Goldstein Goldie, Creath Katherine
4D Technology Corporation, Tucson AZ 85706 ; College of Optical Sciences, The University of Arizona, Tucson, AZ USA 85721.
4D Technology Corporation, Tucson AZ 85706 ; College of Optical Sciences, The University of Arizona, Tucson, AZ USA 85721 ; Optineering, Tucson, AZ USA 85719.
Proc SPIE Int Soc Opt Eng. 2012 Sep 13;8493:84930N. doi: 10.1117/12.929338.
This paper describes recent advances in developing an automatic background leveling algorithm for a new, novel interference 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. "Label-free" measurements of biological objects in reflection using harmless light levels are possible without the need for scanning and vibration isolation. This instrument utilizes a pixelated phase mask enabling simultaneous measurement of multiple interference patterns taking advantage of the polarization properties of light enabling phase image movies in real time at video rates to track dynamic motions and volumetric changes. Optical thickness data are derived from phase images. This data is processed with an automatic background leveling routine which separates the objects from the background by thresholding the calculated gradient magnitude of the optical thickness data. Low-order Zernike surfaces are fit to the unmasked background pixels and the resulting background shape is removed. This method effectively eliminates background shape for datasets containing both large and small objects. By applying this method to many sequential frames, it results in all the frames having the same mean background value across all frames which is essential for quantitatively montoring time-dependent processes.
本文描述了为一种新型干涉显微镜系统开发自动背景平整算法的最新进展,并展示了活生物样本的图像和数据。专门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瞬时四维视频测量,而无需使用造影剂。利用无害光水平对生物物体进行“无标记”反射测量成为可能,无需扫描和隔振。该仪器利用像素化相位掩膜,利用光的偏振特性同时测量多个干涉图案,能够以视频速率实时生成相位图像电影,以跟踪动态运动和体积变化。光学厚度数据从相位图像中得出。该数据通过自动背景平整程序进行处理,该程序通过对计算出的光学厚度数据的梯度幅度进行阈值处理,将物体与背景分离。低阶泽尼克曲面拟合未掩膜的背景像素,并去除得到的背景形状。该方法有效地消除了包含大物体和小物体的数据集中的背景形状。通过将此方法应用于许多连续帧,所有帧在所有帧上都具有相同的平均背景值,这对于定量监测随时间变化的过程至关重要。