Leibniz Universität Hannover, Institut für Quantenoptik, Hannover, Germany.
Leibniz Universität Hannover, Hannoversches Zentrum für Optische Technologien, Hannover, Germany.
J Biomed Opt. 2017 Oct;22(10):1-7. doi: 10.1117/1.JBO.22.10.105007.
Optical techniques are effective tools for diagnostic applications in medicine and are particularly attractive for the noninvasive analysis of biological tissues and fluids in vivo. Noninvasive examinations of substances via a fiber optic probe need to consider the optical properties of biological tissues obstructing the optical path. This applies to the analysis of the human perilymph, which is located behind the round window membrane. The composition of this inner ear liquid is directly correlated to inner ear hearing loss. In this work, experimental methods for studying the optical properties of the human round window membrane ex vivo are presented. For the first time, a comprehensive investigation of this tissue is performed, including optical transmission, forward scattering, and Raman scattering. The results obtained suggest the application of visible wavelengths (>400 nm) for investigating the perilymph behind the round window membrane in future.
光学技术是医学诊断应用中的有效工具,特别适合用于对生物组织和体内流体进行非侵入性分析。通过光纤探头对物质进行非侵入性检查时,需要考虑阻碍光路的生物组织的光学特性。这适用于分析位于圆窗膜后面的人类外淋巴液。这种内耳液体的成分与内耳听力损失直接相关。在这项工作中,提出了研究人圆窗膜离体光学特性的实验方法。这是首次对这种组织进行全面研究,包括光传输、前向散射和拉曼散射。所得结果表明,在未来可以应用可见光波长(>400nm)来研究圆窗膜后面的外淋巴液。