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视频增强对比偏振(AVEC-POL)显微镜:一种应用于检测阔颈异网菌活动的网状伪足网络中双折射的新方法。

Video-enhanced contrast polarization (AVEC-POL) microscopy: a new method applied to the detection of birefringence in the motile reticulopodial network of Allogromia laticollaris.

作者信息

Allen R D, Travis J L, Allen N S, Yilmaz H

出版信息

Cell Motil. 1981;1(3):275-89. doi: 10.1002/cm.970010302.

Abstract

A new method is described for recording rapid processes of cell motility in polarized light. The Allen video-enhanced contrast (AVEC-POL) method of polarization microscopy achieves significant improvements in resolution, contrast, and the visibility of fine detail by a combination of novel adjustments to a standard (unrectified) polarizing microscope and video camera. Using the full working aperture of a high-power planapochromatic objective lens and compensator setting of lambda/9-lambda/4, visible images appear lacking in contrast. However, the same images viewed with an appropriate video camera equipped with an electronic offset adjustment can be made to appear with as much contrast as desired, revealing a significantly greater amount of fine detail in the image than can be seen by high extinction visual microscopy alone. At bias retardations between one-ninth and one-quarter wave, the diffraction anomaly observed near extinction disappears. Consequently, polarizing rectifiers are not required with the AVEC-POL method, and images previously requiring photographic exposures of around 20 seconds are sufficiently bright to be registered on the video monitor in 1/60 second. Using an intensity monitor, quantitative measurements of cellular birefringence can be retrieved from live or videotaped images displaying a linear relationship between contrast and phase retardation due to birefringence. The AVEC-POL method also renders accessible to polarized light analysis a number of objects that scatter or depolarize too much light to be studied by high extinction methods. The method is demonstrated on model objects and applied to the highly motile reticulopodial network of Allogromia laticollaris. Rapid motion in close association with microtubules can now be analyzed in greater detail at a significant reduction in the cost of recording.

摘要

本文描述了一种用于记录细胞在偏振光下快速运动过程的新方法。偏振显微镜的艾伦视频增强对比度(AVEC-POL)方法通过对标准(未校正)偏振显微镜和摄像机进行一系列新颖的调整,在分辨率、对比度和细微细节的可见性方面取得了显著改进。使用高倍平场复消色差物镜的全工作孔径以及λ/9 - λ/4的补偿器设置时,可见图像的对比度似乎不足。然而,使用配备电子偏移调整的合适摄像机观看相同图像时,可以使其呈现出所需的任意对比度,从而揭示出比仅通过高消光视觉显微镜所能看到的更多的细微细节。在偏置延迟为九分之一波至四分之一波之间时,在消光附近观察到的衍射异常消失。因此,AVEC-POL方法不需要偏振整流器,并且之前需要约20秒摄影曝光的图像现在亮度足以在1/60秒内记录在视频监视器上。使用强度监视器,可以从实时或录像图像中获取细胞双折射的定量测量值,这些图像显示出由于双折射导致的对比度和相位延迟之间的线性关系。AVEC-POL方法还使许多因散射或使光去极化过多而无法用高消光方法研究的物体能够进行偏振光分析。该方法在模型物体上得到了验证,并应用于大颈异网菌高度活跃的网状伪足网络。现在可以更详细地分析与微管紧密相关的快速运动,同时记录成本显著降低。

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