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Time-domain laser mammography: separation of scattering and absorption contributions

机译:时域激光乳房X线照片:分散散射和吸收贡献

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A technique for properly separating the scattering and absorption contributions in laser mammography is proposed. The technique is based on an empirical model obtained from a series of experiments performed on homogeneous scattering slabs containing a single inclusion. The scattering and absorption contributions are obtained by performing a Fit of an Inhomogeneous Diffusion Model (FIDM). The performance of this new technique is compared to that involving a curve fit of the solution of the diffusion model for a homogeneous slab. The FIDM technique allows a very good discrimination between scattering and absorption inclusions, better than that obtained with a curve fit of the homogeneous diffusion model. The mathematical expressions of the empirical model are extremely simple and allow for a fast calculation (about 1 second for computing two 441 pixel images compared to about 6 minutes with the previous technique). A perturbation analysis of the diffusion model will provide theoretical support to the FIDM technique and should allow its refinement. Although it has not been demonstrated that the separation between absorption and scattering is totally correct when applied to real breast scanning, the method associates some structures to absorption and some other to scattering, which could result in a better specificity of laser mammography.
机译:提出了一种适当分离激光乳房X线乳腺检查中的散射和吸收贡献的技术。该技术基于从在含有单个包含夹杂物的均匀散射板上进行的一系列实验获得的经验模型。通过执行非均匀扩散模型(FIDM)来获得散射和吸收贡献。将这种新技术的性能与涉及均匀板块扩散模型的曲线拟合的曲线进行比较。 FIDM技术允许在散射和吸收夹杂物之间具有非常好的区分,而不是用均匀扩散模型的曲线拟合获得的差异。经验模型的数学表达式非常简单,并且允许快速计算(用于计算两个441像素图像的大约1秒,与之前的技术约为6分钟)。扩散模型的扰动分析将为FIDM技术提供理论支持,并应允许其改进。虽然尚未证明在施加到真正的乳房扫描时吸收和散射之间的分离是完全正确的,但该方法将一些结构与一些结构相关联,一些结构可以导致激光乳房X线摄影的更好的特异性。

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