Accès ouvert
2026
preprint
OpenAlex
Tom Stumpp, Fulya Ersoy, Michael Mierzejewski, Meike Beer et autres
Electrophysiological interfacing remains difficult in three-dimensional in vitro models, when using planar microelectrode arrays or optical methods. This challenge limits experimental progress using such models, despite their promise of better physiological relevance than monolayer cell culture. Mesh MEAs which can integrate conformally …
us, ir
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Accès ouvert
2023
article
OpenAlex
Tom Stumpp, Michael Mierzejewski, Domenic Pascual, Angelika Stumpf et autres
Abstract Introduction: Neural organoids promise to help understand the human brain and develop treatments for neurological diseases. Electrophysiological recordings are essential in neural models to evaluate the activity of neural circuits. Mesh microelectrode arrays (MEAs) have been demonstrated to be suitable for …
de
(code pays fourni par la source)
2023
article
OpenAlex
Domenic Pascual, Lisa Brauns, Ruth Domes, Matthias Tisler et autres
de
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Accès ouvert
2023
preprint
OpenAlex
Domenic Pascual, Lisa Brauns, Ruth Domes, Matthias Tisler et autres
Abstract Microelectrode arrays (MEAs) have proven to be a powerful tool to study electrophysiological processes over the last decades with most technology developed for investigation of the heart or brain. Other targets in the field of bioelectronic medicine are the peripheral nervous …
de
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2023
article
OpenAlex
Matthew G. McDonald, David Sebinger, Lisa Brauns, Laura González-Cano et autres
de
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Accès ouvert
2022
article
OpenAlex
Helen Steins, Michael Mierzejewski, Lisa Brauns, Angelika Stumpf et autres
Recording neural signals from delicate autonomic nerves is a challenging task that requires the development of a low-invasive neural interface with highly selective, micrometer-sized electrodes. This paper reports on the development of a three-dimensional (3D) protruding thin-film microelectrode array (MEA), which is …
de, at
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Accès ouvert
2020
preprint
OpenAlex
Matthew G. McDonald, David Sebinger, Lisa Brauns, Laura González-Cano et autres
Abstract Organoids are emerging in vitro models of human physiology. Neural models require the evaluation of functional activity of single cells and networks, which is best measured by microelectrode arrays. The characteristics of organoids clash with existing in vitro or in vivo …
de
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