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PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs

The electrophysiological activities of head direction (HD) cells under visual and vestibular input dissociation are important to understanding the formation of the sense of direction in animals. In this paper, we fabricated a PtNPs/PEDOT:PSS-modified MEA to detect changes in the discharge of HD cell...

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Autores principales: Yang, Gucheng, Wang, Yiding, Xu, Zhaojie, Zhang, Xue, Ruan, Wang, Mo, Fan, Lu, Botao, Fan, Penghui, Dai, Yuchuan, He, Enhui, Song, Yilin, Wang, Changyong, Liu, Juntao, Cai, Xinxia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10216047/
https://www.ncbi.nlm.nih.gov/pubmed/37232857
http://dx.doi.org/10.3390/bios13050496
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author Yang, Gucheng
Wang, Yiding
Xu, Zhaojie
Zhang, Xue
Ruan, Wang
Mo, Fan
Lu, Botao
Fan, Penghui
Dai, Yuchuan
He, Enhui
Song, Yilin
Wang, Changyong
Liu, Juntao
Cai, Xinxia
author_facet Yang, Gucheng
Wang, Yiding
Xu, Zhaojie
Zhang, Xue
Ruan, Wang
Mo, Fan
Lu, Botao
Fan, Penghui
Dai, Yuchuan
He, Enhui
Song, Yilin
Wang, Changyong
Liu, Juntao
Cai, Xinxia
author_sort Yang, Gucheng
collection PubMed
description The electrophysiological activities of head direction (HD) cells under visual and vestibular input dissociation are important to understanding the formation of the sense of direction in animals. In this paper, we fabricated a PtNPs/PEDOT:PSS-modified MEA to detect changes in the discharge of HD cells under dissociated sensory conditions. The electrode shape was customized for the retrosplenial cortex (RSC) and was conducive to the sequential detection of neurons at different depths in vivo when combined with a microdriver. The recording sites of the electrode were modified with PtNPs/PEDOT:PSS to form a three-dimensional convex structure, leading to closer contact with neurons and improving the detection performance and signal-to-noise ratio of the MEA. We designed a rotating cylindrical arena to separate the visual and vestibular information of the rats and detected the changes in the directional tuning of the HD cells in the RSC. The results showed that after visual and vestibular sensory dissociation, HD cells used visual information to establish newly discharged directions which differed from the original direction. However, with the longer time required to process inconsistent sensory information, the function of the HD system gradually degraded. After recovery, the HD cells reverted to their newly established direction rather than the original direction. The research based on our MEAs revealed how HD cells process dissociated sensory information and contributes to the study of the spatial cognitive navigation mechanism.
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spelling pubmed-102160472023-05-27 PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs Yang, Gucheng Wang, Yiding Xu, Zhaojie Zhang, Xue Ruan, Wang Mo, Fan Lu, Botao Fan, Penghui Dai, Yuchuan He, Enhui Song, Yilin Wang, Changyong Liu, Juntao Cai, Xinxia Biosensors (Basel) Article The electrophysiological activities of head direction (HD) cells under visual and vestibular input dissociation are important to understanding the formation of the sense of direction in animals. In this paper, we fabricated a PtNPs/PEDOT:PSS-modified MEA to detect changes in the discharge of HD cells under dissociated sensory conditions. The electrode shape was customized for the retrosplenial cortex (RSC) and was conducive to the sequential detection of neurons at different depths in vivo when combined with a microdriver. The recording sites of the electrode were modified with PtNPs/PEDOT:PSS to form a three-dimensional convex structure, leading to closer contact with neurons and improving the detection performance and signal-to-noise ratio of the MEA. We designed a rotating cylindrical arena to separate the visual and vestibular information of the rats and detected the changes in the directional tuning of the HD cells in the RSC. The results showed that after visual and vestibular sensory dissociation, HD cells used visual information to establish newly discharged directions which differed from the original direction. However, with the longer time required to process inconsistent sensory information, the function of the HD system gradually degraded. After recovery, the HD cells reverted to their newly established direction rather than the original direction. The research based on our MEAs revealed how HD cells process dissociated sensory information and contributes to the study of the spatial cognitive navigation mechanism. MDPI 2023-04-23 /pmc/articles/PMC10216047/ /pubmed/37232857 http://dx.doi.org/10.3390/bios13050496 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Gucheng
Wang, Yiding
Xu, Zhaojie
Zhang, Xue
Ruan, Wang
Mo, Fan
Lu, Botao
Fan, Penghui
Dai, Yuchuan
He, Enhui
Song, Yilin
Wang, Changyong
Liu, Juntao
Cai, Xinxia
PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs
title PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs
title_full PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs
title_fullStr PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs
title_full_unstemmed PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs
title_short PtNPs/PEDOT:PSS-Modified Microelectrode Arrays for Detection of the Discharge of Head Direction Cells in the Retrosplenial Cortex of Rats under Dissociation between Visual and Vestibular Inputs
title_sort ptnps/pedot:pss-modified microelectrode arrays for detection of the discharge of head direction cells in the retrosplenial cortex of rats under dissociation between visual and vestibular inputs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10216047/
https://www.ncbi.nlm.nih.gov/pubmed/37232857
http://dx.doi.org/10.3390/bios13050496
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