Literature DB >> 22559356

Non-linear inverse scattering: high resolution quantitative breast tissue tomography.

J Wiskin1, D T Borup, S A Johnson, M Berggren.   

Abstract

Recent published results in inverse scattering generally show the difficulty in dealing with moderate to high contrast inhomogeneities when employing linearized or iteratively linearized algorithms (e.g., distorted Born iterative method). This paper presents a fully nonlinear algorithm utilizing full wave field data, that results in ultrasound computed tomographic images from a laboratory breast scanner, and shows several such unique images from volunteer subjects. The forward problem, data collection process and inverse scattering algorithm used are discussed. A functional that represents the "best fit" between predicted and measured data is minimized, and therefore requires a very fast forward problem solver, Jacobian calculation, and gradient estimation, all of which are described. The data collection device is described. The algorithm and device yield quantitative estimates of human breast tissue in vivo. Several high resolution images, measuring ∼150 by 150 wavelengths, obtained from the 2D inverse scattering algorithms, using data collected from a first prototype, are shown and discussed. The quantitative values are compared with previous published work.

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Mesh:

Year:  2012        PMID: 22559356      PMCID: PMC3356315          DOI: 10.1121/1.3699240

Source DB:  PubMed          Journal:  J Acoust Soc Am        ISSN: 0001-4966            Impact factor:   1.840


  16 in total

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Journal:  J Acoust Soc Am       Date:  2000-09       Impact factor: 1.840

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Journal:  J Acoust Soc Am       Date:  2010-08       Impact factor: 1.840

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Journal:  Ultrasound Med Biol       Date:  2007-07-16       Impact factor: 2.998

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Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  1998       Impact factor: 2.725

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Journal:  J Acoust Soc Am       Date:  1997-08       Impact factor: 1.840

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  16 in total

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2.  A computerized tomography system for transcranial ultrasound imaging.

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Journal:  Proc Meet Acoust       Date:  2014

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5.  Regularized Dual Averaging Image Reconstruction for Full-Wave Ultrasound Computed Tomography.

Authors:  Thomas P Matthews; Kun Wang; Cuiping Li; Neb Duric; Mark A Anastasio
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2017-03-14       Impact factor: 2.725

6.  3-D Nonlinear Acoustic Inverse Scattering: Algorithm and Quantitative Results.

Authors:  J W Wiskin; D T Borup; E Iuanow; J Klock; Mark W Lenox
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2017-05-23       Impact factor: 2.725

7.  Waveform inversion with source encoding for breast sound speed reconstruction in ultrasound computed tomography.

Authors:  Kun Wang; Thomas Matthews; Fatima Anis; Cuiping Li; Neb Duric; Mark A Anastasio
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2015-03       Impact factor: 2.725

8.  Semi-anthropomorphic photoacoustic breast phantom.

Authors:  Maura Dantuma; Rianne van Dommelen; Srirang Manohar
Journal:  Biomed Opt Express       Date:  2019-10-29       Impact factor: 3.732

9.  Joint reconstruction of the initial pressure and speed of sound distributions from combined photoacoustic and ultrasound tomography measurements.

Authors:  Thomas P Matthews; Mark A Anastasio
Journal:  Inverse Probl       Date:  2017-11-08       Impact factor: 2.407

10.  Imaging Performance of Quantitative Transmission Ultrasound.

Authors:  Mark W Lenox; James Wiskin; Matthew A Lewis; Stephen Darrouzet; David Borup; Scott Hsieh
Journal:  Int J Biomed Imaging       Date:  2015-10-28
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