The Sub-THz Emission of the Human Body Under Physiological Stress
We present evidence that in the sub-THz frequency band, human skin can be considered as an electromagnetic bio-metamaterial in which its natural emission is a product of skin tissue geometry and embedded structures. Radiometry was performed on 32 human subjects from 480 to 700 GHz. Concurrently, the...
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| Published in | IEEE transactions on terahertz science and technology Vol. 11; no. 4; pp. 381 - 388 |
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| Main Authors | , , , , , , , , , |
| Format | Journal Article |
| Language | English |
| Published |
Piscataway
IEEE
01.07.2021
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subjects | |
| Online Access | Get full text |
| ISSN | 2156-342X 2156-3446 |
| DOI | 10.1109/TTHZ.2021.3066099 |
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| Abstract | We present evidence that in the sub-THz frequency band, human skin can be considered as an electromagnetic bio-metamaterial in which its natural emission is a product of skin tissue geometry and embedded structures. Radiometry was performed on 32 human subjects from 480 to 700 GHz. Concurrently, the subjects were exposed to stress, while heart pulse rate (PS) and galvanic skin response (GSR) were also measured. The results are substantially different from the expected blackbody radiation signal of the skin surface. PS and GSR correlate to the emissivity. Using a simulation model for the skin, we find that the sweat duct is a critical element. The simulated frequency spectra qualitatively match the measured emission spectra and show that our sub-THz emission is modulated by our level of mental stress. This opens avenues for the remote monitoring of the human state. |
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| AbstractList | We present evidence that in the sub-THz frequency band, human skin can be considered as an electromagnetic bio-metamaterial in which its natural emission is a product of skin tissue geometry and embedded structures. Radiometry was performed on 32 human subjects from 480 to 700 GHz. Concurrently, the subjects were exposed to stress, while heart pulse rate (PS) and galvanic skin response (GSR) were also measured. The results are substantially different from the expected blackbody radiation signal of the skin surface. PS and GSR correlate to the emissivity. Using a simulation model for the skin, we find that the sweat duct is a critical element. The simulated frequency spectra qualitatively match the measured emission spectra and show that our sub-THz emission is modulated by our level of mental stress. This opens avenues for the remote monitoring of the human state. |
| Author | Feldman, Yuri Ozhegov, Roman V. Goltsman, Gregory N. Puzenko, Alexander Kinev, Nickolay V. Koshelets, Valery P. Betzalel, Noa Baksheeva, Ksenia A. Ben Ishai, Paul Kochnev, Anna |
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| SubjectTerms | Black body radiation Embedded structures Emission spectra Frequency measurement Frequency spectrum Galvanic skin response Heart rate Human performance human skin emission Metamaterials Protocols Psychological stress Radiometry Remote monitoring Skin Stress Stress (physiology) Stress measurement sub-THz sweat ducts Temperature measurement Terahertz frequencies |
| Title | The Sub-THz Emission of the Human Body Under Physiological Stress |
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