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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >The effect of amplitude modulation on subharmonic imaging with chirp excitation
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The effect of amplitude modulation on subharmonic imaging with chirp excitation

机译:调幅对线性调频激发次谐波成像的影响

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Subharmonic generation from ultrasound contrast agents depends on the spectral and temporal properties of the excitation signal. The subharmonic response can be improved by using wideband and long-duration signals. However, for sinusoidal tone-burst excitation, the effective bandwidth of the signal is inversely proportional to the signal duration. Linear frequency-modulated (LFM) and nonlinear frequencymodulated (NLFM) chirp excitations allow independent control over the signal bandwidth and duration; therefore, in this study LFM and NLFM signals were used for the insonation of microbubble populations. The amplitude modulation of the excitation waveform was achieved by applying different window functions. A customized window was designed for the NLFM chirp excitation by focusing on reducing the spectral leakage at the subharmonic frequency and increasing the subharmonic generation from microbubbles. Subharmonic scattering from a microbubble population was measured for various excitation signals and window functions. At a peak negative pressure of 600 kPa, the generated subharmonic energy by ultrasound contrast agents was 15.4 dB more for NLFM chirp excitation with 40% fractional bandwidth when compared with tone-burst excitation. For this reason, the NLFM chirp with a customized window was used as an excitation signal to perform subharmonic imaging in an ultrasound flow phantom. Results showed that the NLFM waveform with a customized window improved the subharmonic contrast by 4.35 1; 0.42 dB on average over a Hann-windowed LFM excitation.
机译:超声造影剂产生的次谐波取决于激励信号的频谱和时间特性。通过使用宽带和长时间信号,可以改善亚谐波响应。但是,对于正弦音调突发,信号的有效带宽与信号持续时间成反比。线性调频(LFM)和非线性调频(NLFM)线性调频激励可独立控制信号带宽和持续时间;因此,在这项研究中,LFM和NLFM信号用于声波微泡种群。激励波形的幅度调制通过应用不同的窗函数来实现。针对NLFM线性调频激励设计了定制窗口,其重点是减少次谐波频率下的频谱泄漏并增加微气泡产生的次谐波。测量了来自微气泡群的次谐波散射的各种激发信号和窗口函数。在峰值负压为600 kPa时,与超声猝发激发相比,超声振动剂对于具有40%分数带宽的NLFM线性调频激发产生的亚谐波能量要高15.4 dB。因此,具有定制窗口的NLFM线性调频脉冲被用作激励信号,以在超声流模型中执行次谐波成像。结果表明,带有定制窗口的NLFM波形将亚谐波对比度提高了4.35 1;在汉恩窗式LFM激励下平均为0.42 dB。

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