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首页> 外文期刊>Applied radiation and isotopes: including data, instrumentation and methods for use in agriculture, industry and medicine >Use of synchrotron-based diffraction-enhanced imaging for visualization of soft tissues in invertebrates.
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Use of synchrotron-based diffraction-enhanced imaging for visualization of soft tissues in invertebrates.

机译:基于同步加速器的衍射增强成像技术用于无脊椎动物中软组织的可视化。

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摘要

Images of terrestrial and marine invertebrates (snails and bivalves) have been obtained by using an X-ray phase-contrast imaging technique, namely, synchrotron-based diffraction-enhanced imaging. Synchrotron X-rays of 20, 30 and 40keV were used, which penetrate deep enough into animal soft tissues. The phase of X-ray photons shifts slightly as they traverse an object, such as animal soft tissue, and interact with its atoms. Biological features, such as shell morphology and animal physiology, have been visualized. The contrast of the images obtained at 40keV is the best. This optimum energy provided a clear view of the internal structural organization of the soft tissue with better contrast. The contrast is higher at edges of internal soft-tissue structures. The image improvements achieved with the diffraction-enhanced imaging technique are due to extinction, i.e., elimination of ultra-small-angle scattering. They enabled us to identify a few embedded internal shell features, such as the origin of the apex, which is the firmly attached region of the soft tissue connecting the umbilicus to the external morphology. Diffraction-enhanced imaging can provide high-quality images of soft tissues valuable for biology.
机译:陆地和海洋无脊椎动物(蜗牛和双壳类动物)的图像已经通过使用X射线相衬成像技术(即基于同步加速器的衍射增强成像)获得。使用了20kev,30keV和40keV的同步加速器X射线,它们可以深入地穿透动物软组织。 X射线光子在穿过诸如动物软组织之类的物体并与其原子相互作用时,其相位会发生轻微移动。诸如贝壳形态和动物生理学之类的生物学特征已经显现出来。在40keV下获得的图像对比度最佳。该最佳能量以更好的对比度清晰显示了软组织的内部结构。内部软组织结构边缘的对比度更高。用衍射增强成像技术实现的图像改善是由于消光,即消除了超小角散射。它们使我们能够识别出一些嵌入式的内壳特征,例如先端的起源,这是将脐带连接到外部形态的软组织的牢固附着区域。衍射增强成像可以提供对生物学有价值的高质量软组织图像。

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