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首页> 外文期刊>Biomedical Optics Express >Design and validation of a multiplexed low coherence interferometry instrument for in vivo clinical measurement of microbicide gel thickness distribution
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Design and validation of a multiplexed low coherence interferometry instrument for in vivo clinical measurement of microbicide gel thickness distribution

机译:用于体内临床测量杀微生物剂凝胶厚度分布的多重低相干干涉仪的设计和验证

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We present a multiplexed, Fourier-domain low coherence interferometry (mLCI) instrument for in vivo measurement of intravaginal microbicide gel coating thickness distribution over the surface of the vaginal epithelium. The mLCI instrument uses multiple delivery fibers to acquire depth resolved reflection profiles across large scanned tissue areas. Here mLCI has been adapted into an endoscopic system with a custom imaging module for simultaneous, co-registered measurements with fluorimetric scans of the same surface. The resolution, optical signal-to-noise, and cross-talk of the mLCI instrument are characterized to evaluate performance. Validation measurements of gel thickness are made using a calibration socket. Initial results from a clinical study are presented to show the in vivo capability of the dual-modality system for assessing the distribution of microbicide gel vehicles in the lower human female reproductive tract.
机译:我们提出了一种用于体内测量阴道上皮表面上的杀菌剂凝胶涂层厚度分布的体内测量的多重傅里叶域低相干干涉术(mLCI)仪器。 mLCI仪器使用多根传输光纤来获取较大的扫描组织区域内的深度分辨反射轮廓。在这里,mLCI已被适配到具有定制成像模块的内窥镜系统中,用于同时对同一个表面的荧光扫描进行共配准的测量。 mLCI仪器的分辨率,光信噪比和串扰可评估性能。凝胶厚度的验证测量是使用校准套进行的。一项临床研究的初步结果表明,该双模态系统具有体内能力,可评估杀菌剂凝胶载体在下层人类女性生殖道中的分布。

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