首页> 外文期刊>Journal of Neuroscience Methods >Light microscopic image analysis system to quantify immunoreactive terminal area apposed to nerve cells.
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Light microscopic image analysis system to quantify immunoreactive terminal area apposed to nerve cells.

机译:光学显微图像分析系统,用于量化神经细胞的免疫反应末端区域。

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The present report describes a desktop computer-based method for the quantitative assessment of the area occupied by immunoreactive terminals in close apposition to nerve cells in relation to the perimeter of the cell soma. This method is based on Fast Fourier Transform (FFT) routines incorporated in NIH-Image public domain software. Pyramidal cells of layer V of the somatosensory cortex outlined by GABA immunolabeled terminals were chosen for our analysis. A Leitz Diaplan light microscope was employed for the visualization of the sections. A Sierra Scientific Model 4030 CCD camera was used to capture the images into a Macintosh Centris 650 computer. After preprocessing, filtering was performed on the power spectrum in the frequency domain produced by the FFT operation. An inverse FFT with filter procedure was employed to restore the images to the spatial domain. Pasting of the original image to the transformed one using a Boolean logic operation called 'AND'ing produced an image with the terminals enhanced. This procedure allowed the creation of a binary image using a well-defined threshold of 128. Thus, the terminal area appears in black against a white background. This methodology provides an objective means of measurement of area by counting the total number of pixels occupied by immunoreactive terminals in light microscopic sections in which the difficulties of labeling intensity, size, shape and numerical density of terminals are avoided.
机译:本报告介绍了一种基于台式计算机的方法,用于定量评估与细胞体的周长相关的,与神经细胞紧密并置的免疫反应性末端所占的面积。该方法基于NIH-Image公共领域软件中包含的快速傅立叶变换(FFT)例程。选择由GABA免疫标记末端勾勒出的体感皮层V层的锥体细胞进行我们的分析。使用Leitz Diaplan光学显微镜对切片进行可视化。使用Sierra Scientific 4030型CCD相机将图像捕获到Macintosh Centris 650计算机中。在预处理之后,对由FFT操作产生的频域中的功率谱执行滤波。使用带滤波过程的逆FFT将图像恢复到空间域。使用称为“与”(AND)的布尔逻辑运算将原始图像粘贴到转换后的图像上,可以生成具有增强端子效果的图像。此过程允许使用定义良好的阈值128创建二进制图像。因此,终端区域在白色背景上显示为黑色。该方法通过对光学显微部分中免疫反应性末端占据的像素总数进行计数,从而提供了一种客观的面积测量手段,从而避免了标记强度,尺寸,形状和末端数字密度的困难。

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