Statistics of maximum photon penetration depth in a two-layer diffusive medium
Author :
Fabrizio Martelli, Antonio Pifferi, Andrea Farina, Caterina Amendola, Giulia Maffeis, Federico Tommasi, Stefano Cavalieri, Lorenzo Spinelli, and Alessandro TorricelliJourna Name:
BIOMEDICAL OPTICS EXPRESS Country :
USAVolume:
15 issue:2 Year:2024 Views : 258
Abstract:
We present numerical results for the probability density function f(z) and for the mean value of photon maximum penetration depth ‹zmax› in a two-layer diffusive medium. Both time domain and continuous wave regime are considered with several combinations of the optical properties (absorption coefficient, reduced scattering coefficient) of the two layers, and with different geometrical configurations (source detector distance, thickness of the upper layer). Practical considerations on the design of time domain and continuous wave systems are derived. The methods and the results are of interest for many research fields such as biomedical optics and advanced microscopy.
APA:Fabrizio Martelli, Antonio Pifferi, Andrea Farina, Caterina Amendola, Giulia Maffeis, Federico Tommasi, Stefano Cavalieri, Lorenzo Spinelli, and Alessandro Torricelli. (Volume-15, Issue-2 -(Year-2024)). Statistics of maximum photon penetration depth in a two-layer diffusive medium. Retrieved from https://opg.optica.org/viewmedia.cfm?uri=boe-15-2-1163&seq=0
Chicago:Fabrizio Martelli, Antonio Pifferi, Andrea Farina, Caterina Amendola, Giulia Maffeis, Federico Tommasi, Stefano Cavalieri, Lorenzo Spinelli, and Alessandro Torricelli. "Statistics of maximum photon penetration depth in a two-layer diffusive medium" Example, Volume-15-issue-2-Year-2024-2156-7085. https://opg.optica.org/viewmedia.cfm?uri=boe-15-2-1163&seq=0.