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使用双频 SURF 成像技术传输适应混响噪声抑制的波束。

Transmit beams adapted to reverberation noise suppression using dual-frequency SURF imaging.

机构信息

Dept. of Circulation & Imaging, Norwegian Univ. of Sci. & Technol., Trondheim, Norway.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Oct;56(10):2124-33. doi: 10.1109/TUFFC.2009.1295.

Abstract

A method that uses dual-frequency pulse complexes of widely separated frequency bands to suppress noise caused by multiple scattering or multiple reflections in medical ultrasound imaging is presented. The excitation pulse complexes are transmitted to generate a second order ultrasound field (SURF) imaging synthetic transmit beam. This beam has reduced amplitude near the transducer, which illustrates the multiple scattering suppression ability of the imaging method. Field simulations solving a nonlinear wave equation are used to calculate SURF imaging beams, which are compared with beams for pulse inversion (PI) and fundamental imaging. In addition, a combined SURF and PI beam generation is described and compared with the beams mentioned above. A quality ratio, relating the energy within the near-field to that within the imaging region, is defined and used to score the multiple scattering and multiple reflection suppression abilities when imaging with the different beams. The realized combined SURF-PI beam scores highest, followed by SURF, PI (that score equally well), and the fundamental. The amplitude in the imaging region and therefore also the SNR is highest for the fundamental followed by SURF, PI, and SURF-PI. The work hence indicates that when substituting PI for SURF, one may trade increased SNR into use of increased imaging frequencies without loss of multiple scattering and multiple reflection noise suppression.

摘要

提出了一种利用双频脉冲串在宽频带上的组合来抑制医学超声成象中多次散射或多次反射引起的噪声的方法。激励脉冲串被发射以产生二次超声场(SURF)成象合成发射束。该波束在换能器附近的振幅减小,这说明了该成象方法的多次散射抑制能力。用场求解非线性波动方程的模拟来计算 SURF 成象束,并与脉冲反演(PI)和基本成象束进行比较。此外,还描述了一种 SURF 和 PI 联合波束的产生,并与上述波束进行了比较。定义了一个质量比,它将近场中的能量与成象区域中的能量联系起来,用于对不同波束成象时的多次散射和多次反射抑制能力进行评分。实现的联合 SURF-PI 波束得分最高,其次是 SURF、PI(得分相同)和基本。对于基本,在成像区域中的振幅,因此 SNR 也是最高的,其次是 SURF、PI 和 SURF-PI。因此,当用 PI 代替 SURF 时,在不损失多次散射和多次反射噪声抑制的情况下,可以用增加的成像频率来换取增加的 SNR。

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