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Name: |
Professor R Bowtell |
Organisation: |
University of Nottingham |
Department: |
Sch of Physics & Astronomy |
Current EPSRC-Supported Research
Topics: |
Magnetism/Magnetic Phenomena
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Med.Instrument.Device& Equip.
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Medical Imaging
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Current EPSRC Support |
EP/V047264/1 | Development of a lifespan compliant magnetoencephalography system | (C) |
EP/V025856/1 | Realising the potential of open MRI for dynamic studies of human anatomy and function | (C) |
EP/T001046/1 | UK National Quantum Technology Hub in Sensing and Timing | (C) |
EP/M029778/1 | National Facility for In Vivo MR Imaging of Human Tissue Microstructure | (C) |
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Previous EPSRC Support |
EP/M013294/1 | UK Quantum Technology Hub for Sensors and Metrology | (C) |
EP/K003941/1 | Building Global Engagements at the University of Nottingham | (C) |
EP/J006823/1 | Understanding and reducing artefacts in simultaneously acquired EEG and fMRI data | (P) |
EP/G062692/1 | Measurement and Modelling of Electric Fields Induced in the Human Body by Temporally Changing Magnetic Fields | (C) |
EP/G037647/1 | Emerging magnetoscience technology | (C) |
EP/C534786/1 | Prototype EPR/NMR instrument for DNP-enhanced studies of biological systems using high resolution NMR microscopy and spectroscopy | (C) |
GR/T22445/01 | Forward & inverse analysis of electromagnetic fields for MRI using computational mechanics techniques | (C) |
GR/S80950/01 | UHF probes for functional MRI: optimisation of performance for human brain imaging at 300 MHz | (C) |
GR/R72907/01 | VIBRATED FINE GRANULAR SYSTEMS: THE MECHANISMS AND OPTIMISATION OF FLUID DRIVEN SEPARATION | (C) |
GR/R07899/01 | Nerve Stimulation Due To Rapidly Switched Magnetic Field Gradients In Mri | (P) |
GR/L73555/01 | ROPAS:USING THE DIPOLAR FIELD IN MAGNETIC RESONANCE IMAGING | (P) |
GR/H96980/01 | INVESTIGATION OF FLUID INGRESS INTO POLYMERS BY NMR MICROSCOPY. | (C) |
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Key: (P)=Principal Investigator, (C)=Co-Investigator, (R)=Researcher Co-Investigator
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