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A novel imaging method of coded THI using multi chirp signals

机译:多线性调频信号编码THI的一种新型成像方法

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In medical ultrasound imaging, tissue harmonic imaging (THI), coded excitation and a combination of both (coded THI) have been investigated by many researchers. In THI, a spectral overlap occurs between fundamental and harmonic components, and it makes axial resolution worse. Especially, the spectral overlap in coded THI causes a specific artifact which is caused by inappropriate cross-correlation between fundamental component of echo signal and the matched filter for harmonic. To avoid the spectral overlap, the pulse inversion (PI) method, which excites two phase-inverted pulses, has been used. However, the PI is sensitive to tissue motion. In coded excitation especially chirp, a longer coded signal enables a higher signal-to-noise ratio (SNR) imaging However, there is temporal overlap between a transmitted signal and echo signal from near region when the longer coded signal is used. The objective of this study is to realize high SNR and high axial resolution imaging by removing the time and the spectral overlaps existing in the coded THI.
机译:在医学超声成像中,许多研究人员已经研究了组织谐波成像(THI),编码激励和两者的组合(编码THI)。在THI中,基波分量和谐波分量之间会发生光谱重叠,这会使轴向分辨率变差。特别地,编码的THI中的频谱重叠导致特定的伪影,该伪影是由回波信号的基本分量与谐波的匹配滤波器之间的不合适的互相关引起的。为了避免频谱重叠,已经使用了激发两个相位反转脉冲的脉冲反转(PI)方法。但是,PI对组织运动敏感。在编码激励(特别是线性调频)中,较长的编码信号可实现更高的信噪比(SNR)成像。但是,当使用较长的编码信号时,发射信号和来自附近区域的回波信号之间会出现时间重叠。这项研究的目的是通过消除编码的THI中存在的时间和频谱重叠来实现高SNR和高轴向分辨率成像。

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