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首页> 外文期刊>Quantitative Imaging in Medicine and Surgery >Imaging endocervical mucus anatomy and dynamics in macaque female reproductive track using optical coherence tomography
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Imaging endocervical mucus anatomy and dynamics in macaque female reproductive track using optical coherence tomography

机译:使用光学相干断层扫描成像技术对猕猴雌性生殖道的宫颈内腔黏液解剖结构和动力学进行成像

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>>Background: Endocervical mucus acts as an important barrier to block human immunodeficiency virus (HIV) infection and other sexually transmitted diseases (STDs). Disruption of the mucus layer increases the risk of infection for females. An effective method to image the mucus properties can serve as a pre-screening step to risk-stratify the susceptible population.>>Methods: We proposed to use optical coherence tomography (OCT) to quantitatively measure the thickness of endocervical mucus. We used a home-built bench-top OCT system to monitor the dynamic change in mucus thickness of a cultivated sample. We also fabricated a prototype endoscopic OCT probe to demonstrate potential in situ applications.>>Results: We observed a 200% increase in the endocervical mucus thickness after cultivating in 37 °C phosphate buffered saline solution for 30 minutes. During mucus hydrolysis, we found that mucus layer thickness decreased to about 60% of its original value after applying neuraminidase. Three dimensional volumetric image of intact macaque inner vaginal wall was also acquired.>>Conclusions: We demonstrated that OCT can quantitatively measure the endocervical mucus thickness and its dynamics in ex vivo experiments. Endoscopic OCT has the potential to resolve fine structures inside macaque female reproductive track (FRT) for in vivo applications.
机译:> >背景:宫颈粘液是阻止人类免疫缺陷病毒(HIV)感染和其他性传播疾病(STD)的重要屏障。粘液层破裂增加了女性感染的风险。一种有效的对黏液特性成像的方法可作为对敏感人群进行风险分层的预筛选步骤。 > >方法:我们建议使用光学相干断层扫描(OCT)定量测量宫颈内粘液的厚度。我们使用自制的台式OCT系统来监测培养样品的粘液厚度的动态变化。我们还制作了原型内窥镜OCT探针,以证明潜在的原位应用。 > >结果我们观察到,术后宫颈内粘液厚度增加了200%在37°C的磷酸盐缓冲盐溶液中培养30分钟。在粘液水解过程中,我们发现应用神经氨酸酶后,粘液层厚度降低至其原始值的约60%。 > >结论:我们证明了OCT可以定量测量离体的宫颈内黏液厚度及其动力学。 实验。内窥镜OCT可以解决体内应用中猕猴雌性生殖道(FRT)内的精细结构。

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