IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control · 2021 · 49 citations · 26 references
Medical UltrasoundEngineeringBiomedical EngineeringNoise ReductionSimultaneous Noise SuppressionPower UltrasoundClutter FilteringNoiseVascular ImagingBlood Flow MeasurementBlock-wise Svd ClutterRadiologyHealth SciencesCardiovascular ImagingVascular ImageMedical ImagingIncoherent Artifact ReductionUltrasoundDigital Subtraction AngiographyBiomedical Imaging
Ultrasound vascular imaging based on ultrafast plane wave imaging and singular value decomposition (SVD) clutter filtering has demonstrated superior sensitivity in blood flow detection. However, ultrafast ultrasound vascular imaging is susceptible to electronic noise due to the weak penetration of unfocused waves, leading to a lower signal-to-noise ratio (SNR) at larger depths. In addition, incoherent clutter artifacts originating from strong and moving tissue scatterers that cannot be completely removed create a strong mask on top of the blood signal that obscures the vessels. Herein, a method that can simultaneously suppress the background noise and incoherent artifacts is proposed. The method divides the tilted plane or diverging waves into two subgroups. Coherent spatial compounding is performed within each subgroup, resulting in two compounded data sets. An SVD-based clutter filter is applied to each data set, followed by a correlation between the two data sets to produce a vascular image. Uncorrelated noise and incoherent artifacts can be effectively suppressed with the correlation process, while the coherent blood signal can be preserved. The method was evaluated in wire-target simulations and phantom, in which around 7-10-dB SNR improvement was shown. Consistent results were found in a flow channel phantom with improved SNR by the proposed method (39.9 ± 0.2 dB) against conventional power Doppler (29.1 ± 0.6 dB). Last, we demonstrated the effectiveness of the method combined with block-wise SVD clutter filtering in a human liver, breast tumor, and inflammatory bowel disease data sets. The improved blood flow visualization may facilitate more reliable small vessel imaging for a wide range of clinical applications, such as cancer and inflammatory diseases.
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Coherent plane-wave compounding for very high frame rate ultrasonography and transient elastography
Gabriel Montaldo, Mickaël Tanter, Jérémy Bercoff et al. · IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control · 2009 · 1.7K citations
Coherent Plane-wave Compounding, Medical Ultrasound, Engineering +13
Functional ultrasound imaging of the brain
Émilie Macé, Gabriel Montaldo, Ivan Cohen et al. · Nature Methods · 2011 · 732 citations · Full text
Neuroimaging Modality, Brain Mapping, Functional Ultrasound Imaging +6
Ultrafast compound imaging for 2-D motion vector estimation: application to transient elastography
Mickaël Tanter, Jérémy Bercoff, Laurent Sandrin et al. · IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control · 2002 · 397 citations
Biomedical Acoustics, Medical Ultrasound, Ultrafast Compound +19