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首页> 外文期刊>Glass Physics and Chemistry: A Journal on the Structural, Physical, and Chemical Properties and Nature of Inorganic Glasses and Glass-Forming Melts >Equipment for Investigations of Biological Nanostructures by Diffraction Methods Using Synchrotron Radiation
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Equipment for Investigations of Biological Nanostructures by Diffraction Methods Using Synchrotron Radiation

机译:利用同步辐射通过衍射法研究生物纳米结构的设备

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摘要

This paper reports on the experimental and methodical developments intended for the small-angle time-resolved station DICSI ("diffraction movie") at the K1.3a beamline of the Siberia-2 storage ring at the Russian~Research Centre "Kurchatov Institute." The principles of operation of the optical geometric and detecting systems, as well as the control and recording system, as applied to the investigation of the dynamics of biological nanostructures, have been considered in detail. A new version of the two-coordinate detecting system based on the designed highly effective fluorescent screen (Gd2O2S : Tb) and a CSDU-429 digital camera has been developed. The advantage of this recording system over the Image Plate detecting system in phenomenological investigations is that the optical images obtained on X-ray fluorescent screens with the use of cooled CCD/CMOS arrays can be directly entered into a computer. The detecting system has been tested on different samples by small- and wide-angle X-ray diffraction methods with the use of synchrotron radiation of the VEPP-3 storage ring at the Siberian Synchrotron Center (Novosibirsk, Russia) and the Siberia-2 storage ring at the Kurchatov Center for Synchrotron Radiation and Nanotechnology (Moscow, Russia). Different modifications of original two-coordinate recording systems have been used in systematic studies of the structural dynamics of biological tissues.
机译:本文报道了俄罗斯研究中心“库尔恰托夫研究所”在西伯利亚2号储层环K1.3a光束线上的小角度时间分辨站DICSI(“衍射电影”)的实验和方法发展情况。已经详细考虑了光学几何和检测系统以及控制和记录系统的操作原理,这些原理用于研究生物纳米结构的动力学。基于设计的高效荧光屏(Gd2O2S:Tb)和CSDU-429数码相机,已经开发了新版本的两坐标检测系统。在现象学研究中,此记录系统优于图像板检测系统的优势在于,使用冷却的CCD / CMOS阵列在X射线荧光屏上获得的光学图像可以直接输入计算机。该检测系统已通过小角度和广角X射线衍射方法在西伯利亚同步加速器中心(俄罗斯新西伯利亚)和西伯利亚2号储存库中使用VEPP-3储存环的同步加速辐射对不同样品进行了测试。在Kurchatov同步辐射和纳米技术中心(俄罗斯莫斯科)响起。原始的两坐标记录系统的不同修改已用于系统研究生物组织的结构动力学。

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