DocumentCode :
835308
Title :
SQUID-based simultaneous detection of NMR and biomagnetic signals at ultra-low magnetic fields
Author :
Espy, Michelle A. ; Matlachov, Andrei N. ; Volegov, Petr L. ; Mosher, John C. ; Kraus, Robert H., Jr.
Author_Institution :
Los Alamos Nat. Lab., NM, USA
Volume :
15
Issue :
2
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
635
Lastpage :
639
Abstract :
Nuclear magnetic resonance (NMR) and magnetic resonance imaging (MRI) at ultra-low magnetic fields (ULF, fields of ∼μT) have several advantages over their counterparts at higher magnetic fields. These include narrow line widths, the possibility of novel imaging schemes such as T1 weighted images, and reduced system cost and complexity. In addition, ULF NMR/MRI with superconducting quantum interference devices (SQUIDs) is compatible with simultaneous measurements of biomagnetic signals, a capability conventional systems cannot offer. SQUID-based ULF MRI has already been demonstrated, as have measurements of simultaneous MEG and NMR at ULF. In this paper we will show simultaneous magnetocardiography (MCG) and magnetomyography (MMG) with NMR are also possible. Another compelling application of NMR/MRI at ULF is the possibility of directly measuring magnetic resonance consequences of neuronal signals. In this paper we explore simultaneous MMG/NMR and MCG/NMR for an effect on the NMR signal, in T2*, that might be associated with the effects of bioelectric currents.
Keywords :
SQUIDs; biomedical MRI; biomedical NMR; magnetocardiography; patient diagnosis; MCG-NMR; MMG-NMR; SQUID-based simultaneous detection; ULF MRI; ULF NMR; biomagnetic signals; biomagnetism; magnetic resonance imaging; magnetocardiography; magnetomyography; nuclear magnetic resonance; superconducting quantum interference devices; ultra-low magnetic fields; Biomagnetics; Costs; Interference; Magnetic field measurement; Magnetic fields; Magnetic resonance imaging; Nuclear magnetic resonance; SQUIDs; Superconducting devices; Superconducting magnets; Biomagnetism; MRI; NMR; SQUID; low magnetic field;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.849978
Filename :
1439718
Link To Document :
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