Search Results - "Cuttaz, Estelle"
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Actively controlled local drug delivery using conductive polymer-based devices
Published in Applied physics letters (06-01-2020)“…Localized and actively controlled delivery of drugs presents an opportunity for improving bioavailability, therapeutic efficacy, and long-term treatment of…”
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Stretchable, Fully Polymeric Electrode Arrays for Peripheral Nerve Stimulation
Published in Advanced science (01-04-2021)“…There is a critical need to transition research level flexible polymer bioelectronics toward the clinic by demonstrating both reliability in fabrication and…”
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3
Multifocal stimulation of the cerebro-cerebellar loop during the acquisition of a novel motor skill
Published in Scientific reports (19-01-2021)“…Transcranial direct current stimulation (tDCS)-based interventions for augmenting motor learning are gaining interest in systems neuroscience and clinical…”
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Polymer Bioelectronics: A Solution for Both Stimulating and Recording Electrodes
Published in Advanced healthcare materials (01-09-2024)“…The advent of closed‐loop bionics has created a demand for electrode materials that are ideal for both stimulating and recording applications. The growing…”
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Stretchable bioelectronics: Mitigating the challenges of the percolation threshold in conductive elastomers
Published in APL materials (01-10-2020)“…Conductive polymer (CP)–elastomer composites have been proposed as an alternative to the metals conventionally used for bioelectronic devices. Being softer and…”
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Controlled electroactive release from solid-state conductive elastomer electrodes
Published in Materials today bio (01-12-2023)“…This work highlights the development of a conductive elastomer (CE) based electrophoretic platform that enables the transfer of charged molecules from a…”
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Breast cancer HER2 analysis by extra-short incubation microfluidics-assisted fluorescence in situ hybridization (ESIMA FISH)
Published in Microelectronic engineering (05-04-2018)“…Fluorescence in situ hybridization (FISH) is a well-recognized technique for evaluating the human epidermal growth factor receptor 2 (HER2) gene status in…”
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Surface electromyography using dry polymeric electrodes
Published in APL bioengineering (01-09-2023)“…Conventional wet Ag/AgCl electrodes are widely used in electrocardiography, electromyography (EMG), and electroencephalography (EEG) and are considered the…”
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Flexible Networks of Patterned Conducting Polymer Nanowires for Fully Polymeric Bioelectronics
Published in Advanced NanoBiomed Research (Online) (01-03-2022)“…Patterning of conducting polymers (CPs) into fully functioning devices remains a challenge for the creation of polymeric bioelectronics. Presently, the most…”
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Development and Characterization of PEDOT:PSS/Alginate Soft Microelectrodes for Application in Neuroprosthetics
Published in Frontiers in neuroscience (19-09-2018)“…Reducing the mechanical mismatch between the stiffness of a neural implant and the softness of the neural tissue is still an open challenge in…”
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Flexible Nanowire Conductive Elastomers for Applications in Fully Polymeric Bioelectronic Devices
Published in 2021 43rd Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC) (01-11-2021)“…Soft, flexible polymer-based bioelectronics are a promising approach to minimize the chronic inflammatory reactions associated with metallic devices, impairing…”
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Conference Proceeding Journal Article -
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A Pilot In Vivo Study of Flexible Fully Polymeric Nerve Cuff Electrodes
Published in 2023 45th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC) (01-01-2023)“…Recent trends in the field of bioelectronics have been focused on the development of electrodes that facilitate safe and efficient stimulation of nervous…”
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Conference Proceeding Journal Article -
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Preparation of Rat Sciatic Nerve for Ex Vivo Neurophysiology
Published in Journal of visualized experiments (12-07-2022)“…Ex vivo preparations enable the study of many neurophysiological processes in isolation from the rest of the body while preserving local tissue structure. This…”
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