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Contrast-agent detection using orthogonal decoding with pulse-inversion harmonic suppression in Hadamard-encoded multi-pulses (HEM) transmission

机译:Hadamard编码多脉冲(HEM)传输中使用正交解码和脉冲反转谐波抑制的造影剂检测

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Hadamard-encoded multi-pulses (HEM) transmit has recently been utilized for tissue background suppression in ultrasound contrast imaging to enhance contrast-to-tissue ratio (CTR). Nonetheless, second harmonic component in HEM transmit results in residual tissue background after decoding and thus compromises detection of contrast microbubbles. Theoretically, high-order HEM transmit can produce harmonic-free background but the memory effect which considers the nonlinear contribution of previous bit waveform into next one in the progress of harmonic generation may limit the achievable tissue suppression. In this study, three possible harmonic-free pairs using time-shifted subtraction (SH1, SH2 and SH3) in the fourth-order Hadamard decoding are analyzed and experimentally compared using hydrophone measurement and B-mode imaging. Moreover, orthogonal decoding of HEM transmit is also proposed with pulse-inversion harmonic suppression (PIHS) to remedy memory effect on tissue background. Results shows that SH3, which utilizes the third and the fourth rows for decoding, provides the lowest magnitude of tissue background among all possible decoding pairs and performs comparably to the reference pulse inversion and amplitude modulation (PIAM) sequence in terms of CTR. For PIHS orthogonal decoding, the pulse subtraction effectively removes the harmonic interferences from memory effect and thus further improves the CTR by 5.4 dB compared to SH3. For high-order HEM transmit, PIHS orthogonal decoding can help to eliminate residual tissue background due to memory effect and is comparable to Hadamard decoding in temporal resolution and possible motion artifacts.
机译:Hadamard编码的多脉冲(HEM)传输最近已被用于超声对比成像中的组织背景抑制,以增强对比组织比率(CTR)。但是,HEM传输中的二次谐波分量会在解码后导致残留的组织背景,从而损害了对对比度微气泡的检测。从理论上讲,高阶HEM传输可以产生无谐波的背景,但考虑到谐波生成过程中前一个位波形对下一个位波形的非线性贡献的记忆效应可能会限制可实现的组织抑制。在这项研究中,使用水听器测量和B模式成像对四阶Hadamard解码中使用时移减法的三个可能的无谐波对(SH1,SH2和SH3)进行了分析和实验比较。此外,还提出了HEM传输的正交解码和脉冲反转谐波抑制(PIHS),以弥补对组织背景的记忆效应。结果表明,SH3利用第三和第四行进行解码,在所有可能的解码对中提供最低的组织背景强度,并且在CTR方面与参考脉冲反转和幅度调制(PIAM)序列相当。对于PIHS正交解码,脉冲减法有效地消除了记忆效应带来的谐波干扰,因此与SH3相比,CTR进一步提高了5.4 dB。对于高阶HEM传输,PIHS正交解码可以帮助消除由于记忆效应引起的残留组织背景,并且在时间分辨率和可能的运动伪影方面可与Hadamard解码相媲美。

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