首页> 外文期刊>Journal of Applied Crystallography >Finding a cold needle in a warm haystack: infrared imaging applied to locating cryocooled crystals in loops
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Finding a cold needle in a warm haystack: infrared imaging applied to locating cryocooled crystals in loops

机译:在温暖的干草堆中找到冷的针头:红外成像技术用于在回路中定位低温冷却的晶体

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摘要

The use of infrared imaging to locate crystals mounted in cryoloops and cryopreserved in a nitrogen gas stream at 100 K is demonstrated. In the home laboratory, crystals are clearly seen in the infrared images with light transmitting through the sample while irradiating the crystal from behind, and with illumination from a direction perpendicular to the direction of view. The crystals transmit and reflect infrared radiation at different levels to the surrounding mother liquor and loop. Because of differences in contrast between crystals and their surrounding mother liquor, it is possible to identify the crystal position. At the synchrotron, with robotically mounted crystals, the small depth of field of the lens required the recording of multiple images at different focal points. Image processing techniques were then used to construct a clear image of the crystal. The resulting infrared images and intensity profiles show that infrared imaging can be a powerful complement to visual imaging in locating crystals in cryocooled loops.
机译:演示了使用红外成像来定位安装在低温环中并低温保存在100 K氮气流中的晶体。在家庭实验室中,在红外图像中清晰可见晶体,其中有光从样品中透射出来,同时从后面照射晶体,并且从垂直于观察方向的方向照射。晶体以不同的水平将红外辐射传输和反射到周围的母液和环路中。由于晶体与其周围的母液之间的对比度不同,因此可以确定晶体位置。在用机械手安装的晶体的同步加速器中,镜头的景深较小,需要在不同的焦点处记录多个图像。然后使用图像处理技术来构建晶体的清晰图像。由此产生的红外图像和强度分布图表明,红外成像可以有效地补充视觉成像,从而在低温冷却回路中定位晶体。

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