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Chirp reversal power modulation contrast imaging

机译:rp反向功率调制对比成像

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Chirp excitations are known to increase significantly the signal to noise ratio (SNR). Besides, we have shown in a previous study that chirp reversal (CR) approach improves the contrast detection through an increased contrast to tissue ratio (CTR). The aim of this study is to evaluate the combination of chirp reversal with power modulation (CRPM) for contrast agent imaging. Experiments were performed using a 128 elements PZT linear array probe centered at 4 MHz. The probe was connected to a fully programmable open scanner equipped with analog transmitters. Chirped signals and pulses were transmitted at 2.5 MHz with 55% bandwidth. A flow phantom was used in which SonoVue® microbubbles at a dilution of 1/2000 was introduced. RF data were recorded and then filtered using a matched filter in order to compress the scattered signals and to recover the axial resolution when chirps were used. Traditional multi-excitations schemes such as pulse inversion (PI), power modulation (PM) and their combination PIPM were implemented using pulses and chirps with or without chirp reversal approach. The use of chirp increases significantly the SNR without degrading the CTR. Compared to other methods, the combination of CR and PM increases both the CTR and the SNR. For example, the CTR using CRPM is 25.3 dB while PM alone and CR alone provided a CTR of 18.7 dB and 21.8 dB respectively.
机译:已知线性调频激励会显着提高信噪比(SNR)。此外,我们在先前的研究中表明,线性调频反转(CR)方法可通过提高对比度与组织比率(CTR)来改善对比度检测。这项研究的目的是评估contrast反转与功率调制(CRPM)的结合,以用于造影剂成像。使用以4 MHz为中心的128个PZT线性阵列探针进行实验。探头连接到配有模拟变送器的完全可编程的开放式扫描仪。 2.5信号和脉冲在2.5 MHz上以55%的带宽传输。使用了一种流动体模,其中引入了稀释度为1/2000的SonoVue ®微气泡。记录射频数据,然后使用匹配的滤波器进行滤波,以便压缩散射信号并在使用线性调频信号时恢复轴向分辨率。传统的多激励方案,例如脉冲反转(PI),功率调制(PM)及其组合PIPM是使用带有或不带有线性调频反向方法的脉冲和线性调频实现的。线性调频脉冲的使用可显着提高SNR,而不会降低CTR。与其他方法相比,CR和PM的组合可同时提高CTR和SNR。例如,使用CRPM的CTR为25.3 dB,而仅PM和CR单独提供的CTR分别为18.7 dB和21.8 dB。

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