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Statistical Characterization of Engineered Tissues Using Confocal Mosaic Technology

机译:使用共聚焦马赛克技术对工程组织进行统计表征

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摘要

Characterization of engineered tissues using optical methods often involves tradeoff between the fraction of total volume that is imaged and the spatial resolution. The limitation is not technological but rather practical, having more to do with effective probe designs and computer memory storage for large datasets. In this paper, we propose using confocal mosaicing, a technique used to characterize large volumes of excisioned biopsies from Mohs surgeries, to characterizing collagen gels. This technique stitches together high-resolution 3D images of a series adjacent millimeter sized regions that collectively make up areas that are ~cm~2. Image acquisition time is approximately 5 min. The resulting high-resolution images closely resemble hematoxylin and eosin histological sections, only obtained without the time-consuming embedding and sectioning steps. Disk-shaped collagen gels that are 1 ml volume and -1.5 cm diameter were prepared with smooth muscle cells and imaged at days 1 and 5. Using the digital staining technique, we were able to survey the spatial distribution of cells in the hydrogel and assess spatial heterogeneity in 3D from the fluorescence data. The reflectance data provided information on collagen fibril structure and matrix remodeling by the cells. Digital staining presented the data in a way that is easily interpreted by tissue engineers. Altogether, we believe confocal mosaicing and digital staining represents an important technological novelty that significantly advances nondestructive optical evaluation of engineered tissues.
机译:使用光学方法对工程组织进行表征通常需要在成像的总体积分数与空间分辨率之间进行权衡。该限制不是技术上的而是实用的,与有效的探针设计和大型数据集的计算机内存存储有更多关系。在本文中,我们建议使用共聚焦镶嵌技术(一种用于表征从莫氏手术中切除的大量活检组织)来表征胶原蛋白凝胶的技术。这项技术将一系列相邻毫米级区域的高分辨率3D图像缝合在一起,这些区域共同组成了约cm-2的区域。图像获取时间约为5分钟。所得的高分辨率图像非常类似于苏木精和曙红的组织学切片,仅在没有费时的嵌入和切片步骤的情况下获得。用平滑肌细胞制备大小为1 ml,直径为-1.5 cm的圆盘状胶原蛋白凝胶,并在第1天和第5天成像。使用数字染色技术,我们能够调查水凝胶中细胞的空间分布并评估来自荧光数据的3D空间异质性。反射率数据提供了有关胶原原纤维结构和细胞对基质重塑的信息。数字染色以组织工程师易于理解的方式显示数据。总而言之,我们相信共聚焦镶嵌和数字染色代表了一项重要的技术新颖性,可显着提高对工程组织的无损光学评估。

著录项

  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Department of Biomedical Engineering, Oregon Health Science University, 3303 SW Bond Ave., Portland, OR, 97239, USA;

    rnDepartment of Biomedical Engineering, Oregon Health Science University, 3303 SW Bond Ave., Portland, OR, 97239, USA;

    rnDepartment of Biomedical Engineering, Oregon Health Science University, 3303 SW Bond Ave., Portland, OR, 97239, USA;

    rnDepartment of Biomedical Engineering, Oregon Health Science University, 3303 SW Bond Ave., Portland, OR, 97239, USA;

    rnDepartment of Biomedical Engineering, Oregon Health Science University, 3303 SW Bond Ave., Portland, OR, 97239, USA Department of Dermatology, Oregon Health Science University, 3181 Sam Jackson Park Rd., Portland, OR, 97239, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用物理学;
  • 关键词

    confocal microscopy, tissue engineering, collagen, cells, fluorescence imaging, mosaics;

    机译:共聚焦显微镜,组织工程,胶原蛋白,细胞,荧光成像,马赛克;

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