George C. O'Neill

Orcid: 0000-0002-0035-3768

According to our database1, George C. O'Neill authored at least 16 papers between 2014 and 2023.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

Legend:

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PhD thesis 
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Links

Online presence:

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Bibliography

2023
Real-time, model-based magnetic field correction for moving, wearable MEG.
NeuroImage, September, 2023

2022
Magnetic Field Mapping and Correction for Moving OP-MEG.
IEEE Trans. Biomed. Eng., 2022

Spherical harmonic based noise rejection and neuronal sampling with multi-axis OPMs.
NeuroImage, 2022

Interference suppression techniques for OPM-based MEG: Opportunities and challenges.
NeuroImage, 2022

2021
Modelling optically pumped magnetometer interference in MEG as a spatially homogeneous magnetic field.
NeuroImage, 2021

Using OPMs to measure neural activity in standing, mobile participants.
NeuroImage, 2021

2020
The role of transient spectral 'bursts' in functional connectivity: A magnetoencephalography study.
NeuroImage, 2020

A probabilistic atlas of finger dominance in the primary somatosensory cortex.
NeuroImage, 2020

2019
Tracking dynamic brain networks using high temporal resolution MEG measures of functional connectivity.
NeuroImage, 2019

How do spatially distinct frequency specific MEG networks emerge from one underlying structural connectome? The role of the structural eigenmodes.
NeuroImage, 2019

Imaging human cortical responses to intraneural microstimulation using magnetoencephalography.
NeuroImage, 2019

2018
Dynamics of large-scale electrophysiological networks: A technical review.
NeuroImage, 2018

2017
Measurement of dynamic task related functional networks using MEG.
NeuroImage, 2017

2016
Integrating cross-frequency and within band functional networks in resting-state MEG: A multi-layer network approach.
NeuroImage, 2016

2015
Dynamic recruitment of resting state sub-networks.
NeuroImage, 2015

2014
Measuring temporal, spectral and spatial changes in electrophysiological brain network connectivity.
NeuroImage, 2014


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