Improved Contrast-Enhanced Power Doppler Using a Coherence-Based Estimator.

Abstract:

:While plane-wave imaging can improve the performance of power Doppler by enabling much longer ensembles than systems using focused beams, the long-ensemble averaging of the zero-lag autocorrelation R(0) estimates does not directly decrease the mean noise level, but only decreases its variance. Spatial variation of the noise due to the time-gain compensation and the received beamforming aperture ultimately limits sensitivity. In this paper, we demonstrate that the performance of power Doppler imaging can be improved by leveraging the higher lags of the autocorrelation [e.g., R(1), R(2),…] instead of the signal power (R(0)). As noise is completely uncorrelated from pulse-to-pulse while the flow signal remains correlated significantly longer, weak signals just above the noise floor can be made visible through the reduction of the noise floor. Finally, as coherence decreases proportionally with respect to velocity, we demonstrate how signal coherence can be targeted to separate flows of different velocities. For instance, we show how long-time-range coherence of microbubble contrast-enhanced flow specifically isolates slow capillary perfusion (as opposed to conduit flow).

journal_name

IEEE Trans Med Imaging

authors

Tremblay-Darveau C,Bar-Zion A,Williams R,Sheeran PS,Milot L,Loupas T,Adam D,Bruce M,Burns PN

doi

10.1109/TMI.2017.2699672

subject

Has Abstract

pub_date

2017-09-01 00:00:00

pages

1901-1911

issue

9

eissn

0278-0062

issn

1558-254X

journal_volume

36

pub_type

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