光学相干断层扫描在葡萄球菌繁殖过程中形态学变化的应用

Ke Li, Dezi Li, L. Gao, Zuquan Weng, Mingjie Zheng, Youwu He, Zhifang Li
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引用次数: 0

摘要

光学相干断层扫描(OCT)是一种生物医学成像技术,利用两个光波产生的干涉信息来测量和评估生物组织。由于其灵敏度高、分辨率高、无损检测等优点,被广泛应用于各个领域。本文采用OCT对这三种细菌的繁殖进行检测和评价。同时,我们还使用20倍物镜观察了oct样品臂位置的三种细菌的形态。在实验中,我们收集了三组实验数据,分别是细菌培养2小时、4小时和5小时后收集的图片。从实验数据可以观察到三种细菌的形态和菌落繁殖的变化;繁殖4小时后,可以观察到大肠杆菌和铜绿菌的形态;繁殖5小时后可观察到三种细菌的形态结构;通过对实验数据进行三维重建,可以更清晰地看到细菌的三维形态,更有利于细菌种类的鉴定。实验结果表明,OCT可用于检测微米量级的细菌有机体,并可观察细菌在不同时期的繁殖过程和形态,以鉴定细菌种类。这对生物医学临床应用中细菌类型的无创鉴定有很大帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of optical coherence tomography for morphological change of Staphylococcus during reproduction
Optical coherence tomography (OCT) is a biomedical imaging technology that uses interference information generated by two light waves to measure and evaluate biological tissues. Because of its high sensitivity, high resolution, and non-destructive testing, it is widely used in various fields. In this paper, OCT is used to detect and evaluate the reproduction of the three bacteria. At the same time, we also use a 20-fold objective lens to observe the morphology of the three bacteria at the position of the sample arm of the OCT. In the experiment, three groups of experimental data were collected, which were pictures collected after two hours, four hours, and five hours of bacterial culture. From the experimental data, the morphology and colony reproduction changes of the three bacteria can be observed; after 4 hours of reproduction, the morphology of E. coli and aeruginosa can be observed; Morphological structure of the three bacteria could be observed after 5 hours of reproduction; through the three-dimensional reconstruction of the experimental data, the three-dimensional morphology of the bacteria can be seen more clearly, which is more conducive to the identification of bacterial species. Experimental results show that OCT can be used to detect bacterial organisms on the order of micrometers, and can observe the reproduction process and morphology of bacteria in different periods, to identify bacterial species. This is of great help in the non-invasive identification of bacterial types in clinical applications of biomedicine.
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