Investigation of human tactile stochastic resonance depending on frequency effect

Stochastic Resonance (SR) is a significant concern for design of robotic tactile sensors because of its considerable enhancement of sensitivity of human tactile sensation. In the last few decades, researchers have foundthat noise previously considered detrimental in fact provides the benefit of SR p...

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Published in:International Journal on Smart Sensing and Intelligent Systems
Main Author: Beceren K.; Ohka M.; Miyaoka T.; Yussof H.; Makhtar A.K.; Basir S.N.
Format: Article
Language:English
Published: Sciendo 2013
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84892957840&doi=10.21307%2fijssis-2017-641&partnerID=40&md5=1969988cb4bffa9fdafb9d1b22c5b813
id 2-s2.0-84892957840
spelling 2-s2.0-84892957840
Beceren K.; Ohka M.; Miyaoka T.; Yussof H.; Makhtar A.K.; Basir S.N.
Investigation of human tactile stochastic resonance depending on frequency effect
2013
International Journal on Smart Sensing and Intelligent Systems
6
5
10.21307/ijssis-2017-641
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84892957840&doi=10.21307%2fijssis-2017-641&partnerID=40&md5=1969988cb4bffa9fdafb9d1b22c5b813
Stochastic Resonance (SR) is a significant concern for design of robotic tactile sensors because of its considerable enhancement of sensitivity of human tactile sensation. In the last few decades, researchers have foundthat noise previously considered detrimental in fact provides the benefit of SR phenomena. However, there are no experimental results for dependence on vibrotactile frequency, which issued as basic data for robotic tactile sensors. In this paper, we investigated the influence of the SR phenomena on human tactile sensation in the context of frequency-dependence of absolute thresholds (AT). We developed a system composed of an experimental apparatus and a computer program based on psychophysics in order to measure the AT of human vibrotactile sensation. We performed three series of psychophysical experiments using normal vibration, 8-mm-sized stimulus point and the continuous sinusoidal signals of 32, 50 and 75 Hz to obtain the AT variation in frequency. The results show that since normal ATs decrease with appropriate noise, SR is observed in normal stimuli tests in the frequency range from 32 to 70 Hz. Since the inclination of the curve of AT in a double logarithmic graph is around -1 in both with-noise and without-noise conditions, SR is caused by the FA-I mechanoreceptive unit in the range of frequency.
Sciendo
11785608
English
Article
All Open Access; Gold Open Access; Green Open Access
author Beceren K.; Ohka M.; Miyaoka T.; Yussof H.; Makhtar A.K.; Basir S.N.
spellingShingle Beceren K.; Ohka M.; Miyaoka T.; Yussof H.; Makhtar A.K.; Basir S.N.
Investigation of human tactile stochastic resonance depending on frequency effect
author_facet Beceren K.; Ohka M.; Miyaoka T.; Yussof H.; Makhtar A.K.; Basir S.N.
author_sort Beceren K.; Ohka M.; Miyaoka T.; Yussof H.; Makhtar A.K.; Basir S.N.
title Investigation of human tactile stochastic resonance depending on frequency effect
title_short Investigation of human tactile stochastic resonance depending on frequency effect
title_full Investigation of human tactile stochastic resonance depending on frequency effect
title_fullStr Investigation of human tactile stochastic resonance depending on frequency effect
title_full_unstemmed Investigation of human tactile stochastic resonance depending on frequency effect
title_sort Investigation of human tactile stochastic resonance depending on frequency effect
publishDate 2013
container_title International Journal on Smart Sensing and Intelligent Systems
container_volume 6
container_issue 5
doi_str_mv 10.21307/ijssis-2017-641
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84892957840&doi=10.21307%2fijssis-2017-641&partnerID=40&md5=1969988cb4bffa9fdafb9d1b22c5b813
description Stochastic Resonance (SR) is a significant concern for design of robotic tactile sensors because of its considerable enhancement of sensitivity of human tactile sensation. In the last few decades, researchers have foundthat noise previously considered detrimental in fact provides the benefit of SR phenomena. However, there are no experimental results for dependence on vibrotactile frequency, which issued as basic data for robotic tactile sensors. In this paper, we investigated the influence of the SR phenomena on human tactile sensation in the context of frequency-dependence of absolute thresholds (AT). We developed a system composed of an experimental apparatus and a computer program based on psychophysics in order to measure the AT of human vibrotactile sensation. We performed three series of psychophysical experiments using normal vibration, 8-mm-sized stimulus point and the continuous sinusoidal signals of 32, 50 and 75 Hz to obtain the AT variation in frequency. The results show that since normal ATs decrease with appropriate noise, SR is observed in normal stimuli tests in the frequency range from 32 to 70 Hz. Since the inclination of the curve of AT in a double logarithmic graph is around -1 in both with-noise and without-noise conditions, SR is caused by the FA-I mechanoreceptive unit in the range of frequency.
publisher Sciendo
issn 11785608
language English
format Article
accesstype All Open Access; Gold Open Access; Green Open Access
record_format scopus
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