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首页> 外文期刊>Journal of Biophotonics >Confocal Raman microspectroscopy on excised human skin: uncertainties in depth profiling and mathematical correction applied to dermatological drug permeation
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Confocal Raman microspectroscopy on excised human skin: uncertainties in depth profiling and mathematical correction applied to dermatological drug permeation

机译:切除的人体皮肤上的共聚焦拉曼微痉挛:深度分析和数学校正的不确定性,适用于皮肤病药物渗透

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摘要

Confocal Raman microspectroscopy represents the advantage of giving structural and conformational information on samples without any destructive treatment. Recently, several studies were achieved to study the skin hydration, endogenous and exogenous molecules repartition in the skin using the confocal feature of this technique. Meanwhile, when working through a material boundary with a different refractive index, the main limitation remains the spatial precision, especially the distortion in the depth and the depth resolution. Recently, several authors described mathematical models to correct the depth and the resolution values. In this study, we combined theoretical approaches, proposed by different authors with experimental measurements to try to find out the most appropriate approach for correction. We then applied the corrections on in-depth profiles tracking the penetration of Metronidazole, a drug produced by Galderma for rosacea treatment, through excised human skin.
机译:共聚焦拉曼微穴位表示在没有任何破坏性处理的情况下给出样品的结构和构象信息的优点。 最近,使用该技术的共焦特征来实现几项研究以研究皮肤水合,内源性和外源分子在皮肤中的重置。 同时,当通过具有不同折射率的材料边界时,主要限制仍然是空间精度,尤其是深度和深度分辨率的失真。 最近,若干作者描述了数学模型来纠正深度和分辨率值。 在这项研究中,我们将不同作者提出的理论方法结合了实验测量,试图找出最适当的校正方法。 然后,我们将校正应用于深入的型材跟踪甲硝唑的渗透,通过切除的人体皮肤通过Galderma治疗的含药物产生的药物。

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