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Modeling Skull's Acoustic Attenuation and Dispersion on Photoacoustic Signal

机译:在光声信号上模拟头骨的声衰减和色散

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Despite the great promising results of a recent new transcranial photoacoustic brain imaging technology, it has been shown that the presence of the skull severely affects the performance of this imaging modality. In this paper, we investigate the effect of skull on generated photoacoustic signals with a mathematical model. The developed model takes into account the frequency dependence attenuation and acoustic dispersion effects occur with the wave reflection and refraction at the skull surface. Numerical simulations based on the developed model are performed for calculating the propagation of photoacoustic waves through the skull. From the simulation results, it was found that the skull-induced distortion becomes very important and the reconstructed image would be strongly distorted without correcting these effects. In this regard, it is anticipated that an accurate quantification and modeling of the skull transmission effects would ultimately allow for skull aberration correction in transcranial photoacoustic brain imaging.
机译:尽管最近的一种新的经颅光声脑成像技术取得了令人鼓舞的结果,但事实表明,颅骨的存在严重影响了这种成像方式的性能。在本文中,我们使用数学模型研究了颅骨对产生的光声信号的影响。所开发的模型考虑了频率相关的衰减以及在头骨表面的波反射和折射时发生的声扩散效应。执行基于已开发模型的数值模拟,以计算光声波在颅骨中的传播。从仿真结果发现,颅骨引起的畸变变得非常重要,并且在不校正这些影响的情况下,重构图像将严重失真。在这方面,可以预期的是,颅骨透射效应的精确量化和建模最终将允许在经颅光声脑成像中进行颅骨像差校正。

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