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Biomedical subjects

M Grevillot

Publications and source records attributed to M Grevillot.

2 recordsLinked to original sources

Combining phase and energy detection with mathematical morphology in dual time-frequency representation leads to improved SSP noise robustness.

In this paper a fusion algorithm for the detection of specular echoes blurred by coloured Gaussian noise is proposed. The phase and energy criteria, characteristic of these echoes, are handled separately. First, the detection capabilities of split spectrum (phase) and short time Fourier transform spectrogram (energy) are compared theoretically and experimentally. Second, the new algorithm based on mathematical morphology operators using both time-frequency representations is proposed. In the last part our method is shown to be more robust than absolute minimisation split spectrum processing.

Algorithms↗

Two approaches to multiple specular echo detection using split spectrum processing: moving bandwidth minimization and mathematical morphology.

A split spectrum processing technique using a novel moving bandwidth minimization (MBM) method was developed to detect multiple specular targets having different spectral characteristics. Mathematical morphology (MM) algorithms were also implemented in order to compare the results. An experimental approach to optimal parameter determination is described. These non-linear filtering methods are applied to medical in vivo imaging to illustrate specular detection and signal to noise ratio (SNR) enhancement.

Algorithms↗