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Ultrasonic attenuation correction in optoacoustic tomography

机译:光声断层扫描中的超声波衰减校正

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In this work, we continue to explore a method we have developed for modeling and correcting the effects of acoustic attenuation in optoacoustic tomography. We have shown previously that in the temporal frequency domain, the attenuated optoacoustic imaging equation is equivalent to an inhomogeneous Helmholtz equation with a complex wave number. We have also developed a numerical method for correcting for these attenuation effects simply by pre-processing of the one-dimensional time signal measured at each transducer location employed in the acquisition. We demonstrate through simulation studies that ignoring ultrasonic attenuation can lead to resolution degradation and distortion in reconstructed images because optoacoustic tomography relies on broadband detection and ultrasonic attenuation is frequency-dependent. We demonstrate that the proposed approach is able to compensate for the attenuation and improve the quality of the images. We also find that the effect of frequency-dependent attenuation remains significant even when narrow-band transducers, be they lowpass or bandpass, are used for detection.
机译:在这项工作中,我们继续探索我们开发用于建模和纠正声学断层扫描中声学衰减影响的方法。我们以前所示的是,在时间频域中,衰减的光声成像方程相当于具有复杂波数的不均匀亥姆霍兹方程。我们还开发了一种用于校正这些衰减效果的数值方法,只需通过在采集中所采用的每个换能器位置测量的一维时间信号的预处理来校正这些衰减效果。我们通过仿真研究证明,忽略超声衰减可以导致重建图像的分辨率降低和失真,因为光声层析术依赖于宽带检测和超声衰减是频率依赖性的。我们证明所提出的方法能够弥补衰减并提高图像的质量。我们还发现,即使在窄带传感器,低通或带通,用于检测,频率依赖性衰减的效果也仍然有效。

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