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Tangential resolution improvement in thermoacoustic and photoacoustic tomography using a negative acoustic lens

机译:使用负声透镜提高热声和光声层析成像的切向分辨率

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摘要

We developed a novel concept of using a negative acoustic lens to increase the acceptance angle of an unfocused large-area ultrasonic transducer (detector), leading to more than twofold improvement of the tangential resolution in both thermoacoustic and photoacoustic tomography. In both thermoacoustic and photoacoustic tomography, for a given transducer bandwidth, the aperture size of the detector affects the tangential resolution greatly when the object of interest is near the detector surface. We were able to overcome such tangential resolution deterioration by attaching an acoustic concave lens, made of acrylic in front of the flat detector surface. We then quantified the tangential resolution improvement using phantom images. We also showed that the use of the negative lens preserves the shape of an object after the image is reconstructed.
机译:我们开发了一种新颖的概念,即使用负声透镜来增加未聚焦的大面积超声换能器(检测器)的接收角,从而导致热声和光声层析成像中的切向分辨率提高两倍以上。在热声层析成像和光声层析成像中,对于给定的换能器带宽,当目标物体靠近探测器表面时,探测器的孔径大小会极大地影响切向分辨率。通过在平板探测器表面的前面安装一个由丙烯酸制成的凹透镜,我们可以克服这种切向分辨率降低的问题。然后,我们使用幻影图像量化了切向分辨率的提高。我们还表明,在重建图像后,使用负透镜可以保留物体的形状。

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