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具有平面样品几何形状的 cryo X 射线显微镜,用于相关荧光和纳米尺度断层成像。

Cryo X-ray microscope with flat sample geometry for correlative fluorescence and nanoscale tomographic imaging.

机构信息

Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Institute for Soft Matter and Functional Materials, Albert-Einstein-Str. 15, 12489 Berlin, Germany.

出版信息

J Struct Biol. 2012 Feb;177(2):212-23. doi: 10.1016/j.jsb.2011.12.023. Epub 2012 Jan 18.

DOI:10.1016/j.jsb.2011.12.023
PMID:22273540
Abstract

X-ray imaging offers a new 3-D view into cells. With its ability to penetrate whole hydrated cells it is ideally suited for pairing fluorescence light microscopy and nanoscale X-ray tomography. In this paper, we describe the X-ray optical set-up and the design of the cryo full-field transmission X-ray microscope (TXM) at the electron storage ring BESSY II. Compared to previous TXM set-ups with zone plate condenser monochromator, the new X-ray optical layout employs an undulator source, a spherical grating monochromator and an elliptically shaped glass capillary mirror as condenser. This set-up improves the spectral resolution by an order of magnitude. Furthermore, the partially coherent object illumination improves the contrast transfer of the microscope compared to incoherent conditions. With the new TXM, cells grown on flat support grids can be tilted perpendicular to the optical axis without any geometrical restrictions by the previously required pinhole for the zone plate monochromator close to the sample plane. We also developed an incorporated fluorescence light microscope which permits to record fluorescence, bright field and DIC images of cryogenic cells inside the TXM. For TXM tomography, imaging with multi-keV X-rays is a straightforward approach to increase the depth of focus. Under these conditions phase contrast imaging is necessary. For soft X-rays with shrinking depth of focus towards 10nm spatial resolution, thin optical sections through a thick specimen might be obtained by deconvolution X-ray microscopy. As alternative 3-D X-ray imaging techniques, the confocal cryo-STXM and the dual beam cryo-FIB/STXM with photoelectron detection are proposed.

摘要

X 射线成像技术为细胞提供了全新的 3D 视角。由于其能够穿透整个水合细胞,因此非常适合与荧光显微镜和纳米级 X 射线断层扫描技术结合使用。在本文中,我们将描述电子储存环 BESSY II 上的 X 射线光学系统和 cryo 全场透射 X 射线显微镜 (TXM) 的设计。与之前使用带板孔聚光镜的 TXM 系统相比,新的 X 射线光学布局采用了波动源、球面光栅单色仪和作为聚光镜的椭圆形玻璃毛细管镜。这种设置将光谱分辨率提高了一个数量级。此外,与非相干条件相比,部分相干物照明改善了显微镜的对比度传递。使用新的 TXM,在没有任何几何限制的情况下,可以垂直于光轴倾斜生长在平板支撑网格上的细胞,而无需以前靠近样品平面的带板单色器所需的针孔。我们还开发了一种内置荧光显微镜,允许在 TXM 内部记录低温细胞的荧光、明场和 DIC 图像。对于 TXM 断层扫描,使用多 keV X 射线进行成像是一种增加焦点深度的简单方法。在这些条件下,需要进行相衬成像。对于向 10nm 空间分辨率收缩的软 X 射线,通过对厚标本进行反卷积 X 射线显微镜,可能获得薄的光学切片。作为替代的 3D X 射线成像技术,提出了共聚焦 cryo-STXM 和双束 cryo-FIB/STXM 与光电子检测。

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