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用于X射线计算机断层扫描的心脏组织最佳碘染色。

Optimal iodine staining of cardiac tissue for X-ray computed tomography.

作者信息

Butters Timothy D, Castro Simon J, Lowe Tristan, Zhang Yanmin, Lei Ming, Withers Philip J, Zhang Henggui

机构信息

School of Physics and Astronomy, The University of Manchester, Manchester, Greater Manchester, United Kingdom.

School of Materials Science, The University of Manchester, Manchester, Greater Manchester, United Kingdom.

出版信息

PLoS One. 2014 Aug 29;9(8):e105552. doi: 10.1371/journal.pone.0105552. eCollection 2014.

Abstract

X-ray computed tomography (XCT) has been shown to be an effective imaging technique for a variety of materials. Due to the relatively low differential attenuation of X-rays in biological tissue, a high density contrast agent is often required to obtain optimal contrast. The contrast agent, iodine potassium iodide ([Formula: see text]), has been used in several biological studies to augment the use of XCT scanning. Recently I2KI was used in XCT scans of animal hearts to study cardiac structure and to generate 3D anatomical computer models. However, to date there has been no thorough study into the optimal use of I2KI as a contrast agent in cardiac muscle with respect to the staining times required, which has been shown to impact significantly upon the quality of results. In this study we address this issue by systematically scanning samples at various stages of the staining process. To achieve this, mouse hearts were stained for up to 58 hours and scanned at regular intervals of 6-7 hours throughout this process. Optimal staining was found to depend upon the thickness of the tissue; a simple empirical exponential relationship was derived to allow calculation of the required staining time for cardiac samples of an arbitrary size.

摘要

X射线计算机断层扫描(XCT)已被证明是一种对多种材料有效的成像技术。由于生物组织中X射线的微分衰减相对较低,通常需要使用高密度造影剂以获得最佳对比度。造影剂碘化钾([化学式:见原文])已在多项生物学研究中用于增强XCT扫描的效果。最近,碘化钾被用于动物心脏的XCT扫描,以研究心脏结构并生成三维解剖学计算机模型。然而,迄今为止,尚未对碘化钾作为心肌造影剂的最佳使用方法进行全面研究,尤其是所需的染色时间,而染色时间已被证明会对结果质量产生重大影响。在本研究中,我们通过在染色过程的不同阶段系统地扫描样本解决了这个问题。为此,将小鼠心脏染色长达58小时,并在此过程中每隔6 - 7小时定期进行扫描。发现最佳染色效果取决于组织厚度;推导出了一个简单的经验指数关系,以便计算任意大小心脏样本所需的染色时间。

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