Recording of single-unit activities with flexible micro-electrocorticographic array in rats for decoding of whole-body navigation.
J Neural Eng
; 21(4)2024 Aug 05.
Article
in En
| MEDLINE
| ID: mdl-38986465
ABSTRACT
Objective.Micro-electrocorticographic (µECoG) arrays are able to record neural activities from the cortical surface, without the need to penetrate the brain parenchyma. Owing in part to small electrode sizes, previous studies have demonstrated that single-unit spikes could be detected from the cortical surface, and likely from Layer I neurons of the neocortex. Here we tested the ability to useµECoG arrays to decode, in rats, body position during open field navigation, through isolated single-unit activities.Approach. µECoG arrays were chronically implanted onto primary motor cortex (M1) of Wistar rats, and neural recording was performed in awake, behaving rats in an open-field enclosure. The signals were band-pass filtered between 300-3000 Hz. Threshold-crossing spikes were identified and sorted into distinct units based on defined criteria including waveform morphology and refractory period. Body positions were derived from video recordings. We used gradient-boosting machine to predict body position based on previous 100 ms of spike data, and correlation analyses to elucidate the relationship between position and spike patterns.Main results.Single-unit spikes could be extracted during chronic recording fromµECoG, and spatial position could be decoded from these spikes with a mean absolute error of prediction of 0.135 and 0.090 in the x- and y- dimensions (of a normalized range from 0 to 1), and Pearson's r of 0.607 and 0.571, respectively.Significance. µECoG can detect single-unit activities that likely arise from superficial neurons in the cortex and is a promising alternative to intracortical arrays, with the added benefit of scalability to cover large cortical surface with minimal incremental risks. More studies should be performed in human related to its use as brain-machine interface.
Key words
Full text:
1
Collection:
01-internacional
Database:
MEDLINE
Main subject:
Rats, Wistar
/
Electrodes, Implanted
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Electrocorticography
/
Motor Cortex
Limits:
Animals
Language:
En
Journal:
J Neural Eng
Journal subject:
NEUROLOGIA
Year:
2024
Document type:
Article
Affiliation country:
Singapore
Country of publication:
United kingdom