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Boundary conditions in photoacoustic tomography

机译:光声断层扫描中的边界条件

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摘要

Photoacoustic tomography has captured a significant amount of attention recently. Although several commercially available optical imaging modalities, including confocal microscopy, two-photon microscopy, and optical coherence tomography have been highly successful, none of these technologies can penetrate beyond ~1 mm into scattering biological tissues because all of them are based on ballistic and quasi-ballistic photons. Consequently, until now, there has been a void in high-resolution optical imaging beyond this depth limit. Photoacoustic tomography has filled this void by combining high ultrasonic resolution and high optical contrast in a single modality. Up until now, however, free-space ultrasound propagation has always been assumed in photoacoustic tomography. In this paper, boundary conditions that should be considered in certain imaging configurations are presented and their associated inverse solutions for image reconstruction are provided.
机译:光声断层扫描最近捕获了大量的关注。虽然几种商业上可获得的光学成像模态,包括共聚焦显微镜,双光子显微镜和光学相干断层扫描非常成功,但是这些技术都没有渗透到散射生物组织之外,因为所有这些技术都是基于弹道和准 - 球形光子。因此,直到现在,在高分辨率光学成像中存在超出该深度限制的空隙。通过在单个模态中结合高超声波分辨率和高光学对比度,光声断层扫描已经填充了这种无效。然而,直到现在,始终在光声断层扫描中假设自由空间超声波传播。在本文中,提供了应在某些成像配置中考虑的边界条件,并提供了其相关的图像重建的逆解决方案。

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