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In vivo nonlinear spectral imaging as a tool to monitor early spectroscopic and metabolic changes in a murine cutaneous squamous cell carcinoma model.

Giju Thomas ,
Johan van Voskuilen ,
Hoa Truong ,
Ji-Ying Song ,
Hans C Gerritsen ,
H J C M Sterenborg

Abstract

Timely detection of cutaneous squamous cell carcinoma with non-invasive modalities like nonlinear spectral imaging (NLSI) can ensure efficient preventive or therapeutic measures for patients. In this study, in vivo NLSI was used to study spectral characteristics in murine skin treated with 7, 12-dimethylbenz(a)anthracene. The results show that NLSI could detect emission spectral changes during the early preclinical stages of skin carcinogenesis. Analyzing these emission spectra using simulated band-pass filters at 450-460 nm and 525-535 nm, gave parameters that were expressed as a ratio. This ratio was increased and thus suggestive of elevated metabolic activity in early stages of skin carcinogenesis.

More about this publication

Biomedical optics express

Volume 5
Issue nr. 12
Pages 4281-99
Publication date 01-12-2014

Full text links

Publisher website (DOI) 10.1364/BOE.5.004281
Europe PubMed Central 25574438
Pubmed 25574438

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