Physiological model using diffuse reflectance spectroscopy for nonmelanoma skin cancer diagnosis. 2019

Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
Department of Biomedical Engineering, The University of Texas at Austin, Austin, Texas.

Diffuse reflectance spectroscopy (DRS) is a noninvasive, fast, and low-cost technology with potential to assist cancer diagnosis. The goal of this study was to test the capability of our physiological model, a computational Monte Carlo lookup table inverse model, for nonmelanoma skin cancer diagnosis. We applied this model on a clinical DRS dataset to extract scattering parameters, blood volume fraction, oxygen saturation and vessel radius. We found that the model was able to capture physiological information relevant to skin cancer. We used the extracted parameters to classify (basal cell carcinoma [BCC], squamous cell carcinoma [SCC]) vs actinic keratosis (AK) and (BCC, SCC, AK) vs normal. The area under the receiver operating characteristic curve achieved by the classifiers trained on the parameters extracted using the physiological model is comparable to that of classifiers trained on features extracted via Principal Component Analysis. Our findings suggest that DRS can reveal physiologic characteristics of skin and this physiologic model offers greater flexibility for diagnosing skin cancer than a pure statistical analysis. Physiological parameters extracted from diffuse reflectance spectra data for nonmelanoma skin cancer diagnosis.

UI MeSH Term Description Entries
D008954 Models, Biological Theoretical representations that simulate the behavior or activity of biological processes or diseases. For disease models in living animals, DISEASE MODELS, ANIMAL is available. Biological models include the use of mathematical equations, computers, and other electronic equipment. Biological Model,Biological Models,Model, Biological,Models, Biologic,Biologic Model,Biologic Models,Model, Biologic
D009010 Monte Carlo Method In statistics, a technique for numerically approximating the solution of a mathematical problem by studying the distribution of some random variable, often generated by a computer. The name alludes to the randomness characteristic of the games of chance played at the gambling casinos in Monte Carlo. (From Random House Unabridged Dictionary, 2d ed, 1993) Method, Monte Carlo
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D012878 Skin Neoplasms Tumors or cancer of the SKIN. Cancer of Skin,Skin Cancer,Cancer of the Skin,Neoplasms, Skin,Cancer, Skin,Cancers, Skin,Neoplasm, Skin,Skin Cancers,Skin Neoplasm
D013057 Spectrum Analysis The measurement of the amplitude of the components of a complex waveform throughout the frequency range of the waveform. (McGraw-Hill Dictionary of Scientific and Technical Terms, 6th ed) Spectroscopy,Analysis, Spectrum,Spectrometry
D055620 Optical Phenomena LIGHT, its processes and properties, and the characteristics of materials interacting with it. Optical Concepts,Optical Processes,Optical Phenomenon,Optical Process,Concept, Optical,Concepts, Optical,Optical Concept,Phenomena, Optical,Phenomenon, Optical,Process, Optical,Processes, Optical

Related Publications

Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
June 2012, Cancer research,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
November 2012, Actas dermo-sifiliograficas,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
January 2008, Journal of biomedical optics,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
April 2020, Optics letters,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
January 2008, Physics in medicine and biology,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
March 2020, Biomedical optics express,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
August 2014, Plastic and reconstructive surgery,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
January 2008, Journal of biomedical optics,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
February 2019, Biomedical optics express,
Yao Zhang, and Austin J Moy, and Xu Feng, and Hieu T M Nguyen, and Jason S Reichenberg, and Mia K Markey, and James W Tunnell
September 2023, Biomedical optics express,
Copied contents to your clipboard!