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Harmonic Vibro-Acoustography

机译:谐波振动声像图

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摘要

Vibro-acoustography is an imaging method that uses the radiation force of two interfering ultrasound beams of slightly different frequency to probe an object. An image is made using the acoustic emission resulted from the object vibration at the difference frequency. In this paper, the feasibility of imaging objects at twice the difference frequency (harmonic acoustic emission) is studied. Several possible origins of harmonic acoustic emission are explored. As an example, it is shown that microbubbles close to resonance can produce significant harmonic acoustic emission due to its high nonlinearity. Experiments demonstrate that, compared to the fundamental acoustic emission, harmonic acoustic emission greatly improves the contrast between microbubbles and other objects in vibro-acoustography (an improvement of 17-23 dB in these experiments). Applications of this technique include imaging the nonlinearity of the object and selective detection of microbubbles for perfusion imaging. The impact of microbubble destruction during the imaging process also is discussed.
机译:振动声光造影是一种成像方法,它使用频率略有不同的两个干扰超声波束的辐射力来探测物体。使用由于物体在不同频率下的振动而产生的声发射来制作图像。在本文中,研究了以两倍的差频(谐波声发射)对物体成像的可行性。探索了谐波声发射的几种可能的起源。作为一个例子,表明接近共振的微气泡由于其高度的非线性会产生大量的谐波声发射。实验表明,与基本声发射相比,谐波声发射极大地改善了振动声像图中微气泡与其他物体之间的对比度(在这些实验中提高了17-23 dB)。该技术的应用包括对物体的非线性成像以及对用于灌注成像的微气泡的选择性检测。还讨论了微泡破坏在成像过程中的影响。

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