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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Solvability for Photoacoustic Imaging With Idealized Piezoelectric Sensors
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Solvability for Photoacoustic Imaging With Idealized Piezoelectric Sensors

机译:具有理想化压电传感器的光声成像的可溶性

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摘要

Most reconstruction algorithms for photoacoustic imaging assume that the pressure field is measured by the ultrasound sensors placed on a detection surface. However, such sensors do not measure pressure exactly due to their nonuniform directional and frequency responses, and resolution limitations. This is the case for piezoelectric sensors that are commonly employed for photoacoustic imaging. In this article, using the method of matched asymptotic expansions and the basic constitutive relations for piezoelectricity, we propose a simple mathematical model for piezoelectric transducers. The approach simultaneously models how the pressure waves induce the piezoelectric measurements and how the presence of the sensors affects the pressure waves. Using this model, we analyze whether the data gathered by the piezoelectric sensors lead to the mathematical solvability of the photoacoustic imaging problem. We conclude that this imaging problem is well posed in certain normed spaces and under a geometric assumption. We also propose an iterative reconstruction algorithm that incorporates the model for piezoelectric measurements. A numerical implementation of the reconstruction algorithm is presented.
机译:光声成像的大多数重建算法假设压力场由放置在检测表面上的超声传感器测量。然而,这种传感器由于其非均匀的方向和频率响应和分辨率限制而不是精确地测量压力。这是用于光声成像的压电传感器的情况。在本文中,使用匹配的渐近扩展方法和压电的基本组成关系,提出了一种简单的压电传感器数学模型。该方法同时模拟压力波如何诱导压电测量以及传感器的存在如何影响压力波。使用该模型,我们分析压电传感器收集的数据是否导致光声成像问题的数学可解性。我们得出结论,这种成像问题在某些规范的空间中井井有很好地,并且在几何假设下。我们还提出了一种迭代重建算法,该算法包含压电测量模型。提出了重建算法的数值实现。

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