Literature DB >> 22972914

A 5-MHz cylindrical dual-layer transducer array for 3-D transrectal ultrasound imaging.

Yuling Chen1, Man Nguyen, Jesse T Yen.   

Abstract

Two-dimensional transrectal ultrasound (TRUS) is being used in guiding prostate biopsies and treatments. In many cases, the TRUS probes are moved manually or mechanically to acquire volumetric information, making the imaging slow, user dependent, and unreliable. A real-time three-dimensional (3-D) TRUS system could improve reliability and volume rates of imaging during these procedures. In this article, the authors present a 5-MHz cylindrical dual-layer transducer array capable of real-time 3-D transrectal ultrasound without any mechanically moving parts. Compared with fully sampled 2-D arrays, this design substantially reduces the channel count and fabrication complexity. This dual-layer transducer uses PZT elements for transmit and P[VDF-TrFE] copolymer elements for receive, respectively. The mechanical flexibility of both diced PZT and copolymer makes it practical for transrectal applications. Full synthetic aperture 3-D data sets were acquired by interfacing the transducer with a Verasonics Data Acquisition System. Offline 3-D beamforming was then performed to obtain volumes of two wire phantoms and a cyst phantom. Generalized coherence factor was applied to improve the contrast of images. The measured -6-dB fractional bandwidth of the transducer was 62% with a center frequency of 5.66 MHz. The measured lateral beamwidths were 1.28 mm and 0.91 mm in transverse and longitudinal directions, respectively, compared with a simulated beamwidth of 0.92 mm and 0.74 mm.

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Year:  2012        PMID: 22972914      PMCID: PMC3442955          DOI: 10.1177/0161734612453279

Source DB:  PubMed          Journal:  Ultrason Imaging        ISSN: 0161-7346            Impact factor:   1.578


  21 in total

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3.  3-Dimensional elastic registration system of prostate biopsy location by real-time 3-dimensional transrectal ultrasound guidance with magnetic resonance/transrectal ultrasound image fusion.

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Review 4.  Enhanced transrectal ultrasound modalities in the diagnosis of prostate cancer.

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5.  Efficient array beam forming by spatial filtering for ultrasound B-mode imaging.

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6.  Calculation of pressure fields from arbitrarily shaped, apodized, and excited ultrasound transducers.

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7.  EAU guidelines on prostate cancer. Part 1: screening, diagnosis, and treatment of clinically localised disease.

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Journal:  Eur Urol       Date:  2010-10-28       Impact factor: 20.096

8.  Clinical application of a 3D ultrasound-guided prostate biopsy system.

Authors:  Shyam Natarajan; Leonard S Marks; Daniel J A Margolis; Jiaoti Huang; Maria Luz Macairan; Patricia Lieu; Aaron Fenster
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9.  A dual-layer transducer array for 3-D rectilinear imaging.

Authors:  Jesse T Yen; Chi Hyung Seo; Samer I Awad; Jong S Jeong
Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2009-01       Impact factor: 2.725

10.  Volumetric tumor measurement using three-dimensional ultrasound: in vitro phantom study on measurement accuracy under various scanning conditions.

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Journal:  Ultrasound Med Biol       Date:  2004-01       Impact factor: 2.998

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  2 in total

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Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2015-12-04       Impact factor: 2.725

2.  Focused ultrasound to displace renal calculi: threshold for tissue injury.

Authors:  Yak-Nam Wang; Julianna C Simon; Bryan W Cunitz; Frank L Starr; Marla Paun; Denny H Liggitt; Andrew P Evan; James A McAteer; Ziyue Liu; Barbrina Dunmire; Michael R Bailey
Journal:  J Ther Ultrasound       Date:  2014-03-31
  2 in total

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