Compensation of Frequency-Dependent Attenuation for Tissue Harmonic Pulse Compression Imaging

N. Tagawa, Takuya Hiraoka, I. Akiyama
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引用次数: 1

Abstract

Tissue harmonic imaging (THI) is highly effective for correct diagnosis. On the other hand, pulse compression is often used in a radar system and an ultrasound imaging system to perform high SNR measurement. Therefore, the performance of pulse compression of tissue harmonic imaging is required to be improved. The frequency-dependent attenuation (FDA) is a crucial problem in medical tissue imaging. In the pulse compression imaging, the deterioration of echoes by the FDA lowers the performance of a matched filtering using an ideal transmitted pulse as a template signal. Since, especially in the harmonic imaging, higher-frequency components are used for imaging than the fundamental imaging, the compensation of the FDA is strongly important for high-definition imaging. In this study, we examine a method to reduce the influence of the FDA on harmonics.
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组织谐波脉冲压缩成像的频率相关衰减补偿
组织谐波成像(THI)对正确诊断非常有效。另一方面,脉冲压缩常用于雷达系统和超声成像系统中进行高信噪比测量。因此,需要提高组织谐波成像的脉冲压缩性能。频率相关衰减(FDA)是医学组织成像中的一个关键问题。在脉冲压缩成像中,FDA回波的恶化降低了使用理想传输脉冲作为模板信号的匹配滤波的性能。因为,特别是在谐波成像中,比基本成像使用更高频率的成分进行成像,FDA的补偿对于高清成像非常重要。在本研究中,我们研究了一种减少FDA对谐波影响的方法。
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