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首页> 外文期刊>Applied and Environmental Microbiology >Measurement of live bacteria by Nomarski interference microscopy and stereologic methods as tested with macroscopic rod-shaped models.
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Measurement of live bacteria by Nomarski interference microscopy and stereologic methods as tested with macroscopic rod-shaped models.

机译:通过Nomarski干涉显微镜和立体方法对活细菌进行测量,并用宏观棒状模型进行了测试。

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A new method is proposed to measure bacterial cells under growth conditions. Bacterial cells, suspended in their growth medium, were attached to a cover slip with poly-L-lysine. The cover slip was inverted and placed on a glass microscope slide. To prevent dehydration of the medium, the edges of the cover slip were sealed to the microscope slide with clear fingernail polish. The bacteria on the slide were then quickly photographed with a Leitz light microscope, using Nomarski optics. The photographic negatives were then projected at a standard distance through a lens system, and the projected images of the whole cells were outlined by hand onto graph paper. The profile images so transcribed onto the graph paper were in effect transverse sections of each of the cells. Using stereologic grid and point counting techniques, the area of the cell transverse section as well as the perimeter or circumference of the transverse section were estimated. Formulae were developed so that both the volume and surface area of the whole cell could be ascertained from these area and circumference measurements. Since the efficacy of any measurements of surface area and volume of microscopic rod-shaped bacterial cells could be questioned, macroscopic rod-shaped models were used to test the theory and formulae and to compare this method with other commonly used cell-sizing techniques. This technique could be used in any study of bacterial cell size or changes in cell size (e.g., osmotic shifts).
机译:提出了一种在生长条件下测量细菌细胞的新方法。悬浮在其生长培养基中的细菌细胞通过聚L-赖氨酸附着在盖玻片上。将盖玻片倒置并放置在玻璃显微镜载玻片上。为了防止介质脱水,用透明指甲油将盖玻片的边缘密封到显微镜载玻片上。然后使用Nomarski光学器件用Leitz光学显微镜对载玻片上的细菌进行快速拍照。然后将照相底片通过镜头系统投影到标准距离,然后用手将整个电池的投影图像勾勒到方格纸上。如此转录到方格纸上的轮廓图像实际上是每个单元的横截面。使用立体网格和点计数技术,可以估算单元横截面的面积以及横截面的周长或周长。开发了公式,以便可以从这些面积和周长测量值确定整个细胞的体积和表面积。由于可以质疑任何测量杆状细细菌细胞表面积和体积的功效,因此使用了宏观杆状模型来测试理论和公式,并将此方法与其他常用的细胞大小测定技术进行比较。该技术可用于细菌细胞大小或细胞大小变化(例如渗透压变化)的任何研究。

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