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首页> 外文期刊>American journal of rhinology >Quantification of ciliary beat frequency in sinonasal epithelial cells using differential interference contrast microscopy and high-speed digital video imaging.
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Quantification of ciliary beat frequency in sinonasal epithelial cells using differential interference contrast microscopy and high-speed digital video imaging.

机译:使用差分干涉对比显微镜和高速数字视频成像技术量化鼻窦上皮细胞的睫状跳动频率。

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摘要

BACKGROUND: Mucociliary clearance is a critical upper airway host defense mechanism. Ciliated epithelium in the mammalian airway continually beat at a baseline frequency. Importantly, during times of stress such as exercise or infection, the cilia beat faster to increase clearance. Nasal epithelial ciliary beat frequency (CBF) has been analyzed previously in ex vivo specimens using a variety of methods including photodiode detectors and conventional video recording. Recent studies performed using lower airway ciliated mucosa have shown poor correlation between CBF quantified by photodiode/conventional video and those using high-speed digital video capture at temperatures close to physiological temperatures. Thus, to more rigorously interrogate sinonasal CBF at physiological conditions, we have incorporated a high-speed digital video camera to our CBF analysis system. This is the first report of sinonasal epithelial CBF analysis performed using high-speed video digital analysis. METHODS: Ex vivo samplesof sinonasal epithelium were placed in lactated Ringer's in a temperature-controlled microscope stage chamber. An edge of tissue containing beating cilia was observed at a magnification of 630x using differential interference contrast microscopy. The images were captured using a high-speed digital camera with a sampling rate of 250 frames per second. CBF was determined using computerized data analysis. RESULTS: The mean nasal CBF was calculated from a minimum of five regions for each sample. Temperature curves were generated from tissue obtained from chronically infected subjects. CONCLUSION: Analysis of high-speed digital video capture of sinonasal CBF observed under differential interference contrast microscopy is a powerful method to investigate environmental as well as host influences on mucociliary clearance within the upper airways.
机译:背景:纤毛清除是上呼吸道宿主防御的关键机制。哺乳动物气道的纤毛上皮持续以基线频率搏动。重要的是,在诸如运动或感染之类的压力时期,纤毛跳动更快以增加清除率。以前已经使用多种方法在离体标本中分析了鼻上皮纤毛搏动频率(CBF),包括光电二极管检测器和常规视频记录。使用下呼吸道纤毛黏膜进行的最新研究表明,通过光电二极管/常规视频量化的CBF与在接近生理温度的温度下使用高速数字视频捕获的CBF之间的相关性较差。因此,为了在生理条件下更严格地检查鼻窦CBF,我们将高速数字摄像机集成到了CBF分析系统中。这是首次使用高速视频数字分析进行鼻窦上皮CBF分析的报告。方法:将鼻窦上皮的离体样品置于温度控制的显微镜载物台室中的乳酸林格氏液中。使用差分干涉对比显微镜以630x的放大倍率观察到了包含跳动的纤毛的组织边缘。使用高速数码相机以每秒250帧的采样率捕获图像。使用计算机数据分析确定CBF。结果:从每个样本的至少五个区域计算出平均鼻CBF。从得自慢性感染受试者的组织产生温度曲线。结论:在差分干涉对比显微镜下观察鼻窦CBF的高速数字视频捕获分析是研究环境以及宿主对上呼吸道粘膜纤毛清除率影响的有效方法。

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