Literature DB >> 30040621

Background Removal and Vessel Filtering of Noncontrast Ultrasound Images of Microvasculature.

Mahdi Bayat, Mostafa Fatemi, Azra Alizad.   

Abstract

OBJECTIVE: Recent advances in ultrasound Doppler imaging have made it possible to visualize small vessels with diameters near the imaging resolution limits using spatiotemporal singular value thresholding of long ensembles of ultrasound data. However, vessel images derived based on this method present severe intensity variations and additional background noise that limits visibility and subsequent processing such as centerline extraction and morphological analysis. The goal of this paper is to devise a method to enhance vessel-background separation directly on the power Doppler images by exploiting blood echo-noise independence.
METHOD: We present a two-step algorithm to mitigate these adverse effects when using singular value thresholding for obtaining gross vasculature images. Our method comprises a morphological-based filtering for removing global and local background signals and a multiscale Hessian-based vessel enhancement filtering to further improve the vascular structures. We applied our method for in vivo imaging of the microvasculature of kidney in one healthy subject, liver in five healthy subjects, thyroid nodules in five patients, and breast tumors in five patients.
RESULTS: Singular value thresholding, top-hat filtering, and Hessian-based vessel enhancement filtering each provided an average peak-to-side level gain of 1.11, 18.55, and 2.26 dB, respectively, resulting in an overall gain of 21.92 dB when compared to the conventional power Doppler imaging using infinite impulse response filtering.
CONCLUSION: Singular value thresholding combined with morphological and Hessian-based vessel enhancement filtering provides a powerful tool for visualization of the deep-seated small vessels using long ultrasound echo ensembles without requiring any type of contrast enhancing agents. SIGNIFICANCE: This method provides a fast and cost-effective modality for in vivo assessment of the microvasculature suitable for both clinical and preclinical applications.

Entities:  

Mesh:

Year:  2018        PMID: 30040621      PMCID: PMC7768787          DOI: 10.1109/TBME.2018.2858205

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  21 in total

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5.  Ultrasound Small Vessel Imaging With Block-Wise Adaptive Local Clutter Filtering.

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Review 6.  Angiogenesis and tumor metastasis.

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9.  Automatic dissociation between microvasculature and larger vessels for ultrasound contrast imaging.

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  10 in total

1.  Quantification of Morphological Features in Non-Contrast-Enhanced Ultrasound Microvasculature Imaging.

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Journal:  IEEE Access       Date:  2020-01-21       Impact factor: 3.367

2.  Adaptive background noise bias suppression in contrast-free ultrasound microvascular imaging.

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3.  Independent Component-Based Spatiotemporal Clutter Filtering for Slow Flow Ultrasound.

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4.  Dynamic Filtering of Adherent and Non-adherent Microbubble Signals Using Singular Value Thresholding and Normalized Singular Spectrum Area Techniques.

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5.  Ultrasound high-definition microvasculature imaging with novel quantitative biomarkers improves breast cancer detection accuracy.

Authors:  Redouane Ternifi; Yinong Wang; Juanjuan Gu; Eric C Polley; Jodi M Carter; Sandhya Pruthi; Judy C Boughey; Robert T Fazzio; Mostafa Fatemi; Azra Alizad
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6.  Blood Flow Imaging in the Neonatal Brain Using Angular Coherence Power Doppler.

Authors:  Marko Jakovljevic; Byung Chul Yoon; Lotfi Abou-Elkacem; Dongwoon Hyun; You Li; Erika Rubesova; Jeremy J Dahl
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7.  Multidimensional Clutter Filtering of Aperture Domain Data for Improved Blood Flow Sensitivity.

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8.  Hybrid high-definition microvessel imaging/shear wave elastography improves breast lesion characterization.

Authors:  Juanjuan Gu; Redouane Ternifi; Mostafa Fatemi; Azra Alizad; Nicholas B Larson; Jodi M Carter; Judy C Boughey; Daniela L Stan; Robert T Fazzio
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Review 9.  Clutter suppression in ultrasound: performance evaluation and review of low-rank and sparse matrix decomposition methods.

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10.  Quantitative Biomarkers for Cancer Detection Using Contrast-Free Ultrasound High-Definition Microvessel Imaging: Fractal Dimension, Murray's Deviation, Bifurcation Angle & Spatial Vascularity Pattern.

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  10 in total

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