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利用四维显微镜系统的动态相位成像。

Dynamic phase imaging utilizing a 4-dimensional microscope system.

作者信息

Creath Katherine

机构信息

4D Technology Corporation, Tucson AZ 85706, Optineering, Tucson, AZ USA 85719, and College of Optical Sciences, The University of Arizona, Tucson, AZ USA 85721.

出版信息

Proc SPIE Int Soc Opt Eng. 2011 Feb 21;7904:79040O-. doi: 10.1117/12.875928.

Abstract

This paper describes a new, novel interference Linnik microscope system and presents images and data of live biological samples. The specially designed optical system enables instantaneous 4-dimensional video measurements of dynamic motions within and among live cells without the need for contrast agents. This "label-free", vibration insensitive imaging system enables measurement of biological objects in reflection using harmless light levels with a variety of magnifications and wavelengths with fields of view from several hundred microns up to a millimeter. At the core of the instrument is a phase measurement camera (PMC) enabling simultaneous measurement of multiple interference patterns utilizing a pixelated phase mask taking advantage of the polarization properties of light. Utilizing this technology enables the creation of phase image movies in real time at video rates so that dynamic motions and volumetric changes can be tracked. Objects are placed on a reflective surface in liquid under a coverslip. Phase values are converted to optical thickness data enabling volumetric, motion and morphological studies. Data from a number of different organisms such as flagellates and rotifers will be presented, as will measurements of human breast cancer cells with the addition of various agents that break down the cells. These data highlight examples of monitoring different biological processes and motions.

摘要

本文介绍了一种全新的干涉林尼克显微镜系统,并展示了活生物样本的图像和数据。经过特殊设计的光学系统能够对活细胞内部和之间的动态运动进行即时的四维视频测量,无需使用造影剂。这种“无标记”、对振动不敏感的成像系统能够利用无害光水平,在多种放大倍数和波长下,对反射状态下的生物物体进行测量,视野范围从几百微米到一毫米不等。该仪器的核心是一个相位测量相机(PMC),它利用像素化相位掩膜并借助光的偏振特性,能够同时测量多个干涉图样。利用这项技术可以以视频速率实时创建相位图像电影,从而跟踪动态运动和体积变化。物体放置在盖玻片下液体中的反射表面上。相位值被转换为光学厚度数据,可用于体积、运动和形态学研究。将展示来自多种不同生物体(如鞭毛虫和轮虫)的数据,以及添加各种分解细胞的试剂后对人类乳腺癌细胞的测量数据。这些数据突出了监测不同生物过程和运动的实例。

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Dynamic phase imaging for in vitro process monitoring and cell tracking.用于体外过程监测和细胞追踪的动态相成像
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本文引用的文献

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Optical heterodyne profilometry.光学外差轮廓测量法。
Appl Opt. 1981 Feb 15;20(4):610-8. doi: 10.1364/AO.20.000610.

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