Optical coherence tomography combined with the artificial bee colony algorithm provides a method to visualize and estimate skin viscoelastic properties during dynamic suction testing.
This study presents a method to estimate skin viscoelasticity using OCT and the artificial bee colony algorithm to detect changes associated with photoaging.
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Photoaging, caused by aging and UV exposure, leads to wrinkles by altering the skin's viscoelasticity due to the loss or damage of collagen and elastin. This study aims to detect such viscoelastic changes in the skin using optical coherence tomography (OCT) during dynamic suction testing. Internal skin deformation and tissue displacement are visualized, and the viscoelastic properties are estimated using the artificial bee colony (ABC) algorithm with a one-dimensional finite element skin model. The accuracy of the estimation is then assessed.
Daisuke Furukawa (Wed,) reported a other. Optical coherence tomography combined with the artificial bee colony algorithm provides a method to visualize and estimate skin viscoelastic properties during dynamic suction testing.