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research article

Longitudinal neural and vascular structural dynamics produced by chronic microelectrode implantation

Welle, Cristin G.
•
Gao, Yu-Rong
•
Ye, Meijun
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April 1, 2020
Biomaterials

Implanted microelectrode arrays sense local neuronal activity, signals which are used as control commands for brain computer interface (BCI) technology. Patients with tetraplegia have used BCI technology to achieve an extraordinary degree of interaction with their local environment. However, current microelectrode arrays for BCIs lose the ability to record high-quality neural signals in the months-to-years following implantation. Very little is known regarding the dynamic response of neurons and vasculature in the months following electrode array implantation, but loss of structural integrity near the electrode may contribute to the degradation of recording signals. Here, we use in-vivo dual-modality imaging to characterize neuronal and vasculature structures in the same animal for 3 months following electrode insertion. We find ongoing neuronal atrophy, but relative vascular stability, in close proximity to the electrode, along with evidence suggesting links between rare, abrupt hypoxic events and neuronal process atrophy.

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Type
research article
DOI
10.1016/j.biomaterials.2020.119831
Web of Science ID

WOS:000520609900001

Author(s)
Welle, Cristin G.
•
Gao, Yu-Rong
•
Ye, Meijun
•
Lozzi, Andrea  
•
Boretsky, Adam
•
Abliz, Erkinay
•
Hammer, Daniel X.
Date Issued

2020-04-01

Published in
Biomaterials
Volume

238

Article Number

119831

Subjects

Engineering, Biomedical

•

Materials Science, Biomaterials

•

Engineering

•

Materials Science

•

neuroprosthetic

•

microelectrode

•

vascular

•

dendrite

•

chronic. (min.5-max. 8)

•

blood-brain-barrier

•

cranial window

•

tissue

•

electrodes

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IGM  
Available on Infoscience
April 3, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/167927
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