Strategies for object polarization and their role in electrosensory information gathering
Resumen:
Weakly electric fish polarize the nearby environment with a stereotyped electric field and gain information by detecting the changes imposed by objects with tuned sensors. Here we focus on polarization strategies as paradigmatic bioinspiring mechanisms for sensing devices. We begin this research developing a toy model that describes three polarization strategies exhibited by three different groups of fish. We then report an experimental analysis which confirmed predictions of the model and in turn predicted functional consequences that were explored in behavioral experiments in the pulse fish Gymnotus omarorum. In the experiments, polarization was evaluated by estimating the object’s stamp (i.e. the electric source that produces the same electric image as the object) as a function of object impedance, orientation, and position. Signal detection and discrimination was explored in G. omarorum by provoking novelty responses, which are known to reflect the increment in the electric image provoked by a change in nearby impedance. To achieve this, we stepped the longitudinal impedance of a cylindrical object between two impedances (either capacitive or resistive). Object polarization and novelty responses indicate that G. omarorum has two functional regions in the electrosensory field. At the front of the fish, there is a foveal field where object position and orientation are encoded in signal intensity, while the qualia associated with impedance is encoded in signal time course. On the side of the fish there is a peripheral field where the complexity of the polarizing field facilitates detection of objects oriented in any angle with respect to the fish´s longitudinal axis. These findings emphasize the importance of articulating field generation, sensor tuning and the repertoire of exploratory movements to optimize performance of artificial active electrosensory systems.
2020 | |
Agencia Nacional de Investigación e Innovación | |
Electric fish Object’s stamp Gymnotiformes Mormyroidea Multifrequency analysis Electrotomography. Ciencias Médicas y de la Salud Medicina Básica Neurociencias Ingeniería y Tecnología Ingeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la Información |
|
Inglés | |
Instituto de Investigaciones Biológicas Clemente Estable | |
IIBCE en REDI | |
https://hdl.handle.net/20.500.12381/3530 | |
Acceso abierto | |
Reconocimiento-NoComercial-SinObraDerivada 4.0 Internacional. (CC BY-NC-ND) |
_version_ | 1811155751523057664 |
---|---|
author | Caputi, A.A. |
author2 | Aguilera, P.A. |
author2_role | author |
author_facet | Caputi, A.A. Aguilera, P.A. |
author_role | author |
bitstream.checksum.fl_str_mv | fcc8b2ddb26c820405a37f9e0cae7f18 e3ba9de81600a87b0fbca73f051e0068 |
bitstream.checksumAlgorithm.fl_str_mv | MD5 MD5 |
bitstream.url.fl_str_mv | https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3530/2/license.txt https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3530/1/2caputi%20y%20aguilera%202020.pdf |
collection | IIBCE en REDI |
dc.creator.none.fl_str_mv | Caputi, A.A. Aguilera, P.A. |
dc.date.accessioned.none.fl_str_mv | 2024-07-01T13:55:56Z |
dc.date.available.none.fl_str_mv | 2024-07-01T13:55:56Z |
dc.date.issued.none.fl_str_mv | 2020-04-14 |
dc.description.abstract.none.fl_txt_mv | Weakly electric fish polarize the nearby environment with a stereotyped electric field and gain information by detecting the changes imposed by objects with tuned sensors. Here we focus on polarization strategies as paradigmatic bioinspiring mechanisms for sensing devices. We begin this research developing a toy model that describes three polarization strategies exhibited by three different groups of fish. We then report an experimental analysis which confirmed predictions of the model and in turn predicted functional consequences that were explored in behavioral experiments in the pulse fish Gymnotus omarorum. In the experiments, polarization was evaluated by estimating the object’s stamp (i.e. the electric source that produces the same electric image as the object) as a function of object impedance, orientation, and position. Signal detection and discrimination was explored in G. omarorum by provoking novelty responses, which are known to reflect the increment in the electric image provoked by a change in nearby impedance. To achieve this, we stepped the longitudinal impedance of a cylindrical object between two impedances (either capacitive or resistive). Object polarization and novelty responses indicate that G. omarorum has two functional regions in the electrosensory field. At the front of the fish, there is a foveal field where object position and orientation are encoded in signal intensity, while the qualia associated with impedance is encoded in signal time course. On the side of the fish there is a peripheral field where the complexity of the polarizing field facilitates detection of objects oriented in any angle with respect to the fish´s longitudinal axis. These findings emphasize the importance of articulating field generation, sensor tuning and the repertoire of exploratory movements to optimize performance of artificial active electrosensory systems. |
dc.description.sponsorship.none.fl_txt_mv | Agencia Nacional de Investigación e Innovación |
dc.identifier.anii.es.fl_str_mv | FCE_1_2019_1_155541 |
dc.identifier.doi.none.fl_str_mv | 10.1088/1748-3190/ab6782 |
dc.identifier.uri.none.fl_str_mv | https://hdl.handle.net/20.500.12381/3530 |
dc.language.iso.none.fl_str_mv | eng |
dc.publisher.es.fl_str_mv | IOP Publishing |
dc.rights.*.fl_str_mv | Acceso abierto |
dc.rights.license.none.fl_str_mv | Reconocimiento-NoComercial-SinObraDerivada 4.0 Internacional. (CC BY-NC-ND) |
dc.rights.none.fl_str_mv | info:eu-repo/semantics/openAccess |
dc.source.es.fl_str_mv | Bioinspiration & Biomimetics |
dc.source.none.fl_str_mv | reponame:IIBCE en REDI instname:Instituto de Investigaciones Biológicas Clemente Estable instacron:Instituto de Investigaciones Biológicas Clemente Estable |
dc.subject.anii.none.fl_str_mv | Ciencias Médicas y de la Salud Medicina Básica Neurociencias Ingeniería y Tecnología Ingeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la Información |
dc.subject.es.fl_str_mv | Electric fish Object’s stamp Gymnotiformes Mormyroidea Multifrequency analysis Electrotomography. |
dc.title.none.fl_str_mv | Strategies for object polarization and their role in electrosensory information gathering |
dc.type.es.fl_str_mv | Artículo |
dc.type.none.fl_str_mv | info:eu-repo/semantics/article |
dc.type.version.es.fl_str_mv | Aceptado |
dc.type.version.none.fl_str_mv | info:eu-repo/semantics/acceptedVersion |
description | Weakly electric fish polarize the nearby environment with a stereotyped electric field and gain information by detecting the changes imposed by objects with tuned sensors. Here we focus on polarization strategies as paradigmatic bioinspiring mechanisms for sensing devices. We begin this research developing a toy model that describes three polarization strategies exhibited by three different groups of fish. We then report an experimental analysis which confirmed predictions of the model and in turn predicted functional consequences that were explored in behavioral experiments in the pulse fish Gymnotus omarorum. In the experiments, polarization was evaluated by estimating the object’s stamp (i.e. the electric source that produces the same electric image as the object) as a function of object impedance, orientation, and position. Signal detection and discrimination was explored in G. omarorum by provoking novelty responses, which are known to reflect the increment in the electric image provoked by a change in nearby impedance. To achieve this, we stepped the longitudinal impedance of a cylindrical object between two impedances (either capacitive or resistive). Object polarization and novelty responses indicate that G. omarorum has two functional regions in the electrosensory field. At the front of the fish, there is a foveal field where object position and orientation are encoded in signal intensity, while the qualia associated with impedance is encoded in signal time course. On the side of the fish there is a peripheral field where the complexity of the polarizing field facilitates detection of objects oriented in any angle with respect to the fish´s longitudinal axis. These findings emphasize the importance of articulating field generation, sensor tuning and the repertoire of exploratory movements to optimize performance of artificial active electrosensory systems. |
eu_rights_str_mv | openAccess |
format | article |
id | IIBCE_242cebe629972c970fbe651e84acfa71 |
identifier_str_mv | FCE_1_2019_1_155541 10.1088/1748-3190/ab6782 |
instacron_str | Instituto de Investigaciones Biológicas Clemente Estable |
institution | Instituto de Investigaciones Biológicas Clemente Estable |
instname_str | Instituto de Investigaciones Biológicas Clemente Estable |
language | eng |
network_acronym_str | IIBCE |
network_name_str | IIBCE en REDI |
oai_identifier_str | oai:redi.anii.org.uy:20.500.12381/3530 |
publishDate | 2020 |
reponame_str | IIBCE en REDI |
repository.mail.fl_str_mv | |
repository.name.fl_str_mv | IIBCE en REDI - Instituto de Investigaciones Biológicas Clemente Estable |
repository_id_str | 9421_3 |
rights_invalid_str_mv | Reconocimiento-NoComercial-SinObraDerivada 4.0 Internacional. (CC BY-NC-ND) Acceso abierto |
spelling | Reconocimiento-NoComercial-SinObraDerivada 4.0 Internacional. (CC BY-NC-ND)Acceso abiertoinfo:eu-repo/semantics/openAccess2024-07-01T13:55:56Z2024-07-01T13:55:56Z2020-04-14https://hdl.handle.net/20.500.12381/3530FCE_1_2019_1_15554110.1088/1748-3190/ab6782Weakly electric fish polarize the nearby environment with a stereotyped electric field and gain information by detecting the changes imposed by objects with tuned sensors. Here we focus on polarization strategies as paradigmatic bioinspiring mechanisms for sensing devices. We begin this research developing a toy model that describes three polarization strategies exhibited by three different groups of fish. We then report an experimental analysis which confirmed predictions of the model and in turn predicted functional consequences that were explored in behavioral experiments in the pulse fish Gymnotus omarorum. In the experiments, polarization was evaluated by estimating the object’s stamp (i.e. the electric source that produces the same electric image as the object) as a function of object impedance, orientation, and position. Signal detection and discrimination was explored in G. omarorum by provoking novelty responses, which are known to reflect the increment in the electric image provoked by a change in nearby impedance. To achieve this, we stepped the longitudinal impedance of a cylindrical object between two impedances (either capacitive or resistive). Object polarization and novelty responses indicate that G. omarorum has two functional regions in the electrosensory field. At the front of the fish, there is a foveal field where object position and orientation are encoded in signal intensity, while the qualia associated with impedance is encoded in signal time course. On the side of the fish there is a peripheral field where the complexity of the polarizing field facilitates detection of objects oriented in any angle with respect to the fish´s longitudinal axis. These findings emphasize the importance of articulating field generation, sensor tuning and the repertoire of exploratory movements to optimize performance of artificial active electrosensory systems.Agencia Nacional de Investigación e InnovaciónengIOP PublishingBioinspiration & Biomimeticsreponame:IIBCE en REDIinstname:Instituto de Investigaciones Biológicas Clemente Estableinstacron:Instituto de Investigaciones Biológicas Clemente EstableElectric fishObject’s stampGymnotiformesMormyroideaMultifrequency analysisElectrotomography.Ciencias Médicas y de la SaludMedicina BásicaNeurocienciasIngeniería y TecnologíaIngeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la InformaciónStrategies for object polarization and their role in electrosensory information gatheringArtículoAceptadoinfo:eu-repo/semantics/acceptedVersioninfo:eu-repo/semantics/articleInstituto de Investigaciones Biológicas Clemente Estable//Ciencias Médicas y de la Salud/Medicina Básica/Neurociencias//Ingeniería y Tecnología/Ingeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la Información/Ingeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la InformaciónCaputi, A.A.Aguilera, P.A.LICENSElicense.txtlicense.txttext/plain; charset=utf-85151https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3530/2/license.txtfcc8b2ddb26c820405a37f9e0cae7f18MD52ORIGINAL2caputi y aguilera 2020.pdf2caputi y aguilera 2020.pdfapplication/pdf1166156https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3530/1/2caputi%20y%20aguilera%202020.pdfe3ba9de81600a87b0fbca73f051e0068MD5120.500.12381/35302024-07-03 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en REDI - Instituto de Investigaciones Biológicas Clemente Establefalse |
spellingShingle | Strategies for object polarization and their role in electrosensory information gathering Caputi, A.A. Electric fish Object’s stamp Gymnotiformes Mormyroidea Multifrequency analysis Electrotomography. Ciencias Médicas y de la Salud Medicina Básica Neurociencias Ingeniería y Tecnología Ingeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la Información |
status_str | acceptedVersion |
title | Strategies for object polarization and their role in electrosensory information gathering |
title_full | Strategies for object polarization and their role in electrosensory information gathering |
title_fullStr | Strategies for object polarization and their role in electrosensory information gathering |
title_full_unstemmed | Strategies for object polarization and their role in electrosensory information gathering |
title_short | Strategies for object polarization and their role in electrosensory information gathering |
title_sort | Strategies for object polarization and their role in electrosensory information gathering |
topic | Electric fish Object’s stamp Gymnotiformes Mormyroidea Multifrequency analysis Electrotomography. Ciencias Médicas y de la Salud Medicina Básica Neurociencias Ingeniería y Tecnología Ingeniería Eléctrica, Ingeniería Electrónica e Ingeniería de la Información |
url | https://hdl.handle.net/20.500.12381/3530 |