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dc.rights.licenseopenen_US
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorBAILLEUL, Alexia
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorDE GANNES, Florence Poulletier
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorPIROG, Antoine
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorN’KAOUA, Gilles
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorD’HOLLANDE, Adrien
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorHOUE, Aurelian
dc.contributor.authorSOULIER, Fabien
dc.contributor.authorBERNARD, Serge
hal.structure.identifierLaboratoire de l'intégration, du matériau au système [IMS]
dc.contributor.authorRENAUD, Sylvie
dc.date.accessioned2024-05-21T10:27:41Z
dc.date.available2024-05-21T10:27:41Z
dc.date.issued2022-12-12
dc.identifier.issn2169-3536en_US
dc.identifier.urihttps://oskar-bordeaux.fr/handle/20.500.12278/199959
dc.description.abstractEnIn this study, we present a first-of-a-kind biological-hardware-software tool to evaluate the physiological condition of in vitro myotubes in response to electrical stimulation. We demonstrate that impedance spectroscopy on a microelectrode array can testify for physiological changes of muscle cells under electrical stimulation. The platform is designed for simultaneous bioimpedance spectroscopy, electrical stimulation, and optical microscopy. It includes a microelectrode array, a custom hardware-software interface, and a commercial impedance analyzer. We used a well-established muscle cell model (C2C12) and developed a culture protocol suited for long-term recordings on microelectrode arrays. Electrical stimulation was applied with carbon electrodes and ad hoc electronics for current stimulation. Muscle cell bioimpedance measurement was complemented with optical microscopy video to record contractions. Then, the influence of electrical stimulation on the contractile activity of myotubes and on their bioimpedance was analyzed. Results validated the functionality of the hardware/software platform when used with our contractile muscle model. A bioimpedance-based metric was defined to evaluate changes in myotubes’ physiology. After playing multiple stimulation scenarios, analysis showed that the bioimpedance metric decreases as duration or frequency of stimulation increase.
dc.description.sponsorshipCapteurs bio-électroniques intégrant l'algorithme des îlots pour le contrôle de la glycémie en boucle ouverte et fermée - ANR-18-CE17-0005en_US
dc.language.isoENen_US
dc.rightsAttribution 3.0 United States*
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/us/*
dc.subjectBioimpedance
dc.subjectMuscles
dc.subjectElectrical stimulation
dc.subjectMonitoring
dc.subjectImpedance
dc.subjectSpectroscopy
dc.subjectIn vitro
dc.subjectC2C12
dc.subjectElectrical stimulation
dc.subjectElectrophysiology
dc.subjectImpedance spectroscopy
dc.subjectMEA
dc.subjectMicroelectrode array
dc.subjectMyotubes
dc.subjectSkeletal muscle
dc.title.enBioimpedance Spectroscopy Helps Monitor the Impact of Electrical Stimulation on Muscle Cells
dc.typeArticle de revueen_US
dc.identifier.doi10.1109/ACCESS.2022.3228479en_US
dc.subject.halSciences de l'ingénieur [physics]en_US
bordeaux.journalIEEE Accessen_US
bordeaux.page131430-131441en_US
bordeaux.volume10en_US
bordeaux.hal.laboratoriesIMS : Laboratoire de l'Intégration du Matériau au Système - UMR 5218en_US
bordeaux.institutionUniversité de Bordeauxen_US
bordeaux.institutionBordeaux INPen_US
bordeaux.institutionCNRSen_US
bordeaux.teamBIOELECTRONICS-TIPSen_US
bordeaux.teamBIOELECTRONICS-SANEen_US
bordeaux.peerReviewedouien_US
bordeaux.inpressnonen_US
hal.popularnonen_US
hal.audienceInternationaleen_US
hal.exportfalse
dc.rights.ccCC BYen_US
bordeaux.COinSctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=IEEE%20Access&rft.date=2022-12-12&rft.volume=10&rft.spage=131430-131441&rft.epage=131430-131441&rft.eissn=2169-3536&rft.issn=2169-3536&rft.au=BAILLEUL,%20Alexia&DE%20GANNES,%20Florence%20Poulletier&PIROG,%20Antoine&N%E2%80%99KAOUA,%20Gilles&D%E2%80%99HOLLANDE,%20Adrien&rft.genre=article


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