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用于无创血糖测量的可调谐激光二极管系统。

Tunable laser diode system for noninvasive blood glucose measurements.

作者信息

Olesberg Jonathon T, Arnold Mark A, Mermelstein Carmen, Schmitz Johannes, Wagner Joachim

机构信息

Optical Science and Technology Center and the Department of Chemistry, 100 IATL, University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

Appl Spectrosc. 2005 Dec;59(12):1480-4. doi: 10.1366/000370205775142485.

Abstract

Optical sensing of glucose would allow more frequent monitoring and tighter glucose control for people with diabetes. The key to a successful optical noninvasive measurement of glucose is the collection of an optical spectrum with a very high signal-to-noise ratio in a spectral region with significant glucose absorption. Unfortunately, the optical throughput of skin is low due to absorption and scattering. To overcome these difficulties, we have developed a high-brightness tunable laser system for measurements in the 2.0-2.5 microm wavelength range. The system is based on a 2.3 microm wavelength, strained quantum-well laser diode incorporating GaInAsSb wells and AlGaAsSb barrier and cladding layers. Wavelength control is provided by coupling the laser diode to an external cavity that includes an acousto-optic tunable filter. Tuning ranges of greater than 110 nm have been obtained. Because the tunable filter has no moving parts, scans can be completed very quickly, typically in less than 10 ms. We describe the performance of the present laser system and avenues for extending the tuning range beyond 400 nm.

摘要

对葡萄糖进行光学传感将能够为糖尿病患者提供更频繁的监测和更严格的血糖控制。成功进行葡萄糖光学无创测量的关键在于,在具有显著葡萄糖吸收的光谱区域内,采集具有非常高信噪比的光谱。不幸的是,由于吸收和散射,皮肤的光学透过率很低。为克服这些困难,我们开发了一种高亮度可调谐激光系统,用于在2.0 - 2.5微米波长范围内进行测量。该系统基于一个波长为2.3微米、采用应变量子阱结构的激光二极管,其阱层为GaInAsSb,势垒层和包层为AlGaAsSb。通过将激光二极管耦合到一个包含声光可调谐滤波器的外腔来实现波长控制。已获得大于110纳米的调谐范围。由于可调谐滤波器没有移动部件,扫描可以非常快速地完成,通常不到10毫秒。我们描述了当前激光系统的性能以及将调谐范围扩展到400纳米以上的途径。

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