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首页> 外文期刊>Plant methods >Visualization of internal 3D structure of small live seed on germination by laboratory-based X-ray microscopy with phase contrast computed tomography
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Visualization of internal 3D structure of small live seed on germination by laboratory-based X-ray microscopy with phase contrast computed tomography

机译:基于实验室的X射线显微镜与相对造影的实验室X射线显微镜萌发的内部3D结构的可视化

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The visualization of internal 3D-structure of tissues at micron resolutions without staining by contrast reagents is desirable in plant researches, and it can be achieved by an X-ray computed tomography (CT) with a phase-retrieval technique. Recently, a laboratory-based X-ray microscope adopting the phase contrast CT was developed as a powerful tool for the observation of weakly absorbing biological samples. Here we report the observation of unstained pansy seeds using the laboratory-based X-ray phase-contrast CT. A live pansy seed within 2?mm in size was simply mounted inside a plastic tube and irradiated by in-house X-rays to collect projection images using a laboratory-based X-ray microscope. The phase-retrieval technique was applied to enhance contrasts in the projection images. In addition to a dry seed, wet seeds on germination with the poorer contrasts were tried. The phase-retrieved tomograms from both the dry and the wet seeds revealed a cellular level of spatial resolutions that were enough to resolve cells in the seeds, and provided enough contrasts to delineate the boundary of embryos manually. The manual segmentation allowed a 3D rendering of embryos at three different stages in the germination, which visualized an overall morphological change of the embryo upon germination as well as a spatial arrangement of cells inside the embryo. Our results confirmed an availability of the laboratory-based X-ray phase-contrast CT for a 3D-structural study on the development of small seeds. The present method may provide a unique way to observe live plant tissues at micron resolutions without structural perturbations due to the sample preparation.
机译:在植物研究中,希望在不染色的微米分辨率下的薄片分辨率的内部3D结构的可视化,并且可以通过具有相位检索技术的X射线计算机断层扫描(CT)来实现。最近,采用相对对比CT的基于实验室的X射线显微镜作为观察弱吸收生物样品的强大工具。在这里,我们使用基于实验室的X射线相位对比度CT报告未染色的偶像种子的观察。在2×mm内的现场蝴蝶兰种子简单地安装在塑料管内并由内部X射线照射,使用基于实验室的X射线显微镜收集投影图像。应用相位检索技术以增强投影图像中的对比度。除了干燥的种子外,尝试了与较较差的对比的染色种子。来自干燥和湿的种子的相位检索的断层照片揭示了足以解析种子中细胞的空间分辨率的细胞水平,并提供足够的对比,以便手动描绘胚胎的边界。手动分段允许在萌发中的三个不同阶段进行3D呈现胚胎,其在发芽时可视化胚胎的整体形态变化以及胚胎内部细胞的空间排列。我们的结果证实了基于实验室的X射线相位对比CT的可用性,用于小种子的发展的3D结构研究。本方法可以提供一种独特的方法来观察微米分辨率的活植物组织,而不会由于样品制备而没有结构扰动。

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