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用于 CT 成像应用的合成 PVC/DEHP 心肌组织模拟材料的开发和特性研究。

Development and characterization of a synthetic PVC/DEHP myocardial tissue analogue material for CT imaging applications.

机构信息

a Institute of Biomaterials and Biomedical Engineering, University of Toronto , Toronto , Canada.

c Joint Department of Medical Imaging , Peter Munk Cardiac Centre, University Health Network, University of Toronto , Toronto , Canada.

出版信息

J Biomater Sci Polym Ed. 2018 Apr;29(5):582-598. doi: 10.1080/09205063.2018.1433421. Epub 2018 Feb 5.

Abstract

A simple myocardial analogue material has great potential to help researchers in the creation of medical CT Imaging phantoms. This work aims to outline a Bis(2-ethylhexyl) phthalate (DEHP) plasticizer/PVC material to achieve this. DEHP-PVC was manufactured in three ratios, 75, 80, and 85% DEHP by heating at 110 °C for 10 min to promote DEHP-PVC binding followed by heating at 150 °C to melt the blend. The material was then tested utilizing FTIR, tensile testing, dynamic mechanical analysis and imaged with computed tomography. The FTIR testing finds the presence of C-CL and carbonyl bonds that demonstrate the binding required in this plasticized material. The tensile testing finds a modulus of 180-20 kPa that increases with the proportion of plasticizer. The dynamic mechanical analysis finds a linear increase in viscoelastic properties with a storage/loss modulus of 6/.5-120/18 kPa. Finally, the CT number of the material increases with higher PVC content from 55 to 144HU. The 80% DEHP-PVC ratio meets the mechanical and CT properties necessary to function as a myocardial tissue analogue.

摘要

一种简单的心肌类似物材料具有很大的潜力,可以帮助研究人员创建医学 CT 成像体模。这项工作旨在概述邻苯二甲酸二(2-乙基己基)酯 (DEHP) 增塑剂/PVC 材料来实现这一目标。DEHP-PVC 以 75、80 和 85% 的 DEHP 三种比例制造,在 110°C 下加热 10 分钟以促进 DEHP-PVC 结合,然后在 150°C 下加热以熔化混合物。然后利用傅里叶变换红外光谱 (FTIR)、拉伸试验、动态力学分析和计算机断层扫描对该材料进行测试。FTIR 测试发现存在 C-CL 和羰基键,表明这种增塑材料需要结合。拉伸试验发现模量为 180-20 kPa,随增塑剂比例的增加而增加。动态力学分析发现粘弹性随储存/损耗模量 6/.5-120/18 kPa 呈线性增加。最后,材料的 CT 数随更高的 PVC 含量从 55 增加到 144HU。80% DEHP-PVC 比例满足作为心肌组织模拟物所需的机械和 CT 特性。

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