Summary: Its Institute for Human Neuroscience operates the highest-density OPM array in North America alongside two Triux Neo SQUID-MEG systems, focused on developmental and clinical pediatric neuroscience.
Notes:
Doucet studies brain network architecture and psychiatric traits using multimodal MRI and MEG connectomics across adolescence and the lifespan. 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.
Heinrichs-Graham studies the neural dynamics linking sensation, perception and cognition across development, including motor control and hearing loss, using MEG and OPM-MEG. 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.
Kurz studies the neurophysiology of movement and gait, especially in cerebral palsy, combining MEG/OPM-MEG with biomechanics to guide rehabilitation. 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.
Picci studies developmental and clinical cognitive neuroscience, using MEG/OPM-MEG to map maturation of brain networks in children and adolescents. 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.
Spooner uses MEG and OPM-MEG to study motor and cognitive network dynamics and their changes with aging and disease. 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.
Taylor studies neurodiverse populations and the development of attention and executive-function networks using MEG and OPM-MEG. 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.
Wilson directs the IHN and studies developmental and clinical brain dynamics with MEG and the highest-density OPM array in North America, mapping oscillatory networks in health and disease across the lifespan. 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.