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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 >Angle-dispersive diffraction with synchrotron radiation at Laboratorio Nacional de Luz Sincrotron (Brazil): potential for use in biomedical imaging.
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Angle-dispersive diffraction with synchrotron radiation at Laboratorio Nacional de Luz Sincrotron (Brazil): potential for use in biomedical imaging.

机译:巴西国家实验室的同步加速器辐射的角度色散衍射:在生物医学成像中的应用潜力。

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At low angles the scattering of X-rays in the diagnostic energy range (low-momentum transfer), it is probable that the scattering interaction will be coherent. This coherence gives rise to interference effects resulting in X-ray diffraction patterns that are characteristic of the scattering material. The usefulness of coherent scattering is not limited to crystallography. It can provide information about biological material as well. The interatomic and intermolecular co-operative effects which modify the free-atom coherent scattering process are well known for highly ordered structures such as crystalline materials but are important for amorphous solids and liquids where short-range ordering occurs. X-ray diffraction using synchrotron radiation has became a well established technique. This work introduces a non-destructive synchrotron radiation X-ray diffraction imaging technique. The feasibility of the X-ray diffraction computed microtomography using synchrotron radiation has been investigated. This research was carried out at the X-ray diffraction beam line of the National Synchrotron Light Laboratory supported by the National Council for Scientific and Technological Development (LNLS/CNPq) in Brazil. These experimental patterns were carried out with a 500 microm slit in front of the detector and an 11.101 keV beam (lambda = 1.117 A) monochromatic beam from the double crystal monochromator. The diffracted beam was detected by a fast scintillation detector (10(6) counts s(-1)) designed specifically to meet the needs of high quality X-ray diffraction and synchrotron radiation experiments. The data were recorded at rates of one second per degree of 2theta (angular steps equal to 0.05 +/- 0.01 degrees) and registered by a multichannel analyzer. These experimental data could be used to evaluate the scattering properties of different tissue-substitute (water, lucite, nylon, plastic and polystyrene) and bone-substitute (hydroxyapatite and aluminum) materials. The data are in good agreement with those obtained by other authors, indicating the feasibility of the imaging technique.
机译:在低角度下,X射线的散射在诊断能量范围内(低动量传递),散射相互作用可能是相干的。这种相干性会引起干涉效应,从而导致产生散射材料特有的X射线衍射图。相干散射的有用性不限于晶体学。它也可以提供有关生物材料的信息。修饰自由原子相干散射过程的原子间和分子间的协同作用对于诸如晶体材料之类的高度有序的结构是众所周知的,但是对于发生短程有序的无定形固体和液体是重要的。使用同步加速器辐射的X射线衍射已成为一种成熟的技术。这项工作介绍了一种无损同步辐射X射线衍射成像技术。已经研究了使用同步加速器辐射的X射线衍射计算机显微照相术的可行性。这项研究是在巴西国家科学技术发展委员会(LNLS / CNPq)支持下,在国家同步加速器光实验室的X射线衍射光束线上进行的。这些实验模式是通过在检测器前面的500微米狭缝和来自双晶单色仪的11.101 keV光束(λ= 1.117 A)单色光束进行的。衍射光束由快速闪烁检测器(10(6)计数s(-1))检测,该检测器专门设计用于满足高质量X射线衍射和同步加速器辐射实验的需求。数据以每2θ角度1秒的速率记录(角步等于0.05 +/- 0.01度),并通过多通道分析仪进行记录。这些实验数据可用于评估不同组织替代物(水,萤石,尼龙,塑料和聚苯乙烯)和骨替代物(羟基磷灰石和铝)的散射特性。数据与其他作者获得的数据非常吻合,表明了成像技术的可行性。

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