Time-resolved photon migration in a heterogeneous tissue-vessel model
Hanli Liu, Andreas H. Hielscher, Dean C. Kurth, Steven L. Jacques, Britton Chance
Abstract
Hanli Liu, Andreas H. Hielscher, Dean C. Kurth, Steven L. Jacques, Britton Chance
Abstract
We investigate the relationship between the apparent absorption coefficient and actual absorption coefficient inside the vessels. This analytical formula predicts that the apparent absorption coefficient measured on a biological organ is a volume-weighted sum of the absorption coefficients of different absorbing components. Further, we present some apparent absorption coefficients measured in vivo in animals and humans and show that ignoring the background absorption can lead to significant errors in oxygenation determination.
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We investigate the relationship between the apparent absorption coefficient and actual absorption coefficient inside the vessels. This analytical formula predicts that the apparent absorption coefficient measured on a biological organ is a volume-weighted sum of the absorption coefficients of different absorbing components. Further, we present some apparent absorption coefficients measured in vivo in animals and humans and show that ignoring the background absorption can lead to significant errors in oxygenation determination.
Key concepts: Attenuation coefficient, Absorption (acoustics), Two-photon absorption, Materials science, Volume (thermodynamics), Oxygenation, Optics, Physics