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Training to Improve Precision and Accuracy in the Measurement of Fiber Morphology

机译:进行培训以提高纤维形态测量的精度和准确度

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摘要

An estimated $7.1 billion dollars a year is spent due to irreproducibility in pre-clinical data from errors in data analysis and reporting. Therefore, developing tools to improve measurement comparability is paramount. Recently, an open source tool, DiameterJ, has been deployed for the automated analysis of scanning electron micrographs of fibrous scaffolds designed for tissue engineering applications. DiameterJ performs hundreds to thousands of scaffold fiber diameter measurements from a single micrograph within a few seconds, along with a variety of other scaffold morphological features, which enables a more rigorous and thorough assessment of scaffold properties. Herein, an online, publicly available training module is introduced for educating DiameterJ users on how to effectively analyze scanning electron micrographs of fibers and the large volume of data that a DiameterJ analysis yields. The end goal of this training was to improve user data analysis and reporting to enhance reproducibility of analysis of nanofiber scaffolds. User performance was assessed before and after training to evaluate the effectiveness of the training modules. Users were asked to use DiameterJ to analyze reference micrographs of fibers that had known diameters. The results showed that training improved the accuracy and precision of measurements of fiber diameter in scanning electron micrographs. Training also improved the precision of measurements of pore area, porosity, intersection density, and characteristic fiber length between fiber intersections. These results demonstrate that the DiameterJ training module improves precision and accuracy in fiber morphology measurements, which will lead to enhanced data comparability.
机译:由于临床前数据由于数据分析和报告错误而无法再现,估计每年花费71亿美元。因此,开发提高测量可比性的工具至关重要。最近,已经部署了一种开放源代码工具DiameterJ来自动分析为组织工程应用设计的纤维支架的扫描电子显微照片。 DiameterJ可以在几秒钟内通过一张显微照片执行数百到数千个支架纤维直径测量,以及各种其他支架形态特征,从而可以更严格和彻底地评估支架性能。在此,引入了一个在线的,公开的培训模块,以教育DiameterJ用户如何有效地分析纤维的扫描电子显微照片以及DiameterJ分析产生的大量数据。该培训的最终目标是改善用户数据分析和报告,以增强纳米纤维支架分析的可重复性。在培训前后评估用户表现,以评估培训模块的有效性。要求用户使用DiameterJ分析直径已知的纤维的参考显微照片。结果表明,训练提高了扫描电子显微照片中纤维直径测量的准确性和精度。培训还提高了孔面积,孔隙率,相交密度和纤维相交之间的特征纤维长度的测量精度。这些结果表明,DiameterJ训练模块提高了纤维形态测量的准确性和准确性,这将导致增强的数据可比性。

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