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Noncontact diffuse optical tomography

机译:非接触弥漫光学断层扫描

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摘要

We present a simple and novel theoretical approach for modeling the intensity distribution from an arbitrarily shaped turbid volume in a non-contact geometry by considering diffuse light propagation in free-space. Optical tomography of turbid media has so far been limited by systems that require fixed geometries or fiber measurements. This novel theory is validated with experiments for a diffusive volume of known geometry in a non-contact situation, both with and without the presence of an embedded absorber. We also present a system that records non-contact optical measurements from diffuse media of arbitrary shapes and retrieves the three-dimensional surface information of the diffuse medium. This approach offers significant experimental simplicity and yields high-information content datasets. The performance of this novel tomographic approach is demonstrated with experimental reconstructions of phantoms. Finally, the implications of this new formulation in the context of optical tomography in turbid media are discussed.
机译:我们通过考虑在自由空间中的漫射光传播来提出一种简单而新颖的理论方法,用于将来自非接触几何形状中的任意形状的浑浊体积模拟的强度分布。到目前为止,浊度介质的光学断层扫描由需要固定几何形状或光纤测量的系统限制。这种新颖的理论用实验验证了在非接触情况下的已知几何形状的漫射体积的实验,无论是在没有嵌入的吸收器的情况下。我们还提出了一个系统,该系统从任意形状的漫反射介质记录非接触光学测量并检索漫反射介质的三维表面信息。该方法提供了显着的实验简单性,并产生高信息内容数据集。这种新颖性断层扫描方法的性能被证明了幽灵的实验性重建。最后,讨论了这种新制剂在混浊介质中的光学层析的背景下的影响。

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