Osanna A, Jacobsen C, Kalinovsky A, Kirz J, Maser J, Wang S
Department of Physics, S.U.N.Y. at Stony Brook 11794-3800, USA.
Scanning Microsc Suppl. 1996;10:349-56; discussion 356-8.
X-ray microscopes provide higher resolution than visible light microscopes. Wet, biological materials with a water thickness of up to about 10 microns can be imaged with good contrast using soft X-rays with wavelengths between the oxygen and carbon absorption edges (at 24 and 43 A). The Stony Brook group has developed and operates a scanning transmission X-ray microscope (STXM) at the National Synchrotron Light Source (NSLS) at Brookhaven National Laboratory. The microscope is used for imaging with a current resolution of 50 nm, and for elemental and chemical state mapping. Radiation damage imposes a significant limitation upon high resolution X-ray microscopy of room temperature wet specimens. Experience from electron microscopy suggests that cryo techniques allow vitrified specimens to be imaged repeatedly. This is due to the increased radiation stability of biological specimens in the frozen hydrated state. Better radiation stability has been shown recently with a cryo transmission X-ray microscope developed by the University of Göttingen, operating at the BESSY storage ring in Berlin, Germany. At Stony Brook, we are developing a cryo scanning transmission X-ray microscope (CryoSTXM) to carry out imaging and spectro-microscopy experiments on frozen hydrated specimens. This article will give an outlook onto the research projects that we plan to perform using the CryoSTXM.
X射线显微镜比可见光显微镜具有更高的分辨率。对于水厚度高达约10微米的湿生物材料,可以使用波长介于氧和碳吸收边(分别为24埃和43埃)之间的软X射线,以良好的对比度进行成像。石溪分校的团队在布鲁克海文国家实验室的国家同步辐射光源(NSLS)开发并运行了一台扫描透射X射线显微镜(STXM)。该显微镜用于成像,当前分辨率为50纳米,还用于元素和化学态映射。辐射损伤对室温湿样品的高分辨率X射线显微镜检查构成了重大限制。电子显微镜的经验表明,低温技术可使玻璃化样品反复成像。这是因为生物样品在冷冻水合状态下的辐射稳定性增强。最近,德国哥廷根大学在德国柏林的BESSY储存环上运行的低温透射X射线显微镜显示出了更好的辐射稳定性。在石溪分校,我们正在开发一台低温扫描透射X射线显微镜(CryoSTXM),用于对冷冻水合样品进行成像和光谱显微镜实验。本文将展望我们计划使用CryoSTXM开展的研究项目。