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Third harmonic imaging using pulse inversion

机译:使用脉冲反转的三次谐波成像

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The pulse inversion (PI) technique can be utilized to separate and enhance harmonic components of a waveform for tissue harmonic imaging. While most ultrasound systems can perform pulse inversion, only few image the 3rd harmonic component. PI pulse subtraction can isolate and enhance the 3rd harmonic component for imaging on any ultrasound system capable of PI. PI was used to perform 3rd harmonic B-mode scans of a water-filled wire phantom on an experimental ultrasound system. The 3rd harmonic scans were compared to fundamental and 2nd harmonic scans on the same system. The 3rd harmonic image showed a 46% improvement in the lateral FWHM resolution compared to fundamental B-mode imaging at 75 mm depth and a 28% improvement compared to 2nd harmonic B-mode imaging. The axial FWHM resolution was improved by 35% and 30% for 3rd harmonic imaging compared to fundamental and 2nd harmonic imaging respectively. The improvements in spatial resolution and the fact that PI can isolate the 3rd harmonic suggest that it is advantageous to implement 3rd harmonic imaging on ultrasound systems capable of PI.
机译:可以使用脉冲反转(PI)技术来分离和增强用于组织谐波成像的波形的谐波分量。尽管大多数超声系统可以执行脉冲反转,但是只有很少的图像可以反映三次谐波分量。 PI脉冲减法可以隔离和增强三次谐波分量,以便在任何具有PI能力的超声系统上成像。 PI用于在实验超声系统上对充满水的金属体模执行三次谐波B模式扫描。将三次谐波扫描与同一系统上的基本和二次谐波扫描进行了比较。与在75 mm深度的基本B模式成像相比,三次谐波图像显示横向FWHM分辨率提高了46%,而与二次谐波B模式成像相比则提高了28%。与基本和二次谐波成像相比,三次谐波成像的轴向FWHM分辨率分别提高了35%和30%。空间分辨率的提高以及PI可以隔离三次谐波的事实表明,在具有PI能力的超声系统上实施三次谐波成像是有利的。

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