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Hard-x-ray region tomographic reconstruction of the refractive-index gradient vector field: imaging principles and comparisons with diffraction-enhanced-imaging-based computed tomography

机译:折射率梯度向量场的硬X射线区域层析成像重建:成像原理和与基于衍射增强成像的计算机层析成像的比较

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摘要

The unique tomographic imaging method based on refractive effects that was recently developed by Maksimenko et al. [Appl. Phys. Lett. 86, 124105 (2005)] exhibits an excellent imaging property in the hard-x-ray region for phase objects such as soft materials and biological samples. However, there seems to have been little consideration of the physical aspects of the underlying imaging principles. Also, as the method is similar to diffraction-enhanced-imaging (DEI)-based computed tomography (CT), the difference between these two methodologies has not been made clear. We theoretically consider the imaging principles starting from the measurement process to the reconstruction procedures from the viewpoint of geometrical optics and then clarify their difference in relationship to the physical quantities to be depicted. The major feature of this novel method is the in-plane two-dimensional vector-field reconstruction of the refractive-index gradient in an object, while DEI CT obtains the out-of-plane scalar-field gradient component. In other words, the novel method and DEI CT present the transverse and the longitudinal components, respectively, of the three-dimensional vector fields of the gradient refractive index. Therefore they can be considered complementary to each other.
机译:Maksimenko等人最近开发了基于屈光效应的独特层析成像方法。 [应用物理来吧[J.Biol.Chem.86,124105(2005)]在诸如软材料和生物样品的相对象的硬X射线区域中表现出优异的成像性质。但是,似乎很少考虑基础成像原理的物理方面。此外,由于该方法类似于基于衍射增强成像(DEI)的计算机断层扫描(CT),因此这两种方法之间的区别尚不清楚。从几何光学的角度,我们从理论上考虑了从测量过程到重建过程的成像原理,然后阐明了它们与要描述的物理量之间的差异。这种新方法的主要特征是物体中折射率梯度的面内二维矢量场重构,而DEI CT获得面外标量场梯度分量。换句话说,新方法和DEI CT分别表示了梯度折射率的三维矢量场的横向和纵向分量。因此,它们可以被认为是彼此互补的。

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