Fourier Transform Infrared Spectrochemical Imaging: Review of Design and Applications with a Focal Plane Array and Multiple Beam Synchrotron Radiation Source

被引:81
作者
Hirschmugl, Carol J. [1 ]
Gough, Kathleen M. [2 ]
机构
[1] Univ Wisconsin, Dept Phys, Milwaukee, WI 53211 USA
[2] Univ Manitoba, Dept Chem, Winnipeg, MB R3T 2N2, Canada
基金
美国国家科学基金会; 加拿大健康研究院; 加拿大自然科学与工程研究理事会;
关键词
Fourier transform infrared spectroscopy; FT-IR imaging; Infrared microspectroscopy; Focal plane array; FPA; IRENI; Infrared synchrotron radiation; Chemical imaging; Cancer histology; Mouse embryonic stem cells; Cultural heritage; Art conservation; Live algal cell imaging; Neuron; Brain; Retina; MARINE-PHYTOPLANKTON; ALZHEIMER-DISEASE; MICROSPECTROSCOPY; RESOLUTION; SPECTROSCOPY; CELLS; FTIR; MICROSCOPE; CAPABILITIES; REDUCTION;
D O I
10.1366/12-06629
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
The beamline design, microscope specifications, and initial results from the new mid-infrared heamline (IRENI) are reviewed. Synchrotron-based spectrochemical imaging, as recently implemented at the Synchrotron Radiation Center in Stoughton, Wisconsin, demonstrates the new capability to achieve diffraction limited chemical imaging across the entire mid-infrared region, simultaneously, with high signal-to-noise ratio. IRENI extracts a large swath of radiation (320 hor. X 25 vert. mrads(2)) to homogeneously illuminate a commercial infrared (IR) microscope equipped with an IR focal plane array (EPA) detector. Wide-field images are collected, in contrast to single-pixel imaging from the confocal geometry with raster scanning, commonly used at most synchrotron beamlines. IRENI rapidly generates high quality, high spatial resolution data. The relevant advantages (spatial oversampling, speed, sensitivity, and signal-to-noise ratio) are discussed in detail and demonstrated with examples from a variety of disciplines, including formalin-fixed and flash-frozen tissue samples, live cells, fixed cells, paint cross-sections, polymer fibers, and novel nanomaterials. The impact of Mie scattering corrections on this high quality data is shown, and first results with a grazing angle objective are presented, along with future enhancements and plans for implementation of similar, small-scale instruments.
引用
收藏
页码:475 / 491
页数:17
相关论文
共 77 条
[1]  
Agilent Technologies, 2008, PREL SPEC SHEET 610
[2]   Provasoli-Guillard National Center for Culture of Marine Phytoplankton 1997 list of strains [J].
Andersen, RA ;
Morton, SL ;
Sexton, JP .
JOURNAL OF PHYCOLOGY, 1997, 33 (06) :1-75
[3]   INFRA-RED SPECTROSCOPY WITH THE REFLECTING MICROSCOPE IN PHYSICS, CHEMISTRY AND BIOLOGY [J].
BARER, R ;
COLE, ARH ;
THOMPSON, HW .
NATURE, 1949, 163 (4136) :198-201
[4]   RMieS-EMSC correction for infrared spectra of biological cells: Extension using full Mie theory and GPU computing [J].
Bassan, Paul ;
Kohler, Achim ;
Martens, Harald ;
Lee, Joe ;
Jackson, Edward ;
Lockyer, Nicholas ;
Dumas, Paul ;
Brown, Michael ;
Clarke, Noel ;
Gardner, Peter .
JOURNAL OF BIOPHOTONICS, 2010, 3 (8-9) :609-620
[5]   Resonant Mie Scattering (RMieS) correction of infrared spectra from highly scattering biological samples [J].
Bassan, Paul ;
Kohler, Achim ;
Martens, Harald ;
Lee, Joe ;
Byrne, Hugh J. ;
Dumas, Paul ;
Gazi, Ehsan ;
Brown, Michael ;
Clarke, Noel ;
Gardner, Peter .
ANALYST, 2010, 135 (02) :268-277
[6]   Resonant Mie scattering in infrared spectroscopy of biological materials - understanding the 'dispersion artefact' [J].
Bassan, Paul ;
Byrne, Hugh J. ;
Bonnier, Franck ;
Lee, Joe ;
Dumas, Paul ;
Gardner, Peter .
ANALYST, 2009, 134 (08) :1586-1593
[7]   Reflection contributions to the dispersion artefact in FTIR spectra of single biological cells [J].
Bassan, Paul ;
Byrne, Hugh J. ;
Lee, Joe ;
Bonnier, Franck ;
Clarke, Colin ;
Dumas, Paul ;
Gazi, Ehsan ;
Brown, Michael D. ;
Clarke, Noel W. ;
Gardner, Peter .
ANALYST, 2009, 134 (06) :1171-1175
[8]   Evolution of an artificial seawater medium: Improvements in enriched seawater, artificial water over the last two decades [J].
Berges, JA ;
Franklin, DJ ;
Harrison, PJ .
JOURNAL OF PHYCOLOGY, 2001, 37 (06) :1138-1145
[9]   Fourier transform infrared imaging: Theory and practice [J].
Bhargava, R ;
Levin, IW .
ANALYTICAL CHEMISTRY, 2001, 73 (21) :5157-5167