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Imaging Tissue Engineered Blood Vessel Mimics with Optical Coherence Tomography

机译:用光学相干断层扫描成像组织工程化的血管模拟物。

摘要

Optical coherence tomography (OCT) is a technology that enables 2D cross-sectional images of tissue microstructure. This interferometric technique provides resolutions of approximately 10-20 um with a penetration depth of 1-2 mm in highly scattering tissues. With the use of fiber optics, OCT systems have been developed for intravascular imaging with a demonstrated improvement in both resolution and dynamic range compared to commercial intravascular ultrasound systems. OCT studies of normal, atherosclerotic, and stented arteries indicate the ability of OCT to visualize arterial structures. These results suggest OCT may be a valuable tool for studying luminal structures in tissue engineered constructs.In the present study, new endoscopic OCT systems and analysis techniques were developed to visualize the growth and response of the cellular lining within a tissue engineered blood vessel mimic (BVM). The BVM consists of two primary components. A biocompatible polymeric scaffold is used to form the tubular structure. Human microvessel cells from adipose tissue are sodded on to the inner surface of the scaffold. These constructs are then developed and imaged within a sterile bioreactor.Three specific aims were defined for the present study. First, an OCT longitudinal scanning endoscope was developed. With this endoscope, a study of 16 BVMs was performed comparing images from OCT and corresponding histological sections. The study demonstrated that endoscopic imaging did not visually damage the mimic cellular lining. OCT images showed excellent correlation with corresponding histologicalsections. Second, a concentric three element endoscope was developed to provide radial cross-sections of the BVM. OCT images using this endoscope monitored lining development on three types of polymeric scaffolds. In the third specific aim, automated algorithms were developed to assess the percent cellular coverage of a stent using volumetric OCT images.The results of the present study suggest that OCT endoscopic systems may be a valuable tool for assessing and optimizing the development of tissue engineered constructs. Conversely, the BVMs modeled the arterial response to deployed stents allowing the development of automated OCT analysis software. These results suggest that blood vessel mimics may be used to advance OCT technology and techniques.
机译:光学相干断层扫描(OCT)是一项使组织微观结构的二维横截面图像成为可能的技术。这种干涉技术可在高度散射的组织中提供大约10-20 um的分辨率和1-2 mm的穿透深度。通过使用光学纤维,已开发出用于血管内成像的OCT系统,与商用血管内超声系统相比,其分辨率和动态范围均有改善。正常,动脉粥样硬化和带支架的动脉的OCT研究表明,OCT能够可视化动脉结构。这些结果表明,OCT可能是研究组织工程构造中的腔结构的有价值的工具。在本研究中,开发了新的内窥镜OCT系统和分析技术,以可视化组织工程血管模拟物中细胞壁的生长和反应BVM)。 BVM由两个主要组件组成。生物相容性聚合物支架用于形成管状结构。来自脂肪组织的人微血管细胞浸入支架的内表面。然后将这些构建体显影并在无菌生物反应器中成像。本研究定义了三个具体目标。首先,开发了OCT纵向扫描内窥镜。使用该内窥镜,对16个BVM进行了研究,比较了OCT和相应的组织学切片的图像。该研究表明,内窥镜成像在视觉上不会损坏模拟细胞衬里。 OCT图像与相应的组织学切片显示出极好的相关性。其次,开发了同心三元件内窥镜以提供BVM的径向横截面。使用该内窥镜的OCT图像可监测三种类型的聚合物支架上的衬里发展情况。在第三个具体目标中,开发了自动算法来使用体积OCT图像评估支架的细胞覆盖百分比。本研究的结果表明,OCT内窥镜系统可能是评估和优化组织工程构建体发展的有价值的工具。相反,BVM对已部署支架的动脉反应进行建模,从而允许开发自动OCT分析软件。这些结果表明,血管模拟物可以用于推进OCT技术。

著录项

  • 作者

    Bonnema Garret;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
  • 中图分类

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