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首页> 外文期刊>Dendrochronologia >Applying methods of hard tissues preparation for wood anatomy: Imaging polished samples embedded in polymethylmethacrylate
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Applying methods of hard tissues preparation for wood anatomy: Imaging polished samples embedded in polymethylmethacrylate

机译:木材解剖学中硬组织制剂的应用方法:嵌入聚甲基丙烯酸甲酯中的成像抛光样品

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摘要

Cambial activity records short and long-term environmental signals in xylem anatomy, creating a permanent archive. Quantitative wood anatomy deciphers the relationship between cell structure and function in a spatiotemporal context. Obtaining high-resolution images of wood anatomical preparations is a critical stage in the process of decoding this information. Damage to cellular structures when sectioning by microtome is one of the main problems in the preparation of high-quality micro-sections. Cell damage leads to the occurrence of artifacts – most often related to broken cell walls – hindering the performance of image recognition programs, and increasing the time spent on the manual editing of images. In this work, we propose an alternative method to microtomy, based on embedding-polishing protocols established for hard tissue preparation. Wood samples are embedded in a transparent and non-reactive resin as polymethylmethacrylate (PMM) that is subsequently ground and polished. Being able to acquire images from the stained or unstained polished surfaces of the PMM-blocks and sections (thinner than 100?μm) by using a wide range of optical methods such as reflected polarizing microscopy, epifluorescence microscopy, bright-field microscopy with diffuse illumination and circularly polarizing microscopy. This embedding method improves the mechanical integrity and quality of wood anatomical preparations, eliminating the problem of broken cell walls. Furthermore, this technique allows the preparation and analysis of large tissue surfaces.
机译:Cambial Activity记录了Xylem解剖学中的短期和长期环境信号,创建了永久性档案。定量木解剖学抵抗细胞结构与时空语境中的功能的关系。获得木材解剖学制剂的高分辨率图像是解码此信息的过程中的关键阶段。当通过切片切片切片时对细胞结构的损坏是制备高质量微段的主要问题之一。细胞损坏导致伪影的发生 - 最常与破碎的细胞壁相关 - 阻碍图像识别程序的性能,并增加了在手动编辑图像上花费的时间。在这项工作中,基于为硬组织制备的嵌入抛光方案提出了一种替代方法对微调的方法。将木质样品嵌入透明和非反应性树脂中,作为随后研磨并抛光的聚甲基丙烯酸甲酯(PMM)。能够通过使用宽范围的光学方法从PMM-块和PMM块和未染色的抛光表面的图像从污染或未染色的抛光表面(比100≤μm薄)获得图像,例如反射偏振显微镜,离散照明的偏光显微镜,偏荧光显微镜,荧光显微镜明亮场显微镜和圆偏振显微镜。这种嵌入方法提高了木材解剖学制剂的机械完整性和质量,消除了细胞壁破碎的问题。此外,该技术允许制备和分析大型组织表面。

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