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Swept-wavelength lasers based on GaSb gain-chip technology for non-invasive biomedical sensing applications in the 1.7–2.5 μm wavelength range

机译:基于GaSb增益芯片技术的扫频激光器用于波长为1.7–2.5μm的非侵入式生物医学传感应用

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摘要

The infrared spectral region beyond 1.7 μm is of utmost interest for biomedical applications due to strong overtone and combination absorption bands in a variety of important biomolecules such as lactates, urea, glucose, albumin, etc. In this article, we report on recent progress in widely tunable swept-wavelength lasers based on type-I GaSb gain-chip technology, setting a new state-of-the-art in the 1.7 – 2.5 μm range laser sources. We provide an application example for the spectroscopic sensing of several biomolecules in a cuvette as well as an experimental demonstration of a non-invasive in-vivo sensing of human serum albumin through the skin.
机译:1.7μm以上的红外光谱区域是生物医学领域最感兴趣的领域,因为在各种重要生物分子(如乳酸,尿素,葡萄糖,白蛋白等)中具有强大的泛音和组合吸收带。在本文中,我们报道了近年来的进展基于I型GaSb增益芯片技术的可广泛调谐的扫频激光器,在1.7 – 2.5μm范围的激光源中树立了最新技术。我们提供了比色杯中多个生物分子的光谱传感应用实例,以及通过皮肤对人血清白蛋白进行非侵入性体内传感的实验演示。

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