Research Areas - (14) OPM-MEG Source Reconstruction and Interference Suppression

Full path: Physics > Quantum Sensing > Magnetometry (OPM, SERF, etc.) > OPM Biomagnetism (MEG/MCG) > OPM-MEG Source Reconstruction and Interference Suppression

Department(s)/lab(s): School of Psychology / Cardiff University Brain Research Imaging Centre (CUBRIC) | CUBRIC MEG @ Cardiff
Summary:

Singh leads MEG/OPM-MEG at CUBRIC, studying cortical oscillations and their relationship to BOLD-fMRI with clinical applications in epilepsy, schizophrenia and Alzheimer's; he helped build the UK MEG partnership. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.

Department(s)/lab(s): Department of Imaging Neuroscience (FIL) | UCL OPM-MEG (Dept. of Imaging Neuroscience) @ UCL
Summary:

Tierney develops OPM-MEG signal-processing and array design: spherical-harmonic/vector interference rejection, spatial sampling of multi-axis OPMs, and SPM-based source reconstruction, and led early clinical OP-MEG validation. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.

Department(s)/lab(s): LCFC, Hopital Erasme / ULB Neuroscience Institute | Laboratoire de Cartographie fonctionnelle du Cerveau (LCFC) @ ULB
Summary:

Wens develops MEG/OPM-MEG analysis methods - source reconstruction, functional connectivity and resting-state network estimation. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.

Department(s)/lab(s): Oxford Centre for Human Brain Activity (OHBA), Dept. of Psychiatry | OHBA Analysis Group @ Oxford
Summary:

Woolrich develops computational methods for MEG/EEG and OPM-MEG - source reconstruction, dynamic network modelling (HMMs) and analysis software widely used across the MEG community. The work complements NV-center diamond ensemble quantum sensing (DEER, NMR, T1 relaxometry) at pT/sqrt(Hz) sensitivity by pursuing the same field-sensing goals in a different physical platform.