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  5. Ultra-flexible endovascular probes for brain recording through micron-scale vasculature

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Preprint
English
2023

Ultra-flexible endovascular probes for brain recording through micron-scale vasculature

0 Datasets

0 Files

English
2023
bioRxiv (Cold Spring Harbor Laboratory)
DOI: 10.1101/2023.03.20.533576

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Charles M. Lieber
Charles M. Lieber

Harvard University

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Anqi Zhang
Emiri T. Mandeville
Lijun Xu
+3 more

Abstract

Implantable neuroelectronic interfaces have enabled significant advances in both fundamental research and treatment of neurological diseases, yet traditional intracranial depth electrodes require invasive surgery to place and can disrupt the neural networks during implantation. To address these limitations, we have developed an ultra-small and flexible endovascular neural probe that can be implanted into small 100-micron scale blood vessels in the brains of rodents without damaging the brain or vasculature. The structure and mechanical properties of the flexible probes were designed to meet the key constraints for implantation into tortuous blood vessels inaccessible with existing techniques. In vivo electrophysiology recording of local field potentials and single-unit spikes has been selectively achieved in the cortex and the olfactory bulb. Histology analysis of the tissue interface showed minimal immune response and long-term stability. This platform technology can be readily extended as both research tools and medical devices for the detection and intervention of neurological diseases.

How to cite this publication

Anqi Zhang, Emiri T. Mandeville, Lijun Xu, Creed M. Stary, Eng H. Lo, Charles M. Lieber (2023). Ultra-flexible endovascular probes for brain recording through micron-scale vasculature. bioRxiv (Cold Spring Harbor Laboratory), DOI: 10.1101/2023.03.20.533576.

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Publication Details

Type

Preprint

Year

2023

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

bioRxiv (Cold Spring Harbor Laboratory)

DOI

10.1101/2023.03.20.533576

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