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用于超高帧率超声成像和瞬态弹性成像的相干平面波复合技术。

Coherent plane-wave compounding for very high frame rate ultrasonography and transient elastography.

作者信息

Montaldo Gabriel, Tanter Mickaël, Bercoff Jérémy, Benech Nicolas, Fink Mathias

机构信息

Laboratoire Ondes et Acoustique, Ecole Supérieure de Physique et Chimie Industrielles (ESPCI), INSERM, Paris, France.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Mar;56(3):489-506. doi: 10.1109/TUFFC.2009.1067.

Abstract

The emergence of ultrafast frame rates in ultrasonic imaging has been recently made possible by the development of new imaging modalities such as transient elastography. Data acquisition rates reaching more than thousands of images per second enable the real-time visualization of shear mechanical waves propagating in biological tissues, which convey information about local viscoelastic properties of tissues. The first proposed approach for reaching such ultrafast frame rates consists of transmitting plane waves into the medium. However, because the beamforming process is then restricted to the receive mode, the echographic images obtained in the ultrafast mode suffer from a low quality in terms of resolution and contrast and affect the robustness of the transient elastography mode. It is here proposed to improve the beamforming process by using a coherent recombination of compounded plane-wave transmissions to recover high-quality echographic images without degrading the high frame rate capabilities. A theoretical model is derived for the comparison between the proposed method and the conventional B-mode imaging in terms of contrast, signal-to-noise ratio, and resolution. Our model predicts that a significantly smaller number of insonifications, 10 times lower, is sufficient to reach an image quality comparable to conventional B-mode. Theoretical predictions are confirmed by in vitro experiments performed in tissue-mimicking phantoms. Such results raise the appeal of coherent compounds for use with standard imaging modes such as B-mode or color flow. Moreover, in the context of transient elastography, ultrafast frame rates can be preserved while increasing the image quality compared with flat insonifications. Improvements on the transient elastography mode are presented and discussed.

摘要

超声成像中超快帧率的出现最近因瞬态弹性成像等新成像模式的发展而成为可能。每秒数千幅以上的图像采集速率能够实时可视化在生物组织中传播的剪切机械波,这些波传达了有关组织局部粘弹性特性的信息。第一种实现这种超快帧率的方法是向介质中发射平面波。然而,由于波束形成过程随后仅限于接收模式,因此在超快模式下获得的超声图像在分辨率和对比度方面质量较低,这影响了瞬态弹性成像模式的稳健性。本文提出通过对复合平面波传输进行相干重组来改进波束形成过程,以恢复高质量的超声图像,同时不降低高帧率能力。推导了一个理论模型,用于比较所提出的方法与传统B模式成像在对比度、信噪比和分辨率方面的差异。我们的模型预测,显著更少的声照射次数,低至十分之一,就足以达到与传统B模式相当的图像质量。在组织模拟体模中进行的体外实验证实了理论预测。这些结果提高了相干复合在B模式或彩色血流等标准成像模式中的应用吸引力。此外,在瞬态弹性成像的背景下,与平面声照射相比,在提高图像质量时可以保持超快帧率。本文展示并讨论了瞬态弹性成像模式的改进。

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