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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >A fully automated approach to quantitatively determine thickness of tissue-engineered cell sheets.
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A fully automated approach to quantitatively determine thickness of tissue-engineered cell sheets.

机译:一种定量确定组织工程细胞片厚度的全自动方法。

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摘要

Sheet-based tissue engineering is an innovative field that has provided the scientific community with new tissue-engineered products such as skin, cornea, heart valves, and vascular grafts. As this area of tissue engineering progresses toward clinical implementation, quality control becomes more and more important. Imaging methods advertise themselves because of their high resolution and good tissue-fluid contrast. We present and compare two methods, one based on a custom-designed automatized large-area confocal scanner that uses backscattered light for image formation, and one based on optical coherence tomography (OCT). In both modalities, additional image processing is used to extract sheet thickness and density information and to create a quantitative tissue thickness map in a fully automated fashion. In test objects (glass of known thickness and scattering samples) and engineered tissue sheets with artificially introduced defects we found high agreement between the two methods in the measurement of thickness and the visual representation of the defects. Both the OCT and the confocal scanner were able to provide high-detail images visually consistent to those obtained with brightfield microscopy. Both OCT and large-area confocal scanning in combination with specialized image processing algorithms promise to provide information on tissue homogeneity, density, and the presence of potential defects in tissue sheets in an unsupervised fashion and thus help establish new quality control methods in sheet-based tissue engineering.
机译:基于薄片的组织工程是一个创新领域,它为科学界提供了新的组织工程产品,例如皮肤,角膜,心脏瓣膜和血管移植物。随着该组织工程领域向临床实施的发展,质量控制变得越来越重要。成像方法因其高分辨率和良好的组织-流体对比度而广为人知。我们提出并比较了两种方法,一种基于定制设计的自动大面积共焦扫描仪,该扫描仪使用反向散射光进行图像形成,另一种基于光学相干断层扫描(OCT)。在这两种方式中,都使用附加的图像处理来提取纸张厚度和密度信息,并以全自动方式创建定量的组织厚度图。在测试对象(已知厚度和散射样品的玻璃)和人工引入缺陷的工程薄页纸中,我们发现两种方法在厚度测量和缺陷的视觉表示方面具有高度一致性。 OCT和共聚焦扫描仪均能够提供视觉上与明场显微镜获得的图像一致的高细节图像。 OCT和大面积共聚焦扫描与专门的图像处理算法相结合,有望以无监督的方式提供有关组织均质性,密度和组织薄片中潜在缺陷的信息,从而帮助建立基于薄片的新质量控制方法组织工程。

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