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Bidimensional scan in plants using diffuse reflectance in the range 380 nm–680 nm

机译:使用漫反射率在380nm-680nm范围内的植物中的均衡扫描

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This paper presents the methodology of implementation and manipulations of a diffuse reflectance system for three dimensional images on Geranium leaves, two of the axes are for a two-dimensional scan performed with a programmable electromechanical subsystem. The third axis is derived from the amount of energy absorbed by the substances found in plants. The spectrum used is in the range of 380 nm to 680 nm (visible light) and as a reference for reflectance, light was projected on a barium sulfate (BaSO4) ceramic due to its high rate of diffusion of light radiation. This system allows observing certain substances or defects of the leaf that are in the opposite side where light is projected for the measurements. In turn, the system can select a single wavelength to distinguish the differences in uptake by substances that may have the Geranium leaf after the measurement. The system is currently being used in other types of biological tissues to identify different substances to be related.
机译:本文介绍了对天竺葵叶上三维图像的漫反射系统的实施和操纵的方法论,两个轴用于用可编程机电子系统执行的二维扫描。 第三轴来自于在植物中发现的物质吸收的能量的量。 所使用的光谱在380nm至680nm(可见光)的范围内,并且作为反射率的参考,由于光辐射的高扩散速率,在硫酸钡(Baso4)陶瓷上突出光。 该系统允许观察叶片中的某些物质或缺陷,该物质或叶片的叶片突出为测量。 反过来,系统可以选择单个波长,以区分在测量后可能具有天竺葵叶的物质的吸收差异。 该系统目前用于其他类型的生物组织以识别有关的不同物质。

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