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- W421643287 abstract "Raman microprobe spectroscopy has considerable potential as an analytical tool in orthopedic science for its capability of non-destructively assessing the physical, chemical, and mechanical characteristics of load-bearing parts in arthroplastic components (i.e., artificial joints). In comparison to other assessment techniques, Raman spectroscopy offers high spatial resolution in the characterization of oxidation states, phase transformations, crystallographic textures, and residual stress/strain fields as developed at load-bearing surfaces of arthroplastic components, when embedded in biological environment. Furthermore, confocal probes can be used for non-destructively determining highly graded properties along the material subsurface. We show in this chapter a quantitative visualization of biomaterial mesostructures and, through such information, how the surfaces of orthopedic prostheses react to load bearing in biological environment." @default.
- W421643287 created "2016-06-24" @default.
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- W421643287 date "2009-10-30" @default.
- W421643287 modified "2023-09-23" @default.
- W421643287 title "Quantitative Raman Spectroscopy of Biomaterials for Arthroplastic Applications" @default.
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- W421643287 doi "https://doi.org/10.1007/978-3-642-02649-2_17" @default.
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