Current density mapping approach for design of clinical magnetic resonance imaging magnets
Contribuinte(s) |
D. Traficante |
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Data(s) |
01/01/2002
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Resumo |
Novel current density mapping (CDM) schemes are developed for the design of new actively shielded, clinical magnetic resonance imaging (MRI) magnets. This is an extended inverse method in which the entire potential solution space for the superconductors has been considered, rather than single current density layers. The solution provides an insight into the required superconducting coil pattern for a desired magnet configuration. This information is then used as an initial set of parameters for the magnet structure, and a previously developed hybrid numerical optimization technique is used to obtain the final geometry of the magnet. The CDM scheme is applied to the design of compact symmetric, asymmetric, and open architecture 1.0-1.5 T MRI magnet systems of novel geometry and utility. A new symmetric 1.0-T system that is just I m in length with a full 50-cm diameter of the active, or sensitive, volume (DSV) is detailed, as well as an asymmetric system in which a 50-cm DSV begins just 14 cm from the end of the coil structure. Finally a 1.0-T open magnet system with a full 50-cm DSV is presented. These new designs provide clinically useful homogeneous regions and have appropriately restricted stray fields but, in some of the designs, the DSV is much closer to the end of the magnet system than in conventional designs. These new designs have the potential to reduce patient claustrophobia and improve physician access to patients undergoing scans. (C) 2002 Wiley Periodicals, Inc. |
Identificador | |
Idioma(s) |
eng |
Publicador |
John Wiley & Sons |
Palavras-Chave | #Chemistry, Physical #Physics, Atomic, Molecular & Chemical #Radiology, Nuclear Medicine & Medical Imaging #Spectroscopy #Magnetic Resonance Imaging Magnet #Symmetric Design #Asymmetric Design #Open Magnet Design #Current Density Mapping Method #Mri Magnet #Inverse Approach #C1 #291599 Biomedical Engineering not elsewhere classified #671402 Medical instrumentation |
Tipo |
Journal Article |