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Concepts in imaging and microscopy exploring biological structure andfunction with confocal microscopy

机译:成像和显微镜的概念,通过共聚焦显微镜探索生物学结构和功能

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Confocal microscopy is providing new and exciting opportunities for imaging cell structure and physiology in thick biological specimens, in three dimensions, smd in time. The utility of confocal microscopy relies on its fundamental capacity to reject out-of-focus light, thus providing sharp, high-contrast images of cells and subcellular structures within thick samples. Computer controlled focusing and image-capturing features allow for the collection of through-focus series of optical sections that may be used to reconstruct a volume of tissue, yielding information on the 3-D structure and relationships of cells. Tissues and cells may also be imaged in two or three spatial dimensions over time. The resultant digital data, which encode the image, are highly amenable to processing, manipulation and quantitative analyses. In conjunction with a growing variety of vital fluorescent probes, confocal microscopy is yielding new information about the spatiotemporal dynamics of cell morphology and physiology in living tissues and organisms. Here we use mammalian brain tissue to illustrate some of the ways in which multidimensional confocal fluorescence imaging can enhance studies of biological structure and function.
机译:共聚焦显微镜为在厚薄的生物样本中以三维方式及时成像,对细胞结构和生理成像提供了新的令人兴奋的机会。共聚焦显微镜的实用性依赖于它的基本能力,可以拒绝散焦的光,从而在厚样品中提供清晰的,高对比度的细胞和亚细胞结构图像。计算机控制的聚焦和图像捕获功能允许收集光学部分的全聚焦系列,这些光学部分可用于重建一定体积的组织,从而产生有关3-D结构和细胞关系的信息。组织和细胞还可以随时间在两个或三个空间维度上成像。编码图像的最终数字数据非常适合处理,操纵和定量分析。与越来越多的重要荧光探针一起,共聚焦显微镜正在获得有关活组织和生物体中细胞形态和生理时空动态的新信息。在这里,我们使用哺乳动物的脑组织来说明多维共聚焦荧光成像可以增强对生物学结构和功能的研究的一些方式。

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