Biomimetic Sonar for Electrical Activation of the Auditory Pathway

Relying on the mechanism of bat’s echolocation system, a bioinspired electronic device has been developed to investigate the cortical activity of mammals in response to auditory sensorial stimuli. By means of implanted electrodes, acoustical information about the external environment generated by a...

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Main Authors: D. Menniti, S. A. Pullano, M. G. Bianco, R. Citraro, E. Russo, G. De Sarro, A. S. Fiorillo
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:Journal of Sensors
Online Access:http://dx.doi.org/10.1155/2017/2632178
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spelling doaj-3a047a379d8a4e48846183a5bab276252020-11-24T23:19:48ZengHindawi LimitedJournal of Sensors1687-725X1687-72682017-01-01201710.1155/2017/26321782632178Biomimetic Sonar for Electrical Activation of the Auditory PathwayD. Menniti0S. A. Pullano1M. G. Bianco2R. Citraro3E. Russo4G. De Sarro5A. S. Fiorillo6Chair of Biomedical Electronics, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyChair of Biomedical Electronics, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyChair of Biomedical Electronics, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyChair of Pharmacology, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyChair of Pharmacology, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyChair of Pharmacology, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyChair of Biomedical Electronics, Department of Health Sciences, University “Magna Græcia” of Catanzaro, Catanzaro, ItalyRelying on the mechanism of bat’s echolocation system, a bioinspired electronic device has been developed to investigate the cortical activity of mammals in response to auditory sensorial stimuli. By means of implanted electrodes, acoustical information about the external environment generated by a biomimetic system and converted in electrical signals was delivered to anatomically selected structures of the auditory pathway. Electrocorticographic recordings showed that cerebral activity response is highly dependent on the information carried out by ultrasounds and is frequency-locked with the signal repetition rate. Frequency analysis reveals that delta and beta rhythm content increases, suggesting that sensorial information is successfully transferred and integrated. In addition, principal component analysis highlights how all the stimuli generate patterns of neural activity which can be clearly classified. The results show that brain response is modulated by echo signal features suggesting that spatial information sent by biomimetic sonar is efficiently interpreted and encoded by the auditory system. Consequently, these results give new perspective in artificial environmental perception, which could be used for developing new techniques useful in treating pathological conditions or influencing our perception of the surroundings.http://dx.doi.org/10.1155/2017/2632178
collection DOAJ
language English
format Article
sources DOAJ
author D. Menniti
S. A. Pullano
M. G. Bianco
R. Citraro
E. Russo
G. De Sarro
A. S. Fiorillo
spellingShingle D. Menniti
S. A. Pullano
M. G. Bianco
R. Citraro
E. Russo
G. De Sarro
A. S. Fiorillo
Biomimetic Sonar for Electrical Activation of the Auditory Pathway
Journal of Sensors
author_facet D. Menniti
S. A. Pullano
M. G. Bianco
R. Citraro
E. Russo
G. De Sarro
A. S. Fiorillo
author_sort D. Menniti
title Biomimetic Sonar for Electrical Activation of the Auditory Pathway
title_short Biomimetic Sonar for Electrical Activation of the Auditory Pathway
title_full Biomimetic Sonar for Electrical Activation of the Auditory Pathway
title_fullStr Biomimetic Sonar for Electrical Activation of the Auditory Pathway
title_full_unstemmed Biomimetic Sonar for Electrical Activation of the Auditory Pathway
title_sort biomimetic sonar for electrical activation of the auditory pathway
publisher Hindawi Limited
series Journal of Sensors
issn 1687-725X
1687-7268
publishDate 2017-01-01
description Relying on the mechanism of bat’s echolocation system, a bioinspired electronic device has been developed to investigate the cortical activity of mammals in response to auditory sensorial stimuli. By means of implanted electrodes, acoustical information about the external environment generated by a biomimetic system and converted in electrical signals was delivered to anatomically selected structures of the auditory pathway. Electrocorticographic recordings showed that cerebral activity response is highly dependent on the information carried out by ultrasounds and is frequency-locked with the signal repetition rate. Frequency analysis reveals that delta and beta rhythm content increases, suggesting that sensorial information is successfully transferred and integrated. In addition, principal component analysis highlights how all the stimuli generate patterns of neural activity which can be clearly classified. The results show that brain response is modulated by echo signal features suggesting that spatial information sent by biomimetic sonar is efficiently interpreted and encoded by the auditory system. Consequently, these results give new perspective in artificial environmental perception, which could be used for developing new techniques useful in treating pathological conditions or influencing our perception of the surroundings.
url http://dx.doi.org/10.1155/2017/2632178
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