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Published on: May 23, 2025
Thermal damage induced changes in optical properties of the porcine dermis
Anjelyka T Fasci1,2, Maria A T Hoffman1, Andrea L Smith1
1SAIC, JBSA Fort Sam Houston, Texas, United States.
Significance:
Understanding thermal effects on tissue optical properties is fundamental for optimizing laser-based medical interventions. We address the critical knowledge gap of temperature-dependent changes in porcine dermis optical properties.
Aim:
We explore the thermal damage influence on the excised dermis optical properties at wavelengths from 400 to 1100 nm.
Approach:
Using a double-integrating-sphere system and inverse adding-doubling, we determined absorption, , and reduced scattering, , coefficients before and after a 2.5-min thermal exposure.
Results:
We observed non-linear changes in both and across temperature regimes. Minimal changes occurred at 37°C and 43°C. At 50°C, slight increases in both coefficients were observed. Significant alterations occurred at 60°C, with substantial increases in and variable changes in depending on wavelength region. At 70°C, values remained elevated, whereas showed mixed responses, with some wavelength regions decreasing, indicating progressive structural breakdown. The Arrhenius damage model showed an exponential increase with temperature.
Conclusions:
We reveal complex thermal-induced changes in tissue optical properties, particularly at higher temperatures. Findings reinforce a critical threshold between 50°C and 60°C where significant changes occur. The non-linear, wavelength-dependent responses emphasize the need for comprehensive data in laser-tissue interaction modeling, with important implications for optimizing laser-based medical treatments.

