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High-resolution Episcopic Microscopy (HREM) - Simple and Robust Protocols for Processing and Visualizing Organic Materials

机译:高分辨率镜检显微镜(HREM)-用于处理和可视化有机材料的简单而坚固的协议

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摘要

We provide simple protocols for generating digital volume data with the high-resolution episcopic microscopy (HREM) method. HREM is capable of imaging organic materials with volumes up to 5 x 5 x 7 mm3 in typical numeric resolutions between 1 x 1 x 1 and 5 x 5 x 5 µm3. Specimens are embedded in methacrylate resin and sectioned on a microtome. After each section an image of the block surface is captured with a digital video camera that sits on the phototube connected to the compound microscope head. The optical axis passes through a green fluorescent protein (GFP) filter cube and is aligned with a position, at which the bock holder arm comes to rest after each section. In this way, a series of inherently aligned digital images, displaying subsequent block surfaces are produced. Loading such an image series in three-dimensional (3D) visualization software facilitates the immediate conversion to digital volume data, which permit virtual sectioning in various orthogonal and oblique planes and the creation of volume and surface rendered computer models. We present three simple, tissue specific protocols for processing various groups of organic specimens, including mouse, chick, quail, frog and zebra fish embryos, human biopsy material, uncoated paper and skin replacement material.
机译:我们提供了使用高分辨率镜检显微镜(HREM)方法生成数字量数据的简单协议。 HREM能够对体积最大为5 x 5 x 7 mm 3 的有机材料进行成像,典型的数字分辨率为1 x 1 x 1至5 x 5 x 5 µm 3 。将标本包埋在甲基丙烯酸酯树脂中,并在切片机上切片。在每个部分之后,通过位于与复合显微镜头相连的光电管上的数码摄像机捕获块表面的图像。光轴穿过绿色荧光蛋白(GFP)滤光镜立方体,并与每个部分之后固定支架的臂的位置对齐。以这种方式,产生了一系列固有对准的数字图像,显示了随后的块表面。将这样的图像系列加载到三维(3D)可视化软件中有助于立即转换为数字体数据,从而允许在各种正交和倾斜平面中进行虚拟切片,并创建体和表面渲染的计算机模型。我们提出了三种简单的,针对组织的协议,用于处理各种有机标本,包括小鼠,雏鸡,鹌鹑,青蛙和斑马鱼的胚胎,人体活检材料,无涂层纸和皮肤替代材料。

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