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Design of chirp excitation waveform for dual-frequency harmonic contrast detection

机译:用于双频谐波对比检测的线性调频激励波形设计

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Tissue background suppression is essential for harmonic detection of ultrasonic contrast microbubbles. To reduce the tissue harmonic amplitude for improvement of contrast-to-tissue ratio (CTR), the method of third harmonic (3f0) transmit phasing uses an additional 3f0 transmit signal to provide mutual cancellation between the frequency-sum component and the frequency-difference component of tissue harmonic signal. Chirp excitation can further improve the SNR in harmonic imaging without requiring an excessive transmit pressure and thus reduce potential bubble destruction. However, for effective suppression of tissue harmonic background in 3f0 transmit phasing, the 3f0 chirp waveform has to be carefully designed for the generation of spectrally matched cancellation pairs over the entire second harmonic band. In this study, we proposed a chirp waveform suitable for the method of 3f0 transmit phasing, the different-bandwidth chirp signal (DBCS). With the DBCS waveform, the frequency-difference component of tissue harmonic signal becomes a chirp signal similar to its frequency-sum counterpart. Thus, the combination of the DBCS waveform with the 3f0 transmit phasing can markedly suppress the tissue harmonic amplitude for CTR improvement together with effective SNR increase of contrast harmonic signal. Our results indicate that, as compared with the conventional Gaussian pulse, the DBCS waveform can provide 6-dB improvement of SNR in 3f0 transmit phasing with a CTR increase of 3 dB. Nevertheless, the limitation of available transmit bandwidth and the frequency-dependent attenuation can degrade the performance of the DBCS waveform in tissue suppression. The design of the DBCS waveform is also applicable to other dual-frequency imaging techniques that rely on the harmonic generation at the difference frequency.
机译:组织背景抑制对于超声造影微气泡的谐波检测至关重要。为了降低组织谐波幅度以改善组织对比度(CTR),三次谐波(3f0)发射定相方法使用附加的3f0发射信号来提供频率和分量与频率差之间的相互抵消组织谐波信号的分量。线性调频激励可以进一步改善谐波成像中的信噪比,而无需过多的发射压力,从而减少了潜在的气泡破坏。但是,为了有效抑制3f0发射相位中的组织谐波背景,必须精心设计3f0线性调频波形,以在整个第二谐波频带上生成频谱匹配的抵消对。在这项研究中,我们提出了一种适合3f0发射定相方法的线性调频波形,即不同带宽的线性调频信号(DBCS)。对于DBCS波形,组织谐波信号的频差分量变为类似于其频率总和的线性调频信号。因此,将DBCS波形与3f0发射定相相结合,可以显着抑制组织谐波幅度,以提高CTR,同时可以有效提高对比度谐波信号的SNR。我们的结果表明,与传统的高斯脉冲相比,DBCS波形在3f0发射相位中的SNR可以提高6 dB,CTR可以提高3 dB。但是,可用传输带宽和频率相关衰减的限制会降低组织抑制中DBCS波形的性能。 DBCS波形的设计还适用于依赖于差频处谐波产生的其他双频成像技术。

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