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在更高谐波下提高了与组织的对比度比。

Improved contrast to tissue ratio at higher harmonics.

作者信息

Bouakaz Ayache, Frigstad Sigmund, Ten Cate Folkert J, de Jong Nico

机构信息

Experimental Echocardiography, Erasmus University Rotterdam, Thoraxcentre, The Netherlands.

出版信息

Ultrasonics. 2002 May;40(1-8):575-8. doi: 10.1016/s0041-624x(02)00172-5.

Abstract

The challenge in ultrasound contrast imaging is a better discrimination between the perfused tissue and the contrast bubbles, which is usually expressed by contrast to tissue ratio (CTR). Imaging based on the second harmonic frequency showed a higher CTR than imaging at the fundamental frequency. However, because of nonlinear propagation of ultrasound waves, harmonic frequencies are generated. These harmonic frequencies will be linearly reflected by the tissue and therefore limit the CTR at the second harmonic frequency. In order to reduce the scattering of tissue at harmonic frequencies and by that increase the CTR, nonlinear distortion has to be reduced. We demonstrate in this study that the CTR increases with the harmonic number. The increase is substantial when transmitting at lower frequencies. To take advantage of the higher harmonics (third, fourth, fifth and the ultraharmonics and termed here super harmonics), we have developed a new phased array transducer with a wide frequency band. In-vitro measurements using the new probe show an increase of 40 dB of the CTR for super harmonic components over the conventional second harmonic system. The increase in CTR is in agreement with the calculations using existing models for the response of encapsulated bubbles and known theory of nonlinear propagation.

摘要

超声造影成像面临的挑战在于如何更好地区分灌注组织和造影微泡,这通常用组织对比率(CTR)来表示。基于二次谐波频率的成像显示出比基波频率成像更高的CTR。然而,由于超声波的非线性传播,会产生谐波频率。这些谐波频率会被组织线性反射,因此限制了二次谐波频率下的CTR。为了减少组织在谐波频率下的散射,从而提高CTR,必须降低非线性失真。我们在本研究中证明,CTR随谐波次数增加而增加。在较低频率发射时,这种增加很显著。为了利用更高的谐波(第三、第四、第五谐波以及这里称为超谐波的超高频谐波),我们开发了一种具有宽频带的新型相控阵换能器。使用新探头进行的体外测量显示,与传统二次谐波系统相比,超谐波分量的CTR增加了40 dB。CTR的增加与使用现有封装微泡响应模型和已知非线性传播理论的计算结果一致。

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