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Application of optical coherence tomography for imaging of scaffold structure and micro-flows characterization

机译:光学相干断层扫描在脚手架结构和微流特征中的应用

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Tissue engineering, rapidly developing branch of bioscience, is widely adopted for the purposes of the tissue growing using the substrate materials. Three-dimensional porous scaffolds possess a great opportunity for the directional growth of the cells and for the supplying them with nutrients. However, the complex porous structure of the scaffolds creates difficulties for the measurements and control of nutrients flow. We applied optical coherence tomography (OCT) for imaging of the scaffold structure. We also investigated the possibility of using Doppler OCT to monitor the flow velocity distribution within the scaffold. The average scaffold's pore diameter has been estimated using electron microscopy. We show that with Doppler OCT it is possible to monitor complex micro-flow and estimate the shear stress (i.e. enhancing factor of cell growing) acting on the cells within the scaffold and to find the optimal input flow rate, consequently.
机译:用于组织工程,迅速发展的生物科学分支,广泛采用基材生长的组织生长的目的。三维多孔脚手架具有巨大的机会,用于细胞的定向生长,并为其提供营养素。然而,支架的复杂多孔结构为营养物质的测量和控制产生困难。我们应用光学相干断层扫描(OCT)以进行脚手架结构的成像。我们还调查了使用多普勒OCT来监测支架内的流速分布的可能性。使用电子显微镜估计平均支架的孔径。我们表明,随着多普勒OCT,可以监测复杂的微流量并估计作用在支架内的细胞上的剪切应力(即,增强细胞生长因子),并因此找到最佳输入流速。

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