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Differing self-similarity in light scattering spectra: A potential tool for pre-cancer detection

Optics 2011-09-27 v1 Data Analysis, Statistics and Probability Medical Physics

Abstract

The fluctuations in the elastic light scattering spectra of normal and dysplastic human cervical tissues analyzed through wavelet transform based techniques reveal clear signatures of self-similar behavior in the spectral fluctuations. Significant differences in the power law behavior ascertained through the scaling exponent was observed in these tissues. The strong dependence of the elastic light scattering on the size distribution of the scatterers manifests in the angular variation of the scaling exponent. Interestingly, the spectral fluctuations in both these tissues showed multi-fractality (non-stationarity in fluctuations), the degree of multi-fractality being marginally higher in the case of dysplastic tissues. These findings using the multi-resolution analysis capability of the discrete wavelet transform can contribute to the recent surge in the exploration for non-invasive optical tools for pre-cancer detection.

Keywords

Cite

@article{arxiv.1107.2519,
  title  = {Differing self-similarity in light scattering spectra: A potential tool for pre-cancer detection},
  author = {Sayantan Ghosh and Jalpa Soni and Harsh Purwar and Jaidip Jagtap and Asima Pradhan and Nirmalya Ghosh and Prasanta K. Panigrahi},
  journal= {arXiv preprint arXiv:1107.2519},
  year   = {2011}
}

Comments

13 pages, 14 figures