ID | 34081 |
FullText URL | |
Author |
Yamamoto, Yoshitake
Kawai, Keisuke
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Abstract | We have proposed a new measuring method for the softness of epidermis using rotational step response. It can be proceeded that horizontal torsional step is given periodically to the human skin surface by rotational step motor. Then dynamically epidermal characteristic is abstracted selectively from the human skin minimizing influence of the subcutaneous tissue. The cylindrical rotor is attached to the shaft of step motor and its external area is surrounded by the cylindrical guard ring; therefore, only human skin surface of inside the guard ring is screwed periodically by its rotor. At this moment, viscoelasticity of the epidermis is evaluated from analyzing the inducting coil of the step motor. The waveform of voltage of inducing coil can be characterized by overshoot P1, damping ratio D and undamped natural frequency ωn. The softness Ks that indicates viscoelasticity of the epidermis can be calculated from these parameters. Many experimental results showed that the softness Ks corresponds to the human sense and it is rational as a parameter for the human skin characteristics. This system is very useful as the measurement can be done easily, in vivo, and non-invasively. It also can be constructed simply without special mechanical sensor because step motor acts as not only driving but also sensing |
Keywords | biological techniques
mechanical variables measurement
skin
step response
stepping
motors viscoelasticity
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Note | Digital Object Identifier: 10.1109/IMTC.1999.776776
Published with permission from the copyright holder. This is the institute's copy, as published in Instrumentation and Measurement Technology Conference, 1999. IMTC/99. Proceedings of the 16th IEEE, 24-26 May 1999, Volume 1, Pages 359-364. Publisher URL:http://dx.doi.org/10.1109/IMTC.1999.776776 Copyright © 1999 IEEE. All rights reserved. |
Published Date | 1999-5
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Publication Title |
Instrumentation and Measurement Technology Conference
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Volume | volume1
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Start Page | 359
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End Page | 364
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Content Type |
Journal Article
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language |
English
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Refereed |
True
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DOI | |
Submission Path | electrical_engineering/59
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