DocumentCode
1295005
Title
Absorption-Based Hyperspectral Imaging and Analysis of Single Erythrocytes
Author
Ji Youn Lee ; Clarke, M.L. ; Tokumasu, F. ; Lesoine, J.F. ; Allen, D.W. ; Chang, Ronald ; Litorja, M. ; Jeeseong Hwang
Author_Institution
Opt. Technol. Div., Nat. Inst. of Stand. & Technol., Gaithersburg, MD, USA
Volume
18
Issue
3
fYear
2012
Firstpage
1130
Lastpage
1139
Abstract
We report an absorption-based hyperspectral imaging and analysis technique to resolve unique physicochemical characteristics of subcellular substances in single erythrocytes. We constructed a microscope system installed with a spectral light engine capable of controlling the spectral shape of the illumination light by a digital micromirror device. The hyperspectral imaging system and the sequential maximum angle convex cone algorithm allow us to extract unique spectral signatures (i.e., endmembers) for different types of hemoglobin, such as oxyhemoglobin, methemoglobin, and hemozoin, and scatter from cell membrane in single erythrocytes. Further statistical endmember analysis, conducted on the hyperspectral image data, provides the abundances of specific endmembers, which can be used to build intracellular maps of the distribution of substances of interest. In addition, we perform modeling based on Mie theory to explain the scattering signatures as a function of scattering angle. The developed imaging and analysis technique enables label-free molecular imaging of endogenous biomarkers in single erythrocytes in order to build oxymetric standards on a cellular level and ultimately for in vivo as well.
Keywords
Mie scattering; biomedical optical imaging; biomembranes; blood; cellular biophysics; image sequences; medical image processing; micromirrors; molecular biophysics; oximetry; proteins; statistical analysis; Mie theory; absorption-based hyperspectral analysis; absorption-based hyperspectral imaging; cell membrane; digital micromirror device; endogenous biomarkers; hemoglobin; hemozoin; hyperspectral image data; illumination light; label-free molecular imaging; methemoglobin; oxyhemoglobin; oxymetric standards; physicochemical characteristics; sequential maximum angle convex cone algorithm; single erythrocytes; spectral light engine; statistical endmember analysis; subcellular substances; Absorption; Apertures; Feature extraction; Hyperspectral imaging; Lighting; Microscopy; Scattering; Absorption spectra of hemoglobin; endmember analysis; erythrocyte (red blood cell); hyperspectral imaging; label-free molecular imaging; scattering signature; sequential maximum angle convex cone (SMACC) algorithm; spectral light engine;
fLanguage
English
Journal_Title
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
1077-260X
Type
jour
DOI
10.1109/JSTQE.2011.2164239
Filename
5981373
Link To Document