A Miniature Fibre-Optic Raman Probe Fabricated by Ultrafast Laser-Assisted Etching

被引:14
|
作者
Ross, Calum A. [1 ]
MacLachlan, David G. [1 ]
Smith, Brian J. E. [2 ]
Beck, Rainer J. [1 ]
Shephard, Jonathan D. [1 ]
Weston, Nick [3 ]
Thomson, Robert R. [1 ,4 ]
机构
[1] Heriot Watt Univ, Scottish Univ Phys Alliance, Inst Photon & Quantum Sci IPaQS, Edinburgh EH14 4AS, Midlothian, Scotland
[2] Renishaw Plc, New Mills GL12 8JR, Wotton Under Ed, England
[3] Renishaw Plc, Edinburgh EH14 4AP, Midlothian, Scotland
[4] Univ Edinburgh, MRC Ctr Inflammat Res, Queens Med Res Inst, EPSRC IRC Hub, Edinburgh EH16 4TJ, Midlothian, Scotland
基金
英国工程与自然科学研究理事会; 英国科学技术设施理事会;
关键词
optical biopsy; Raman spectroscopy; micro-optics; ultrafast laser-assisted etching; IN-VIVO; FUSED-SILICA; MOUSE MODEL; SPECTROSCOPY; DYSPLASIA; DIAGNOSIS; SURFACE; CANCER; BESSEL; SERS;
D O I
10.3390/mi11020185
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Optical biopsy describes a range of medical procedures in which light is used to investigate disease in the body, often in hard-to-reach regions via optical fibres. Optical biopsies can reveal a multitude of diagnostic information to aid therapeutic diagnosis and treatment with higher specificity and shorter delay than traditional surgical techniques. One specific type of optical biopsy relies on Raman spectroscopy to differentiate tissue types at the molecular level and has been used successfully to stage cancer. However, complex micro-optical systems are usually needed at the distal end to optimise the signal-to-noise properties of the Raman signal collected. Manufacturing these devices, particularly in a way suitable for large scale adoption, remains a critical challenge. In this paper, we describe a novel fibre-fed micro-optic system designed for efficient signal delivery and collection during a Raman spectroscopy-based optical biopsy. Crucially, we fabricate the device using a direct-laser-writing technique known as ultrafast laser-assisted etching which is scalable and allows components to be aligned passively. The Raman probe has a sub-millimetre diameter and offers confocal signal collection with 71.3% +/- 1.5% collection efficiency over a 0.8 numerical aperture. Proof of concept spectral measurements were performed on mouse intestinal tissue and compared with results obtained using a commercial Raman microscope.
引用
收藏
页数:16
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