NEMA MS 11-2010 Determination of Gradient-Induced Electric Fields In Diagnostic Magnetic Resonance Imaging Published by National Electrical.pdf
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1、NEMA Standards PublicationNational Electrical Manufacturers AssociationNEMA MS 11-2010 Determination of Gradient-Induced Electric Fields In Diagnostic Magnetic Resonance ImagingNEMA Standards Publication MS 11-2010 Determination of Gradient-Induced Electric Fields In Diagnostic Magnetic Resonance Im
2、aging Published by: National Electrical Manufacturers Association 1300 North 17th Street, Suite 1752 Rosslyn, VA 22209 2010 by the National Electrical Manufacturers Association. All rights, including translation into other languages, reserved under the Universal Copyright Convention, the Berne Conve
3、ntion for the Protection of Literary and Artistic Works, and the International and Pan American Copyright Conventions. NOTICE AND DISCLAIMER The information in this publication was considered technically sound by the consensus of persons engaged in the development and approval of the document at the
4、 time it was developed. Consensus does not necessarily mean that there is unanimous agreement among every person participating in the development of this document. The National Electrical Manufacturers Association (NEMA) standards and guideline publications, of which the document contained herein is
5、 one, are developed through a voluntary consensus standards development process. This process brings together volunteers and/or seeks out the views of persons who have an interest in the topic covered by this publication. While NEMA administers the process and establishes rules to promote fairness i
6、n the development of consensus, it does not write the document and it does not independently test, evaluate, or verify the accuracy or completeness of any information or the soundness of any judgments contained in its standards and guideline publications. NEMA disclaims liability for any personal in
7、jury, property, or other damages of any nature whatsoever, whether special, indirect, consequential, or compensatory, directly or indirectly resulting from the publication, use of, application, or reliance on this document. NEMA disclaims and makes no guaranty or warranty, express or implied, as to
8、the accuracy or completeness of any information published herein, and disclaims and makes no warranty that the information in this document will fulfill any of your particular purposes or needs. NEMA does not undertake to guarantee the performance of any individual manufacturer or sellers products o
9、r services by virtue of this standard or guide. In publishing and making this document available, NEMA is not undertaking to render professional or other services for or on behalf of any person or entity, nor is NEMA undertaking to perform any duty owed by any person or entity to someone else. Anyon
10、e using this document should rely on his or her own independent judgment or, as appropriate, seek the advice of a competent professional in determining the exercise of reasonable care in any given circumstances. Information and other standards on the topic covered by this publication may be availabl
11、e from other sources, which the user may wish to consult for additional views or information not covered by this publication. NEMA has no power, nor does it undertake to police or enforce compliance with the contents of this document. NEMA does not certify, test, or inspect products, designs, or ins
12、tallations for safety or health purposes. Any certification or other statement of compliance with any health or safetyrelated information in this document shall not be attributable to NEMA and is solely the responsibility of the certifier or maker of the statement. MS 11-2010 Page i Copyright 2006 b
13、y the National Electrical Manufacturers Association. CONTENTS Page Foreword ii Section 1 GENERAL 1 1.1 Rationale 1 1.2 Scope 1 1.3 Definitions.1 Section 2 EXPERIMENTAL MEASUREMENT OF GRADIENT-INDUCED ELECTRIC FIELDS FROM GRADIENT COILS.3 2.1 Electrical and Mechanical Properties and Dimensions of Ele
14、ctric Field Dipoles and Spacers .3 2.1.1 Measurement Phantom 3 2.1.2 Electric Field Components to be Measured4 2.1.3 Electric Field Dipole Leads5 2.1.4 Search Methods for Locating Position of Maximum Electric Field Magnitude.5 2.2 Measurement Protocol6 Section 3 REPORTING OF RESULTS 8 3.1 Measuremen
15、t Protocol8 3.2 Phantom Parameters8 3.3 Electric Field Measurement Results 8 3.4 Additional Data 8 3.5 Repeatability Data8 3.6 Sources of Error 8 Appendix THEORETICAL ESTIMATE OF GRADIENT-INDUCED ELECTRIC FIELDS FROM GRADIENT COILS.9 MS 11-2010 Page ii Copyright 2006 by the National Electrical Manuf
16、acturers Association. Foreword This Standards Publication is classified as a NEMA Standard unless otherwise noted. It describes experimental measurement methods for determining gradient-induced electric fields for each gradient axis at a radius of 20 cm off the patient axis. The measurement method r
17、equires construction of electric field dipoles, spacers, a phantom and the use of a high impedance device for measuring voltages. The electric field measurements are done in a solution with a conductivity similar to that of the body. Numerical methods of estimating the electric field are also discus
18、sed in an appendix. This Standards Publication has been developed by the Magnetic Resonance Section of the National Electrical Manufacturers Association. Section approval of the standard does not necessarily imply that all section members voted for its approval or participated in its development. At
19、 the time it was approved, the section was composed of the following members: Computer Imaging Reference SystemsNorfolk, VA Fonar CorporationMelville, NY GE Healthcare, Inc.Milwaukee, WI Hitachi Medical Systems America, Inc.Twinsburg, OH Invivo Corp.Gainesville, FL Philips Medical Systems North Amer
20、icaBothell, WA Siemens Medical Solutions, Inc.Malvern, PA Toshiba America Medical SystemsTustin, CA User needs have been considered throughout the development of this publication. Proposed or recommended revisions should be submitted to: Vice-President, Technical Services National Electrical Manufac
21、turers Association 1300 North 17th Street, Suite 1752 Rosslyn, VA 22209 MS 11-2010 Page 1 Copyright 2006 by the National Electrical Manufacturers Association. Section 1 GENERAL 1.1 RATIONALE Gradient-induced electric fields affect the safety and comfort of patients. Electric field magnitude ultimate
22、ly determines whether patients experience discomfort. Typically, stimulation requires a gradient-induced electric field of at least 2 V/m. Methods for determining gradient-induced electric fields are needed to ensure safe operation of gradient coils during MR exams. The method described makes electr
23、ic field measurements inside a phantom loaded with electrically conductive material to simulate the body. The signal to noise ratio of an electrically short (infinitesimal) dipole in air is not likely to be adequate. 1.2 SCOPE This document defines methods for determining the gradient-induced electr
24、ic fields of diagnostic magnetic resonance imaging gradient coils (head and body) under a specific set of conditions. This document does not address the effect of electrical inhomogeneities in the body on internal, gradient-induced, electric fields. 1.3 DEFINITIONS gradient-induced electric field: E
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