Expression of optical diffusion coefficient in high-absorption turbid media
Tatsuya Nakai, Goro Nishimura, Katsuyuki Yamamoto
Abstract
Tatsuya Nakai, Goro Nishimura, Katsuyuki Yamamoto
Abstract
The format of the diffusion coefficient in the optical diffusion equation is determined experimentally. For the diffusion coefficient D in the optical diffusion equation used for description of optical propagation in a turbid medium, two representations have been proposed, one containing the absorption coefficient μa and another without it. In the present research the scattered light is measured with steady light in a medium with large absorption in order to determine which of the diffusion coefficient expressions describes optical propagation in a turbid medium more accurately. The diffusion coefficient is found not to be affected by absorption even if the absorption varies from almost 0 to a value close to the reduced scattering coefficient μ′s, and its value agrees well with (3μ′s)−1. Hence, it is confirmed that the absorption coefficient used is not included in the diffusion coefficient used in the optical diffusion equation, and that the coefficient is given by D = (3μ′s)−1 © 1998 Scripta Technica, Electron Comm Jpn Pt 2, 81(11): 34–41, 1998
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The format of the diffusion coefficient in the optical diffusion equation is determined experimentally. For the diffusion coefficient D in the optical diffusion equation used for description of optical propagation in a turbid medium, two representations have been proposed, one containing the absorption coefficient μa and another without it. In the present research the scattered light is measured with steady light in a medium with large absorption in order to determine which of the diffusion coefficient expressions describes optical propagation in a turbid medium more accurately. The diffusion coefficient is found not to be affected by absorption even if the absorption varies from almost 0 to a value close to the reduced scattering coefficient μ′s, and its value agrees well with (3μ′s)−1. Hence, it is confirmed that the absorption coefficient used is not included in the diffusion coefficient used in the optical diffusion equation, and that the coefficient is given by D = (3μ′s)−1 © 1998 Scripta Technica, Electron Comm Jpn Pt 2, 81(11): 34–41, 1998
Key concepts: Attenuation coefficient, Diffusion, Photon diffusion, Photon transport in biological tissue, Absorption (acoustics), Effective diffusion coefficient, Diffusion equation, Optics