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Research on processing methods to improve the signal-to-noise ratio of a magnetoacoustic signal

机译:提高磁声信号信噪比的加工方法研究

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Objective: Magnetoacoustic imaging provides valuable information for monitoring bioelectricity and early tumor diagnosis. However, the low signal-to-noise ratio (SNR) of the magnetoacoustic signal, resulting from the single pulsed excitation, limits the imaging quality. A signal processing method of frequency coding excitation is proposed to increase the SNR of the magnetoacoustic signal.Methods: Chirp signal frequency coding is studied by simulation. M-sequence phase coding and wave averaging are also adopted in the studies. The experiments are conducted using a phantom of beef and fat with embedded copper rings. Two evaluation parameters, SNR improvement per unit pulse duration and SNR improvement per unit pulse duration per unit time, as well as the processing speed, are proposed to evaluate the SNR improvement.Results: The results show that the frequency coding approach can rapidly improve the SNR of the magnetoacoustic signal as well as phase coding excitation, compared with the wave averaging approach.Conclusions: A method of combining the coding and waveform averaging to improve the SNR of magnetoacoustic signal has been developed. A higher SNR improvement in the magnetoacoustic signal, up to 235x, with a short processing time of 0.867 s, can be obtained.Significance: This study provides an effective method to improve the SNR in magnetoacoustic imaging. (C) 2020 Elsevier Ltd. All rights reserved.
机译:目的:磁音成像提供了监测生物电和早期肿瘤诊断的宝贵信息。然而,由单脉冲激励导致的磁声信号的低信噪比(SNR)限制了成像质量。提出了一种频率编码激励的信号处理方法来增加磁声信号的SNR.方法:通过模拟研究了啁啾信号频率编码。在研究中还采用了M-SECALES阶段编码和波平均。使用嵌入式铜环使用牛肉和脂肪的幽灵进行实验。每个单位脉冲持续时间的两个评估参数,每单位脉冲持续时间和每单位脉冲持续时间的SNR改善,以及处理速度,以及处理速度,以评估SNR改进。结果表明,频率编码方法可以快速改善与波平均方法相比,磁音信号的SNR以及相位编码激发。结论:已经开发了一种组合编码和波形平均来改善磁音信号SNR的方法。可以获得高达235倍的磁声信号的较高的SNR改善,并且可以获得0.867秒的短处理时间。皆知:本研究提供了一种改善磁声成像中SNR的有效方法。 (c)2020 elestvier有限公司保留所有权利。

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