Cone-shell Raman spectroscopy (CSRS) for depth-sensitive measurements in layered tissue

被引:17
作者
Khan, Khan Mohammad [1 ]
Majumder, Shovan Kumar [1 ]
Gupta, Pradeep Kumar [1 ]
机构
[1] Raja Ramanna Ctr Adv Technol, Laser Biomed Applicat & Instrumentat Div, Opt Spect & Diagnost Lab, Indore 452013, Madhya Pradesh, India
关键词
Cone-shell Raman spectroscopy (CSRS); depth-sensitive measurement; axicon lens; scale subtraction; OPTICAL COHERENCE TOMOGRAPHY; TURBID MEDIA; BIOLOGICAL TISSUE; SCATTERED-LIGHT; FLUORESCENCE; MICROSCOPY; SPECTRA;
D O I
10.1002/jbio.201400125
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
We report the development of a depth-sensitive Raman spectroscopy system using the configuration of cone-shell excitation and cone detection. The system uses a 785nm diode laser and three identical axicons for Raman excitation of the target sample in the form of a hollow conic section. The Raman scattered light from the sample, passed through the same (but solid) conic section, is collected for detection. Apart from its ability of probing larger depths ( few mm), an important attraction of the system is that the probing depths can be varied by simply varying the separation between axicons in the excitation arm. Furthermore, no adjustment is required in the sample arm, which is a significant advantage for noncontact, depth-sensitive measurement. Evaluation of the performance of the developed setup on nonbiological phantom and biological tissue sample demonstrated its ability to recover Raman spectra of layers located at depths of 2-3mm beneath the surface.
引用
收藏
页码:889 / 896
页数:8
相关论文
共 22 条
[1]   ULTRAFAST TIME-GATED IMAGING IN THICK TISSUES - A STEP TOWARD OPTICAL MAMMOGRAPHY [J].
DAS, BB ;
YOO, KM ;
ALFANO, RR .
OPTICS LETTERS, 1993, 18 (13) :1092-1094
[2]   Bessel and annular beams for materials processing [J].
Duocastella, Marti ;
Arnold, Craig B. .
LASER & PHOTONICS REVIEWS, 2012, 6 (05) :607-621
[3]   Deep subsurface Raman spectroscopy of turbid media by a defocused collection system [J].
Eliasson, C. ;
Claybourn, M. ;
Matousek, P. .
APPLIED SPECTROSCOPY, 2007, 61 (10) :1123-1127
[4]   Confocal Raman Microscopy: Performance, Pitfalls, and Best Practice [J].
Everall, Neil J. .
APPLIED SPECTROSCOPY, 2009, 63 (09) :245A-262A
[5]   Spatially offset Raman spectroscopy of layered soft tissues [J].
Keller, Matthew D. ;
Majumder, Shovan K. ;
Mahadevan-Lansen, Anita .
OPTICS LETTERS, 2009, 34 (07) :926-928
[6]   Depth-sensitive Raman spectroscopy combined with optical coherence tomography for layered tissue analysis [J].
Khan, Khan M. ;
Krishna, Hemant ;
Majumder, Shovan K. ;
Rao, K. Divakar ;
Gupta, Pradeep K. .
JOURNAL OF BIOPHOTONICS, 2014, 7 (1-2) :77-85
[7]   Spatially resolved absolute diffuse reflectance measurements for noninvasive determination of the optical scattering and absorption coefficients of biological tissue [J].
Kienle, A ;
Lilge, L ;
Patterson, MS ;
Hibst, R ;
Steiner, R ;
Wilson, BC .
APPLIED OPTICS, 1996, 35 (13) :2304-2314
[8]   In vivo Raman spectroscopy for detection of oral neoplasia: A pilot clinical study [J].
Krishna, Hemant ;
Majumder, Shovan Kumar ;
Chaturvedi, Pankaj ;
Sidramesh, Muttagi ;
Gupta, Pradeep Kumar .
JOURNAL OF BIOPHOTONICS, 2014, 7 (09) :690-702
[9]   Range-independent background subtraction algorithm for recovery of Raman spectra of biological tissue [J].
Krishna, Hemant ;
Majumder, Shovan K. ;
Gupta, Pradeep K. .
JOURNAL OF RAMAN SPECTROSCOPY, 2012, 43 (12) :1884-1894
[10]   Subsurface probing in diffusely scattering media using spatially offset Raman spectroscopy [J].
Matousek, P ;
Clark, IP ;
Draper, ERC ;
Morris, MD ;
Goodship, AE ;
Everall, N ;
Towrie, M ;
Finney, WF ;
Parker, AW .
APPLIED SPECTROSCOPY, 2005, 59 (04) :393-400