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Quantifying bio-filament morphology below the diffraction limit of an optical microscope using out-of-focus images

机译:使用焦点图像量化低于光学显微镜衍射极限的生物灯形态

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A method to measure the dimensions of objects below the optical diffraction limit using diffraction analysis of out-of-focus bright-field images is presented. The method relies on the comparison of the diffraction patterns of an object of unknown size to those of calibration objects of known size. Correlative scanning electron microscope measurements are used to demonstrate the applicability of this method to measure 100 nm microbeads aswell as objects with a geometry different from the calibration objects. This technique is important in the context of tethered particle experiments, in which bio-filaments are bound between a substrate and a microbead. This procedure is applied to obtain the diameters of axonal extensions or neurites that are mechanically created in samples of rat hippocampal neurons. The dependence of neurite geometry on mechanical pull speed is investigated, and the diameter is found to be rate independent. (C) 2020 Optical Society of America
机译:呈现了测量光衍射极限下方的物体尺寸的方法使用衍射分析进行焦点明亮场图像的衍射分析。 该方法依赖于对已知尺寸的校准对象的对象的衍射模式的比较。 相关扫描电子显微镜测量用于展示该方法的适用性测量100nm微珠作为具有与校准对象不同的几何形状的对象。 该技术在束缚颗粒实验的背景下是重要的,其中生物长丝在基材和微珠之间粘合。 施加该过程以获得在大鼠海马神经元的样品中机械地产生的轴突延伸或神经脉的直径。 研究了神经突几何形状对机械拉速的依赖性,发现直径为速率。 (c)2020美国光学学会

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    《Applied optics》 |2020年第9期|共10页
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