Radiofrequency ultrasound data acquisition with a 640-element array transducer for strain imaging: Experimental results with phantoms and biological tissue samples

This paper presents ultrasound elastography results obtained with a 640-element array transducer we have recently developed. This probe allows the acquisition of series of three adjacent imaging planes over time and therefore makes possible the computation of 2-D elastograms, with consideration of o...

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Vydané v:Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference Ročník 2017; s. 2996 - 2999
Hlavní autori: Brusseau, Elisabeth, Bernard, Adeline, Meynier, Cyril, Ferin, Guillaume, An Nguyen-Dinh, Basset, Olivier
Médium: Konferenčný príspevok.. Journal Article
Jazyk:English
Vydavateľské údaje: United States IEEE 01.07.2017
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ISSN:1557-170X, 2694-0604, 2694-0604
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Abstract This paper presents ultrasound elastography results obtained with a 640-element array transducer we have recently developed. This probe allows the acquisition of series of three adjacent imaging planes over time and therefore makes possible the computation of 2-D elastograms, with consideration of out-of-plane motion. In this study, elastography experiments were conducted on phantoms and bovine tissue samples, and compression was manually applied to the media via the hand-held ultrasound transducer. The results obtained with the proposed data acquisition and 3-D processing are presented and compared to those from a classical 2-D approach.
AbstractList This paper presents ultrasound elastography results obtained with a 640-element array transducer we have recently developed. This probe allows the acquisition of series of three adjacent imaging planes over time and therefore makes possible the computation of 2-D elastograms, with consideration of out-of-plane motion. In this study, elastography experiments were conducted on phantoms and bovine tissue samples, and compression was manually applied to the media via the hand-held ultrasound transducer. The results obtained with the proposed data acquisition and 3-D processing are presented and compared to those from a classical 2-D approach.
This paper presents ultrasound elastography results obtained with a 640-element array transducer we have recently developed. This probe allows the acquisition of series of three adjacent imaging planes over time and therefore makes possible the computation of 2-D elastograms, with consideration of out-of-plane motion. In this study, elastography experiments were conducted on phantoms and bovine tissue samples, and compression was manually applied to the media via the hand-held ultrasound transducer. The results obtained with the proposed data acquisition and 3-D processing are presented and compared to those from a classical 2-D approach.This paper presents ultrasound elastography results obtained with a 640-element array transducer we have recently developed. This probe allows the acquisition of series of three adjacent imaging planes over time and therefore makes possible the computation of 2-D elastograms, with consideration of out-of-plane motion. In this study, elastography experiments were conducted on phantoms and bovine tissue samples, and compression was manually applied to the media via the hand-held ultrasound transducer. The results obtained with the proposed data acquisition and 3-D processing are presented and compared to those from a classical 2-D approach.
Author Meynier, Cyril
An Nguyen-Dinh
Brusseau, Elisabeth
Bernard, Adeline
Ferin, Guillaume
Basset, Olivier
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  surname: Brusseau
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  organization: INSALyon, Univ. Claude Bernard Lyon 1, Lyon, France
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  surname: An Nguyen-Dinh
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  organization: Vermon, Tours, France
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  givenname: Olivier
  surname: Basset
  fullname: Basset, Olivier
  organization: INSALyon, Univ. Claude Bernard Lyon 1, Lyon, France
BackLink https://www.ncbi.nlm.nih.gov/pubmed/29060528$$D View this record in MEDLINE/PubMed
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Snippet This paper presents ultrasound elastography results obtained with a 640-element array transducer we have recently developed. This probe allows the acquisition...
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StartPage 2996
SubjectTerms Biological tissues
Elastography
Probes
Strain
Transducers
Ultrasonic imaging
Title Radiofrequency ultrasound data acquisition with a 640-element array transducer for strain imaging: Experimental results with phantoms and biological tissue samples
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