Actinic keratosis are of utmost medical and economical interest because of their high prevalence (20 % of 60 year-old people and older in the Northern hemisphere) and their important cosmetic impact as such actinic keratosis mostly appear on photo-exposed skin sites. The surgeon in charge of such lesions' removal (i) some actinic keratosis adjoining carcinoma to be resected therefore causing the problem of functional areas damaging (eyelids, lips, etc.) or (ii) numerous actinic keratosis localized away from carcinoma (photo-carcinogenesis field) faces the issue of clinical evaluation of such lesions: which ones will spontaneously regress (it is supposed to be the case for 20 % of such lesions);which ones will remain and which ones will develop into invasive carcinomas ? A non-invasive, non-traumatic, automated and real-time help for the clinical diagnosis orientation of such skin lesions could help improving diagnosis accuracy of the medical practitioner's visual inspection: * In terms of sensitivity in order to potentially decrease the number of actinic keratosis evolving towards invasive carcinoma, * In terms of specificity in order to potentially decrease useless resections and reduce resection margins and therefore reduce scars surface.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
142
an optical fiber will be put in gentle contact with the patient's skin in order to acquire optical spectra
CHR Metz Thionville
Metz, France
Optical spectroscopy's diagnostic validity for the 4 histological classes discrimination
Time frame: day 1
Statistical significance degree of the discrimination by molecular profiling (transcriptomic characterization) between in situ carcinoma (ISC) and invasive carcinoma (InvC).
Time frame: day 1
Statistical significance degree of the discrimination by molecular profiling (transcriptomic characterization) between 2 classes of actinic keratosis (AK) of clinical relevance: AK characterized by a "low" versus a "high" invasiveness risk
Time frame: day 1
- Sensitivity and specificity of optical spectroscopy for discriminating the é molecular classes of actinic keratosis: AK characterized by a "low" versus a "high" invasiveness risk.
Time frame: day 1
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