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- W2133147905 endingPage "959" @default.
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- W2133147905 abstract "Dynamic optical coherence elastography is used to determine in vivo skin biomechanical properties based on mechanical surface wave propagation. Quantitative Young's moduli are measured on human skin from different sites, orientations, and frequencies. Skin thicknesses, including measurements from different layers, are also measured simultaneously. Experimental results show significant differences among measurements from different skin sites, between directions parallel and orthogonal to Langer's lines, and under different skin hydration states. Results also suggest surface waves with different driving frequencies represent skin biomechanical properties from different layers in depth. With features such as micrometer-scale resolution, noninvasive imaging, and real-time processing from the optical coherence tomography technology, this optical measurement technique has great potential for measuring skin biomechanical properties in dermatology." @default.
- W2133147905 created "2016-06-24" @default.
- W2133147905 creator A5058617463 @default.
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- W2133147905 date "2010-04-01" @default.
- W2133147905 modified "2023-10-12" @default.
- W2133147905 title "Biomechanical Properties of <i>In Vivo</i> Human Skin From Dynamic Optical Coherence Elastography" @default.
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- W2133147905 doi "https://doi.org/10.1109/tbme.2009.2033464" @default.
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