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Small size X-pinch radiation source for application to phase-contrast X-ray radiography of biological specimens

机译:小型X捏放射源,用于生物标本的相衬X射线照相

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The X pinch is a very small size radiation source in the 3-10 keV X-ray band. As such, it has been used successfully to obtain high resolution images of /spl les/2 min thick biological samples ranging from small bugs (flies, beetles, etc.) to a small piece of mouse intestine. The X pinch source size as a function of the X-ray energy is important because it directly determines the spatial resolution of the imaging system. Furthermore, a small source size can provide high spatial coherence of the imaging X-rays, enabling their use for imaging low absorption, low contrast objects with excellent spatial resolution by a method called phase-contrast imaging. In order to determine the source size, several structures have been micro-fabricated that involve gold on a membrane that is transparent to the X-rays. If these structures are imaged in point projection radiography, a finite source size will cause penumbral blurring. Therefore, the shape of the shadow image pattern depends on the source size of the X-rays, the energy band of the X-rays, the shape and material used for the structures, and the geometry of the experiment. The experimental results must be compared with wave-optics calculations for the expected image pattern as a function of all of the above parameters, but especially the source size. The several conditions for phase-contrast imaging are discussed. Examples of high-resolution images of biological objects are presented.
机译:X夹点是3-10 keV X射线波段中非常小的辐射源。这样,它已成功用于获得每小/ 2分钟厚的生物样品的高分辨率图像,其范围从小虫子(苍蝇,甲虫等)到小肠小鼠小肠不等。作为X射线能量的函数的X捏合源大小很重要,因为它直接确定成像系统的空间分辨率。此外,较小的光源尺寸可以提供成像X射线的高空间相干性,从而可以通过称为相衬成像的方法将其用于以出色的空间分辨率对低吸收率,低对比度的物体进行成像。为了确定光源的大小,已经微制造了几种结构,这些结构在对X射线透明的膜上包含金。如果这些结构在点投影射线照相中成像,则有限的光源尺寸将导致半影模糊。因此,阴影图像图案的形状取决于X射线的源大小,X射线的能带,用于结构的形状和材料以及实验的几何形状。必须将实验结果与波动光学计算进行比较,以便将预期的图像图案作为上述所有参数(尤其是光源尺寸)的函数。讨论了相衬成像的几个条件。提出了生物物体的高分辨率图像的示例。

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