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Article Dans Une Revue Computational and Mathematical Methods in Medicine Année : 2013

Optimization of Contrast-to-Tissue Ratio by Adaptation of Transmitted Ternary Signal in Ultrasound Pulse Inversion Imaging

Résumé

Ultrasound contrast imaging has provided more accurate medical diagnoses thanks to the development of innovating modalities like the pulse inversion imaging. However, this latter modality that improves the contrast-to-tissue ratio (CTR) is not optimal, since the frequency is manually chosen jointly with the probe. However, an optimal choice of this command is possible but it requires precise information about the transducer and the medium which can be experimentally difficult to obtain, even inaccessible. It turns out that the optimization can become more complex by taking into account the kind of generators, since the generators of electrical signals in a conventional ultrasound scanner can be unipolar, bipolar or tripolar. Our aim was to seek the ternary command which maximized the CTR. By combining a genetic algorithm and a closed loop, the system automatically proposed the optimal ternary command. In simulation, the gain compared with the usual ternary signal could reach about 3.9 dB. Another interesting finding was that in contrast to what is generally accepted, the optimal command was not a fixed-frequency signal, but had harmonic components.
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Dates et versions

hal-00805020 , version 1 (08-11-2013)
hal-00805020 , version 2 (21-10-2014)

Identifiants

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Sébastien Ménigot, Jean-Marc Girault. Optimization of Contrast-to-Tissue Ratio by Adaptation of Transmitted Ternary Signal in Ultrasound Pulse Inversion Imaging. Computational and Mathematical Methods in Medicine, 2013, 2013, pp.6. ⟨10.1155/2013/297463⟩. ⟨hal-00805020v2⟩

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