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展望利用光纤中红外超连续谱激光源对体内疾病的光谱鉴别。

Prospective on using fibre mid-infrared supercontinuum laser sources for in vivo spectral discrimination of disease.

机构信息

Mid-Infrared Photonics Group, George Green Institute for Electromagnetics' Research, Faculty of Engineering, University of Nottingham, NG7 2RD, UK.

出版信息

Analyst. 2018 Dec 3;143(24):5874-5887. doi: 10.1039/c8an01396a.

Abstract

Mid-infrared (MIR) fibre-optics may play a future role in in vivo diagnosis of disease, including cancer. Recently, we reported for the first time an optical fibre based broadband supercontinuum (SC) laser source spanning 1.3 to 13.4 μm wavelength to cover the spectral 'fingerprint region' of biological tissue. This work has catalysed the new field of fibre MIR-SC and now very bright sources equivalent to a 'few synchrotrons' have been demonstrated in fibre. In addition, we have made record transparency MIR fibre for routeing the MIR light and reported first-time MIR photoluminescence (with long lifetime) in small-core, rare earth ion doped, MIR fibre - an important step towards MIR fibre lasing at >4 μm wavelength for pumping fibre MIR-SC. First time fibre MIR-SC spectroscopic imaging of colon tissue is described at wavelengths in the 'fingerprint region'.

摘要

中红外(MIR)光纤在疾病的体内诊断中可能会发挥未来的作用,包括癌症。最近,我们首次报道了一种基于光纤的宽带超连续(SC)激光源,其波长范围为 1.3 至 13.4μm,覆盖了生物组织的光谱“指纹区域”。这项工作催生了光纤 MIR-SC 的新领域,现在已经在光纤中展示了非常明亮的相当于“几个同步加速器”的光源。此外,我们还制造了用于路由 MIR 光的创纪录的透明 MIR 光纤,并首次在小芯径、掺稀土离子的 MIR 光纤中报告了 MIR 光致发光(具有长寿命),这是朝着在 >4μm 波长下实现 MIR 光纤激射以泵浦光纤 MIR-SC 的重要一步。描述了在“指纹区域”的波长下对结肠组织进行的光纤 MIR-SC 光谱成像的首次尝试。

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