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Quantitative principal component model for skin chromophore mapping using multi-spectral images and spatial priors.

Authors :
Kainerstorfer JM
Riley JD
Ehler M
Najafizadeh L
Amyot F
Hassan M
Pursley R
Demos SG
Chernomordik V
Pircher M
Smith PD
Hitzenberger CK
Gandjbakhche AH
Source :
Biomedical optics express [Biomed Opt Express] 2011 Apr 01; Vol. 2 (5), pp. 1040-58. Date of Electronic Publication: 2011 Apr 01.
Publication Year :
2011

Abstract

We describe a novel reconstruction algorithm based on Principal Component Analysis (PCA) applied to multi-spectral imaging data. Using numerical phantoms, based on a two layered skin model developed previously, we found analytical expressions, which convert qualitative PCA results into quantitative blood volume and oxygenation values, assuming the epidermal thickness to be known. We also evaluate the limits of accuracy of this method when the value of the epidermal thickness is not known. We show that blood volume can reliably be extracted (less than 6% error) even if the assumed thickness deviates 0.04mm from the actual value, whereas the error in blood oxygenation can be as large as 25% for the same deviation in thickness. This PCA based reconstruction was found to extract blood volume and blood oxygenation with less than 8% error, if the underlying structure is known. We then apply the method to in vivo multi-spectral images from a healthy volunteer's lower forearm, complemented by images of the same area using Optical Coherence Tomography (OCT) for measuring the epidermal thickness. Reconstruction of the imaging results using a two layered analytical skin model was compared to PCA based reconstruction results. A point wise correlation was found, showing the proof of principle of using PCA based reconstruction for blood volume and oxygenation extraction.

Details

Language :
English
ISSN :
2156-7085
Volume :
2
Issue :
5
Database :
MEDLINE
Journal :
Biomedical optics express
Publication Type :
Academic Journal
Accession number :
21559118
Full Text :
https://doi.org/10.1364/BOE.2.001040