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一种用于从放射自显影片断层扫描重建大鼠脑三维图像的低温包埋和断层配准策略。

A low temperature embedding and section registration strategy for 3D image reconstruction of the rat brain from autoradiographic sections.

作者信息

Simonetti Arjan W, Elezi Vedat A, Farion Régine, Malandain Grégoire, Segebarth Christoph, Rémy Chantal, Barbier Emmanuel L

机构信息

INSERM, Unité mixte 594, Neuroimagerie Fonctionnelle et Métabolique, Centre Hospitalier Universitaire Pavillon B, BP217, F-38043 Grenoble Cedex 09, France; Université Joseph Fourier, Grenoble F-38043 Cedex 09, France.

出版信息

J Neurosci Methods. 2006 Dec 15;158(2):242-50. doi: 10.1016/j.jneumeth.2006.06.004. Epub 2006 Jul 27.

Abstract

In studies on animal models of human brain pathologies, three-dimensional reconstruction from histological sections is particularly useful when assessing the morphologic, functional and biochemical changes induced by pathology. It allows assessing lesion heterogeneity in planes different from the cutting plane and allows correlating the histology with images obtained in vivo, such as by means of magnetic resonance imaging. To create a 3D volume from autoradiographic sections with minimal distortion, both cryosectioning as well as section registration need to be optimal. This paper describes a strategy whereby four external fiducial markers are positioned outside the rat brain with the use of a low temperature brain embedding procedure. The fiducial markers proposed here can be rapidly added to any frozen tissue block with no impact on the subsequent histological operations. Since embedding is performed at a low temperature, no tissue degradation occurs due to sample heating. The markers enable robust and almost error free registration, even in the presence of missing sections and poor image quality. Furthermore, the markers may be used to partially correct for global distortions.

摘要

在对人类脑部病理学动物模型的研究中,当评估由病理学引起的形态学、功能和生化变化时,从组织学切片进行三维重建特别有用。它能够在与切片平面不同的平面上评估病变异质性,并能将组织学与体内获得的图像(如通过磁共振成像)相关联。为了从放射自显影片中创建一个失真最小的三维体积,冷冻切片以及切片配准都需要达到最佳状态。本文描述了一种策略,即通过低温脑包埋程序在大鼠脑外放置四个外部基准标记。这里提出的基准标记可以快速添加到任何冷冻组织块上,而不会对后续的组织学操作产生影响。由于包埋是在低温下进行的,不会因样品加热而导致组织降解。即使存在缺失切片和图像质量较差的情况,这些标记也能实现稳健且几乎无误差的配准。此外,这些标记可用于部分校正整体失真。

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