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首页> 外文期刊>Applied Medical Informatics >Comparison between Digital Image Processing and Spectrophotometric Measurements Methods. Application in Electrophoresis Interpretation
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Comparison between Digital Image Processing and Spectrophotometric Measurements Methods. Application in Electrophoresis Interpretation

机译:数字图像处理和分光光度测量方法之间的比较。在电泳解释中的应用

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Background: Spectrophotometer is a very common instrument in various scientific fields and givesaccurate information about light absorbance and transmittance through materials usingmonochromatic light source. Though, devices used in spectrophotometry can be quite expensive,using components with high technical specifications and the procedure itself is time consuming. Regular digital image acquisition instruments like scanners and cameras on the other hand uses verycheap electronic components to record the information on 3 wide band channels (Red, Green,Blue). Purpose: This paper studies the possibility of correlating the measurements from thespectrophotometer with raw data from digital image acquisition instruments. Materials and Methods:Because the results will be used in protein electrophoresis, we prepared o set of plates with bloodserum in different dilutions, stained with Coomassie Brilliant Blue. The absorbance of the resultingplates has been measured using a spectrophotometer and after that, the plates were scanned with aregular office scanner. The digital image was converted in different color spaces (gray scale, RGB,HSV, HSL, CIEXYZ and CIELAB) using custom developed software in C++. We statisticallymeasured the correlation coefficient of different parameters from the color space with theabsorption measured with the spectrophotometer. Results and Discussion: The findings of this workshow that a consumer digital scanner can be used as a fast and inexpensive alternative tospectrophotometers. This offers the possibility of using scanned images of protein electrophoresisto make quantitative estimations regarding the proteinogram.
机译:背景:分光光度计是各个科学领域中非常常见的仪器,它提供有关使用单色光源的材料的吸光率和透射率的准确信息。但是,分光光度法中使用的设备可能会非常昂贵,使用具有高技术规格的组件,而且过程本身很耗时。另一方面,诸如扫描仪和照相机之类的常规数字图像采集仪器使用非常便宜的电子组件来在3个宽带通道(红色,绿色,蓝色)上记录信息。目的:本文研究将分光光度计的测量值与数字图像采集仪器的原始数据相关联的可能性。材料和方法:因为该结果将用于蛋白质电泳,所以我们准备了一组带有不同稀释度的血清的板,并用考马斯亮蓝染色。已经使用分光光度计测量了所得板的吸光度,然后,使用圆形办公室扫描仪对板进行扫描。使用C ++中定制开发的软件,可以在不同的色彩空间(灰度,RGB,HSV,HSL,CIEXYZ和CIELAB)中转换数字图像。用分光光度计测量吸收值,从色彩空间统计测量不同参数的相关系数。结果与讨论:这项工作的发现表明,消费类数字扫描仪可以用作分光光度计的一种快速且廉价的替代品。这提供了使用蛋白质电泳的扫描图像对蛋白质图进行定量估计的可能性。

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