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Microscopic visualization of high-frequency ultrasound fields using a new method of Schlieren photography

机译:使用Schlieren摄影的新方法对高频超声场进行显微可视化

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We have proposed a new technique for visualization of an ultrasound field that enables acquisition of Schlieren images by subtraction of two shadowgraphs taken in the presence and absence of ultrasound exposure. This technique can be easily applied to other optical methods because there is no need to use a conventional Schlieren optics. This paper shows the possibility of applying the technique to microscopic observation of high-frequency ultrasound fields. A light source of short pulsed light of 0.11 ns and a CCD camera with a 15 bit dynamic range were installed in an inverted-type microscope. High-frequency ultrasound fields of a miniature 20-MHz transducer for intravascular ultrasound imaging and a 50-MHz wideband transducer were visualized using ×4 and ×10 objective lenses. Observation results showed that the high-frequency fields were successfully visualized at the maximum spatial resolution of 0.93 µm. Transmission and reflection of pulsed ultrasound at a water-Plexiglas interface were also observed, and the acquired movie image of ultrasound propagation demonstrated the importance of this technique for direct understanding of complex acoustic fields.
机译:我们提出了一种可视化超声场的新技术,该技术能够通过减去在有和没有超声暴露的情况下拍摄的两个阴影图来获取Schlieren图像。由于不需要使用常规的Schlieren光学器件,因此该技术可以轻松地应用于其他光学方法。本文展示了将该技术应用于高频超声场显微观察的可能性。在倒置式显微镜中安装了0.11 ns的短脉冲光光源和动态范围为15位的CCD摄像机。使用×4和×10物镜可以观察到用于血管内超声成像的20MHz微型换能器和50MHz宽带换能器的高频超声场。观察结果表明,在最大空间分辨率为0.93 µm的情况下,成功地观察了高频场。还观察到脉冲超声在水-有机玻璃界面的传输和反射,并且所获得的超声传播电影图像证明了该技术对于直接理解复杂声场的重要性。

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