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X射线纳米探针与衍射极限储存环:生物样本荧光断层成像的机遇与挑战

X-ray nanoprobes and diffraction-limited storage rings: opportunities and challenges of fluorescence tomography of biological specimens.

作者信息

de Jonge Martin D, Ryan Christopher G, Jacobsen Chris J

机构信息

Australian Synchrotron, 800 Blackburn Road, Clayton, Victoria 3168, Australia.

CSIRO Earth Science and Research Engineering, Clayton, Victoria 3168, Australia.

出版信息

J Synchrotron Radiat. 2014 Sep;21(Pt 5):1031-47. doi: 10.1107/S160057751401621X. Epub 2014 Aug 27.

Abstract

X-ray nanoprobes require coherent illumination to achieve optic-limited resolution, and so will benefit directly from diffraction-limited storage rings. Here, the example of high-resolution X-ray fluorescence tomography is focused on as one of the most voracious demanders of coherent photons, since the detected signal is only a small fraction of the incident flux. Alternative schemes are considered for beam delivery, sample scanning and detectors. One must consider as well the steps before and after the X-ray experiment: sample preparation and examination conditions, and analysis complexity due to minimum dose requirements and self-absorption. By understanding the requirements and opportunities for nanoscale fluorescence tomography, one gains insight into the R&D challenges in optics and instrumentation needed to fully exploit the source advances that diffraction-limited storage rings offer.

摘要

X射线纳米探针需要相干照明来实现光学极限分辨率,因此将直接受益于衍射极限储存环。在这里,高分辨率X射线荧光断层扫描的例子被视为对相干光子需求最大的领域之一,因为检测到的信号只是入射通量的一小部分。还考虑了光束传输、样品扫描和探测器的替代方案。人们还必须考虑X射线实验前后的步骤:样品制备和检测条件,以及由于最小剂量要求和自吸收导致的分析复杂性。通过了解纳米级荧光断层扫描的要求和机会,人们可以深入了解充分利用衍射极限储存环所提供的光源进步所需的光学和仪器研发挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0ad/4151681/8d4b088e4d2c/s-21-01031-fig1.jpg

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