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Optical image reconstruction using DC data: Simulations and experiments
DOI:10.1088/0031-9155/41/8/015.png)
摘要
En 中文
In this paper, we explore optical image formation using a diffusion approximation of light propagation in tissue which is modelled with a finite-element method for optically heterogeneous media. We demonstrate successful image reconstruction based on absolute experimental DC data obtained with a continuous wave 633 nm He-Ne laser system and a 751 nm diode laser system in laboratory phantoms having two optically distinct regions. The experimental systems used exploit a tomographic type of data collection scheme that provides information from which a spatially variable optical property map is deduced. Reconstruction of scattering coefficient only and simultaneous reconstruction of both scattering and absorption profiles in tissue-like phantoms are obtained from measured and simulated data. Images with different contrast levels between the heterogeneity and the background are also reported and the results show that although it is possible to obtain qualitative visual information on the location and size of a heterogeneity, it may not be possible to quantitatively resolve contrast levels or optical properties using reconstructions from DC data only. Sensitivity of image reconstruction to noise in the measurement data is investigated through simulations. The application of boundary constraints has also been addressed.
Keyword:
PHOTON TRANSPORT
DIFFUSION-THEORY
TURBID MEDIA
TOMOGRAPHY
TISSUE
ABSORPTION
TRANSILLUMINATION
SPECTROSCOPY
ALGORITHM
MODEL
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期刊
IF:
3.4
论文数:
1.4W
被引数:
3.1W
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