguration of the source array geometry, we show both numerically and experimentally how SDA and AmpA are equivalent for large numbers of sources. For low numbers of sources, SDA is shown to yield superior image quality as both side and grating lobes are effectively suppressed. In addition, we demonstrate how asymmetric SDA schemes can be used to locally and dynamically improve the image quality. Finally, we demonstrate how a nonsmoothly varying spatial source density (such as that obtained for randomized arrays or in the presence of source positioning uncertainty or inaccuracy) can yield severe image artifacts. The application of SDA can, thus, yield high image quality even for low channel counts, which can ultimately result in higher imaging frame rates using acquisition systems of reduced complexity.

Entities:  

Year:  2019        PMID: 31603778      PMCID: PMC7049469          DOI: 10.1109/TUFFC.2019.2945636

Source DB:  PubMed          Journal:  IEEE Trans Ultrason Ferroelectr Freq Control        ISSN: 0885-3010            Impact factor:   2.725


  15 in total

1.  Phased array element shapes for suppressing grating lobes.

Authors:  F Joseph Pompei; Shi-Chang Wooh
Journal:  J Acoust Soc Am       Date:  2002-05       Impact factor: 1.840

2.  Rapid calculations of time-harmonic nearfield pressures produced by rectangular pistons.

Authors:  Robert J McGough
Journal:  J Acoust Soc Am       Date:  2004-05       Impact factor: 1.840

3.  Density-tapered spiral arrays for ultrasound 3-D imaging.

Authors:  Alessandro Ramalli; Enrico Boni; Alessandro Stuart Savoia; Piero Tortoli
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2015-08       Impact factor: 2.725

4.  Element shape design of 2-D CMUT arrays for reducing grating lobes.

Authors:  Vito Bavaro; Giosuè Caliano; Massimo Pappalardo
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2008-02       Impact factor: 2.725

5.  Characterization of a broadband all-optical ultrasound transducer-from optical and acoustical properties to imaging.

Authors:  Yang Hou; Jin-Sung Kim; Sheng-Wen Huang; S Ashkenazi; L J Guo; M O'Donnell
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2008-08       Impact factor: 2.725

6.  A sensitive optical micro-machined ultrasound sensor (OMUS) based on a silicon photonic ring resonator on an acoustical membrane.

Authors:  S M Leinders; W J Westerveld; J Pozo; P L M J van Neer; B Snyder; P O'Brien; H P Urbach; N de Jong; M D Verweij
Journal:  Sci Rep       Date:  2015-09-22       Impact factor: 4.379

7.  Anatomically realistic ultrasound phantoms using gel wax with 3D printed moulds.

Authors:  Efthymios Maneas; Wenfeng Xia; Daniil I Nikitichev; Batol Daher; Maniragav Manimaran; Rui Yen J Wong; Chia-Wei Chang; Benyamin Rahmani; Claudio Capelli; Silvia Schievano; Gaetano Burriesci; Sebastien Ourselin; Anna L David; Malcolm C Finlay; Simeon J West; Tom Vercauteren; Adrien E Desjardins
Journal:  Phys Med Biol       Date:  2018-01-05       Impact factor: 3.609

8.  Optical fiber ultrasound transmitter with electrospun carbon nanotube-polymer composite.

Authors:  Radhika K Poduval; Sacha Noimark; Richard J Colchester; Thomas J Macdonald; Ivan P Parkin; Adrien E Desjardins; Ioannis Papakonstantinou
Journal:  Appl Phys Lett       Date:  2017-06-01       Impact factor: 3.791

9.  Experimental 3-D Ultrasound Imaging with 2-D Sparse Arrays using Focused and Diverging Waves.

Authors:  Emmanuel Roux; François Varray; Lorena Petrusca; Christian Cachard; Piero Tortoli; Hervé Liebgott
Journal:  Sci Rep       Date:  2018-06-14       Impact factor: 4.379

10.  Video-rate all-optical ultrasound imaging.

Authors:  Erwin J Alles; Sacha Noimark; Efthymios Maneas; Edward Z Zhang; Ivan P Parkin; Paul C Beard; Adrien E Desjardins
Journal:  Biomed Opt Express       Date:  2018-07-02       Impact factor: 3.732

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