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首页> 外文期刊>Optics Letters >Imaging of small nanoparticle-containing objects by finite-element-based photoacoustic tomography
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Imaging of small nanoparticle-containing objects by finite-element-based photoacoustic tomography

机译:通过基于有限元素的光声层析成像对含纳米颗粒的小物体成像

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摘要

We present semiquantitative photoacoustic images of small nanoparticle-containing objects having a wide range of contrast levels relative to the background. The images are obtained by a finite-element reconstruction algorithm that is based on the Helmholtz-like photoacoustic wave equation in the frequency domain. Our reconstruction approach is an iterative Newton method coupled with combined Marquardt and Tikhonov regularizations that can extract the spatial distribution of relative optical absorption property in heterogeneous media. We demonstrate experimental images in single- and multiple-object configurations with a circular scanning photoacoustic tomographic system. The results obtained show that millimeter-size nanoparticle-containing objects can be clearly detected in terms of position, size, and relative optical properties.
机译:我们提出了相对于背景具有广泛的对比度水平的包含小纳米粒子的对象的半定量光声图像。图像是通过有限元重构算法获得的,该算法基于频域中类似于亥姆霍兹的光声波方程。我们的重建方法是一种迭代牛顿法,结合了Marquardt和Tikhonov正则化组合,可以提取异质介质中相对光吸收特性的空间分布。我们用圆形扫描光声层析成像系统演示了单对象和多对象配置中的实验图像。获得的结果表明,就位置,大小和相对光学性质而言,可以清楚地检测出包含毫米大小的纳米颗粒的物体。

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