Literature DB >> 27824565

Visualization of Small-Diameter Vessels by Reduction of Incoherent Reverberation With Coherent Flow Power Doppler.

You Leo Li, Dongwoon Hyun, Lotfi Abou-Elkacem, Juergen Karl Willmann, Jeremy J Dahl.   

Abstract

Power Doppler (PD) imaging is a widely used technique for flow detection. Despite the wide use of Doppler ultrasound, limitations exist in the ability of Doppler ultrasound to assess slow flow in the small-diameter vasculature, such as the maternal spiral arteries and fetal villous arteries of the placenta and focal liver lesions. The sensitivity of PD in small vessel detection is limited by the low signal produced by slow flow and the noise associated with small vessels. The noise sources include electronic noise, stationary or slowly moving tissue clutter, reverberation clutter, and off-axis scattering from tissue, among others. In order to provide more sensitive detection of slow flow in small diameter vessels, a coherent flow imaging technique, termed coherent flow PD (CFPD), is characterized and evaluated with simulation, flow phantom experiment studies, and an in vivo animal small vessel detection study. CFPD imaging was introduced as a technique to detect slow blood flow. It has been demonstrated to detect slow flow below the detection threshold of conventional PD imaging using identical pulse sequences and filter parameters. In this paper, we compare CFPD with PD in the detection of blood flow in small-diameter vessels. The results from the study suggest that CFPD is able to provide a 7.5-12.5-dB increase in the signal-to-noise ratio (SNR) over PD images for the same physiological conditions and is less susceptible to reverberation clutter and thermal noise. Due to the increase in SNR, CFPD is able to detect small vessels in high channel noise cases, for which PD was unable to generate enough contrast to observe the vessel.

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Year:  2016        PMID: 27824565      PMCID: PMC5154731          DOI: 10.1109/TUFFC.2016.2616112

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


  37 in total

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4.  Coherent flow power Doppler (CFPD): flow detection using spatial coherence beamforming.

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Journal:  IEEE Trans Ultrason Ferroelectr Freq Control       Date:  2015-06       Impact factor: 2.725

5.  Ultrafast Doppler reveals the mapping of cerebral vascular resistivity in neonates.

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Authors:  E Jauniaux; D Jurkovic; S Campbell
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9.  Reverberation clutter from subcutaneous tissue layers: simulation and in vivo demonstrations.

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3.  Angular coherence in ultrasound imaging: Theory and applications.

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4.  Combining Slow Flow Techniques With Adaptive Demodulation for Improved Perfusion Ultrasound Imaging Without Contrast.

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5.  Adaptive Clutter Demodulation for Non-Contrast Ultrasound Perfusion Imaging.

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6.  A Spatial Coherence Beamformer Design for Power Doppler Imaging.

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7.  Blood Flow Imaging in the Neonatal Brain Using Angular Coherence Power Doppler.

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8.  Real-Time In Vivo Imaging of Human Liver Vasculature Using Coherent Flow Power Doppler: A Pilot Clinical Study.

Authors:  You Leo Li; Dongwoon Hyun; Jessica Ducey-Wysling; Isabelle Durot; Aurelie D'Hondt; Bhavik Natvar Patel; Jeremy J Dahl
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9.  Simultaneous Noise Suppression and Incoherent Artifact Reduction in Ultrafast Ultrasound Vascular Imaging.

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