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Imaging stented tissue engineered blood vessel mimics

机译:成像支持组织工程血管模仿

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An ideal vascular stent design promotes a thin anti-thrombogenic cellular lining while avoiding restenosis. To assess the utility of their designs, stent manufactures often use destructive techniques such as scanning electron microscopy to measure the percentage of the stent covered with a cellular lining. In this study, we use a custom-built longitudinal/rotational scanning endoscope and determine the ability of optical coherence tomography (OCT) to quantify the percent cellular coverage of stented tissue engineered blood vessel mimics. Stents were deployed within twelve mimics after 14-days of development in bioreactors. OCT images were acquired within the bioreactor at several time points after the stent deployment. At 20-days post deployment, the mimics were fixed and imaged volumetrically with OCT. Matlab software was developed to automatically calculate the percent cellular coverage from the OCT images. Algorithm results were compared to similar measurements performed with bis-benzimide (BBI) fluorescence imaging and manually calculated percent coverage from three different observers of the OCT images. Progressive accumulation of cellular material on the stents could be visualized with OCT. For the volumetric images, the algorithm calculated percent cellular coverages ranging from 11 to 76%. Good agreement was found between the OCT-based measurements and the other techniques. On average, the algorithm differed less than 5% from the manual percent coverage calculations. OCT together with automated software can provide an accurate, non-destructive measurement of the percent cellular coverage of vascular stents.
机译:理想的血管支架设计促进薄血栓形成细胞衬里,同时避免再狭窄。为了评估其设计的效用,支架制造经常使用诸如扫描电子显微镜的破坏性技术来测量用细胞衬里覆盖的支架的百分比。在这项研究中,我们使用定制的纵向/旋转扫描内窥镜,并确定光学相干断层扫描(OCT)的能力,以量化支架组织工程血管模拟物的百分比百分比。在生物反应器的发育14天后,支架在120天的模仿中部署。在支架部署后几个时间点在生物反应器内获得OCT图像。在部署后20天,MIMICS在10月份固定和成像。 MATLAB软件是开发的,以自动计算OCT图像的百分比百分比。将算法结果与双苯并酰亚胺(BBI)荧光成像进行的类似测量进行了比较,并且手动计算OCT图像的三种不同观察者的覆盖率。可以用OCT可视化支架上细胞材料的渐进积累。对于体积图像,该算法计算的百分比百分比范围为11至76%。在基于OCT基测量和其他技术之间发现了良好的一致性。平均而言,该算法在手动百分比覆盖计算中不同于5%。 OCT与自动化软件一起可以提供准确,无损测量血管支架的百分比百分比。

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