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3D RESOLUTION MEASURE FOR MULTIFOCAL PLANE MICROSCOPY

机译:多焦点平面显微镜的3D分辨率测量

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摘要

The distance separating two biomolecules in close proximity is an important determinant of the nature of their interaction. While much focus has been given to resolving distances in 2D, the 3D cell in which biological interactions occur necessitates the evaluation of resolution in 3D. Recently, we introduced an information-theoretic 3D resolution measure which predicts that the resolution of an optical microscope is unlimited, and that it improves as more photons are detected from the imaged molecules. Here, we investigate the 3D resolution measure for a multifocal plane microscope. Used for the simultaneous imaging of distinct focal planes within a specimen, multifocal plane microscopy has important applications in the tracking of microscopic objects in 3D. By comparing their 3D resolution measures, we determine the circumstances under which a two-plane microscope setup offers better resolvability than a comparable conventional microscope.
机译:将两个生物分子紧密隔开的距离是决定其相互作用性质的重要决定因素。尽管已经将很多注意力集中在解决2D距离问题上,但是发生生物相互作用的3D细胞必须评估3D分辨率。最近,我们推出了一种信息理论的3D分辨率测量方法,该方法可预测光学显微镜的分辨率是无限的,并且随着从成像分子中检测到更多的光子,这种分辨率将提高。在这里,我们研究了多焦点平面显微镜的3D分辨率测量。多焦点平面显微镜用于对标本中不同焦平面进行同时成像,在跟踪3D微观物体方面具有重要的应用。通过比较他们的3D分辨率测量,我们确定了与传统显微镜相比,两平面显微镜设置可提供更好分辨率的环境。

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