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Enhanced OCT imaging of embryonic tissue with optical clearing

机译:通过光学清除增强胚胎组织的OCT成像

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Optical coherence tomography (OCT) holds great promise as a routine research tool for 3-D analysis of mammalian embryos. However, despite the depth penetration afforded by this imaging modality, light attenuation in tissues imposes limitations. Here we studied the optical clearing effect of different concentrations of glycerol in mouse embryos. Depth- and time-resolved profiles for OCT signal enhancement are presented. We found that application of 50% glycerol resulted in 51.5±12.5% improvement of the OCT signal, while 25% glycerol enhanced the OCT signal by 25.2±7.3% at the depth of about 200 to 500 μm, and the glycerol permeability rate was estimated as 26.7±6 μm/min. These results demonstrate that embryonic imaging is improved by application of glycerol as optical clearing agent.
机译:光学相干断层扫描(OCT)作为哺乳动物胚胎3-D分析的常规研究工具具有广阔的前景。然而,尽管这种成像方式提供了深度穿透,但组织中的光衰减仍然受到限制。在这里,我们研究了不同浓度的甘油在小鼠胚胎中的光学清除作用。提出了用于OCT信号增强的深度和时间分辨曲线。我们发现使用50%的甘油可以使OCT信号改善51.5±12.5%,而25%的甘油在200至500μm的深度处可以将OCT信号增强25.2±7.3%,并且可以估算出甘油的渗透率为26.7±6μm/ min。这些结果表明,通过使用甘油作为光学清除剂可以改善胚胎成像。

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