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Experimental validation of tangential resolution improvement in photoacoustic tomography using modified delay-and-sum reconstruction algorithm

机译:改进的延迟和求和重建算法在光声层析成像中切向分辨率改善的实验验证

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摘要

For a circular scanning geometry in photoacoustic tomography, the axial/radial resolution is spatially invariant and is not affected by the ultrasound transducer (UST, detector) aperture. However, the tangential resolution is dependent on the detector aperture size and it varies spatially. Many techniques were proposed to improve the tangential resolution, such as attaching a concave lens in front of the nonfocused transducer or using a virtual point detector. Both of these methods have difficulties. Therefore, a modified delay-and-sum reconstruction algorithm has been proposed which can be used together with a standard ultrasound detector (nonfocused) to improve the tangential resolution. In this work, we validate the modified delay-and-sum algorithm experimentally for both flat and cylindrically focused USTs. More than threefold improvement in tangential resolution is observed. It is also shown that the object shape is recovered with this modified algorithm, which is very helpful for diagnosis and treatment purposes.
机译:对于光声层析成像中的圆形扫描几何形状,轴向/径向分辨率在空间上是不变的,并且不受超声换能器(UST,检测器)孔径的影响。但是,切向分辨率取决于检测器孔径的大小,并且在空间上会变化。提出了许多提高切向分辨率的技术,例如在非聚焦换能器前面安装凹透镜或使用虚拟点检测器。这两种方法都有困难。因此,提出了一种改进的延迟和求和重建算法,该算法可以与标准超声检测器(非聚焦)一起使用,以提高切向分辨率。在这项工作中,我们通过实验验证了修改后的延迟和求和算法,适用于平面和圆柱聚焦的UST。观察到切向分辨率提高了三倍以上。还表明,使用该改进算法可以恢复对象形状,这对于诊断和治疗非常有帮助。

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