© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The millimeter-wave band is an ideal part of the electromagnetic radiation to diagnose human skin conditions because this radiation interacts only with tissue down to a depth of a millimetre or less over the band range from 30 GHz to 300 GHz. In this paper, radiometry is used as a non-contact sensor for measuring the human skin reflectance under normal and wet skin conditions. The mean reflectance of the skin of a sample of 50 healthy participants over the (80–100) GHz band was found to be ~0.615 with a standard deviation of ~0.088, and an experimental measurement uncertainty of ±0.005. The thinner skin regions of the back of the hand, the volar forearms and the inner wrist had refle...
Accurate assessment of the degree of burn in human skin is critically important for burn technicians...
The authors present transmission data, taken at Ka (36GHz) and W (95 GHz) bands in the millimetre-w...
This paper describes the experimental setup and measurements of the emissivity of porcine skin sampl...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The millimeter-wave band is an ideal part ...
Despite the rising interest in the human skin signature over the millimetre wave band there is relat...
A half-space electromagnetic model of human skin over the band 30–300 GHz was constructed and used ...
A half-space electromagnetic model of human skin over the band 30-300 GHz was constructed and used t...
A technique to measure the human skin emissivity in vivo is described for the frequency band 80–100 ...
Background/pupose: Millimeter-wave reflectometry is a potentially interesting technique to analyze t...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. With the performan...
Due to changes in global security requirements attention is turning to new means by which anomalies ...
© 2019 SPIE. Our recent studies in the human skin signatures indicate a strong correlation between t...
This publication describes techniques and systems directed to classifying skin injury using a radar ...
Accurate assessment of the degree of burn in human skin is critically important for burn technicians...
The authors present transmission data, taken at Ka (36GHz) and W (95 GHz) bands in the millimetre-w...
This paper describes the experimental setup and measurements of the emissivity of porcine skin sampl...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The millimeter-wave band is an ideal part ...
Despite the rising interest in the human skin signature over the millimetre wave band there is relat...
A half-space electromagnetic model of human skin over the band 30–300 GHz was constructed and used ...
A half-space electromagnetic model of human skin over the band 30-300 GHz was constructed and used t...
A technique to measure the human skin emissivity in vivo is described for the frequency band 80–100 ...
Background/pupose: Millimeter-wave reflectometry is a potentially interesting technique to analyze t...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. With the performan...
Due to changes in global security requirements attention is turning to new means by which anomalies ...
© 2019 SPIE. Our recent studies in the human skin signatures indicate a strong correlation between t...
This publication describes techniques and systems directed to classifying skin injury using a radar ...
Accurate assessment of the degree of burn in human skin is critically important for burn technicians...
The authors present transmission data, taken at Ka (36GHz) and W (95 GHz) bands in the millimetre-w...
This paper describes the experimental setup and measurements of the emissivity of porcine skin sampl...