作者
Amaan Mazhar, Steven Dell, David J Cuccia, Sylvain Gioux, Anthony J Durkin, John V Frangioni, Bruce J Tromberg
发表日期
2010/12/23
期刊
Journal of biomedical optics
卷号
15
期号
6
页码范围
061716-061716-9
出版商
Society of Photo-Optical Instrumentation Engineers
简介
Spatial frequency-domain imaging (SFDI) utilizes multiple-frequency structured illumination and model-based computation to generate two-dimensional maps of tissue absorption and scattering properties. SFDI absorption data are measured at multiple wavelengths and used to fit for the tissue concentration of intrinsic chromophores in each pixel. This is done with a priori knowledge of the basis spectra of common tissue chromophores, such as oxyhemoglobin (ctO2Hb), deoxyhemoglobin (ctHHb), water (ctH2O), and bulk lipid. The quality of in vivo SFDI fits for the hemoglobin parameters ctO2Hb and ctHHb is dependent on wavelength selection, fitting parameters, and acquisition rate. The latter is critical because SFDI acquisition time is up to six times longer than planar two-wavelength multispectral imaging due to projection of multiple-frequency spatial patterns. Thus, motion artifact during in vivo measurements …
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