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3D VISUALIZATION OF ROOT SYSTEM IN SITU BASED ON X-RAY CT TECHNOLOGY

机译:基于X射线CT技术的原位的Root System的3D可视化

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The root is an important plant organ for nutrient and water uptake from the surrounding soil. Because of the special growing environment and complex structure, the root system is more difficult to quantify than the shoot. Observation and measurement of root architecture in situ has been a technical bottleneck for research on plant root systems. To solve the technical problem, the three-dimensional visualization of root system in situ was implemented with using X-ray CT technology in this paper. By means of MSCT scanner, the experiments to acquire images of plant roots in situ were done at first for several varieties plant roots including soybean, banyan seedling and so on, which were growing in different mediums including red soil, fine sand and organic soil. And it was proved that the method plant root imaging in situ based on XCT technology was feasible. Based on the spatial geometrical and morphological features of root systems, a recursive segmentation algorithm with slice by slice is proposed and implemented. It was able to clean markedly up the pixels non-root regions of which the gray levels were very similar to roots' regions and the positions were very close to roots' regions. And it was very effective to improve the accuracy and stability of segmentation for the CT images of root systems in situ. For implementing the three-dimensional reconstruction of root systems in situ, an improved of MC (Marching Cubes) algorithm with the permeation of segmenting processing was proposed, and it broke through the limit of using thresholding segmentation and avoided repeating time caused with segmentation and reconstruction running separately. The three-dimensional visualization of plant roots in situ was implemented under the environment of PC with some basic functions of measurement for root architecture.
机译:根部是来自周围土壤的营养素和水吸收的重要植物器官。由于环境不断增长的环境和复杂的结构,根系更难以量化而不是拍摄。原位的检测和测量原位是植物根系系统研究的技术瓶颈。为了解决技术问题,在本文中使用X射线CT技术实现了原位的根系三维可视化。通过MSCT扫描仪,首先在包括大豆,榕树幼苗等植物根部获得原地植物根部的实验,这些植物根部在不同培养基中生长,包括红壤,细砂和有机土壤。事实证明,基于XCT技术的原位原位方法植物根成像是可行的。基于根系的空间几何和形态特征,提出并实施了具有切片切片的递归分割算法。它能够明显清洁灰色水平与根的区域非常相似的像素的非根区域,并且位置非常接近根部区域。并且提高根系CT图像的分割的准确性和稳定性非常有效。为了实现原位的根系的三维重建,提出了一种改进的MC(游行立方体)算法具有分割处理的渗透,并且通过使用阈值分割的限制并避免了分割和重建引起的重复时间单独运行。植物根的三维可视化原位在PC的环境下实现了一种根系结构的一些基本函数的基本功能。

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