Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.

3-D ultrasound imaging offers unique opportunities in the field of non destructive testing that cannot be easily found in A-mode and B-mode images. To acquire a 3-D ultrasound image without a mechanically moving transducer, a 2-D array can be used. The row column technique is preferred over a fully...

Full description

Bibliographic Details
Main Authors: Ibrahim Ben Daya, Albert I H Chen, Mohammad Javad Shafiee, Alexander Wong, John T W Yeow
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4676696?pdf=render
id doaj-ba27aea938544430b7ac7de9c14ca82b
record_format Article
spelling doaj-ba27aea938544430b7ac7de9c14ca82b2020-11-24T21:35:49ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011012e014281710.1371/journal.pone.0142817Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.Ibrahim Ben DayaAlbert I H ChenMohammad Javad ShafieeAlexander WongJohn T W Yeow3-D ultrasound imaging offers unique opportunities in the field of non destructive testing that cannot be easily found in A-mode and B-mode images. To acquire a 3-D ultrasound image without a mechanically moving transducer, a 2-D array can be used. The row column technique is preferred over a fully addressed 2-D array as it requires a significantly lower number of interconnections. Recent advances in 3-D row-column ultrasound imaging systems were largely focused on sensor design. However, these imaging systems face three intrinsic challenges that cannot be addressed by improving sensor design alone: speckle noise, sparsity of data in the imaged volume, and the spatially dependent point spread function of the imaging system. In this paper, we propose a compensated row-column ultrasound image reconstruction system using Fisher-Tippett multilayered conditional random field model. Tests carried out on both simulated and real row-column ultrasound images show the effectiveness of our proposed system as opposed to other published systems. Visual assessment of the results show our proposed system's potential at preserving detail and reducing speckle. Quantitative analysis shows that our proposed system outperforms previously published systems when evaluated with metrics such as Peak Signal to Noise Ratio, Coefficient of Correlation, and Effective Number of Looks. These results show the potential of our proposed system as an effective tool for enhancing 3-D row-column imaging.http://europepmc.org/articles/PMC4676696?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ibrahim Ben Daya
Albert I H Chen
Mohammad Javad Shafiee
Alexander Wong
John T W Yeow
spellingShingle Ibrahim Ben Daya
Albert I H Chen
Mohammad Javad Shafiee
Alexander Wong
John T W Yeow
Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.
PLoS ONE
author_facet Ibrahim Ben Daya
Albert I H Chen
Mohammad Javad Shafiee
Alexander Wong
John T W Yeow
author_sort Ibrahim Ben Daya
title Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.
title_short Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.
title_full Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.
title_fullStr Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.
title_full_unstemmed Compensated Row-Column Ultrasound Imaging System Using Fisher Tippett Multilayered Conditional Random Field Model.
title_sort compensated row-column ultrasound imaging system using fisher tippett multilayered conditional random field model.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description 3-D ultrasound imaging offers unique opportunities in the field of non destructive testing that cannot be easily found in A-mode and B-mode images. To acquire a 3-D ultrasound image without a mechanically moving transducer, a 2-D array can be used. The row column technique is preferred over a fully addressed 2-D array as it requires a significantly lower number of interconnections. Recent advances in 3-D row-column ultrasound imaging systems were largely focused on sensor design. However, these imaging systems face three intrinsic challenges that cannot be addressed by improving sensor design alone: speckle noise, sparsity of data in the imaged volume, and the spatially dependent point spread function of the imaging system. In this paper, we propose a compensated row-column ultrasound image reconstruction system using Fisher-Tippett multilayered conditional random field model. Tests carried out on both simulated and real row-column ultrasound images show the effectiveness of our proposed system as opposed to other published systems. Visual assessment of the results show our proposed system's potential at preserving detail and reducing speckle. Quantitative analysis shows that our proposed system outperforms previously published systems when evaluated with metrics such as Peak Signal to Noise Ratio, Coefficient of Correlation, and Effective Number of Looks. These results show the potential of our proposed system as an effective tool for enhancing 3-D row-column imaging.
url http://europepmc.org/articles/PMC4676696?pdf=render
work_keys_str_mv AT ibrahimbendaya compensatedrowcolumnultrasoundimagingsystemusingfishertippettmultilayeredconditionalrandomfieldmodel
AT albertihchen compensatedrowcolumnultrasoundimagingsystemusingfishertippettmultilayeredconditionalrandomfieldmodel
AT mohammadjavadshafiee compensatedrowcolumnultrasoundimagingsystemusingfishertippettmultilayeredconditionalrandomfieldmodel
AT alexanderwong compensatedrowcolumnultrasoundimagingsystemusingfishertippettmultilayeredconditionalrandomfieldmodel
AT johntwyeow compensatedrowcolumnultrasoundimagingsystemusingfishertippettmultilayeredconditionalrandomfieldmodel
_version_ 1725943819099176960