Analysis of B1 field profiles and SAR values for multi-strut transverse electromagnetic RF coils in high field MRI applications

In this work, the B1 field homogeneity and specific absorption rate (SAR) values were evaluated for three high-frequency (340 MHz) radio frequency coils designed for use in human magnetic resonance imaging at 8 tesla. Eight-, 16-, and 24-strut transverse electromagnetic (TEM) resonators were examine...

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Published in:Physics in medicine & biology Vol. 46; no. 10; p. 2545
Main Authors: Ibrahim, T S, Abduljalil, A M, Baertlein, B A, Lee, R, Robitaill, P M
Format: Journal Article
Language:English
Published: England 01-10-2001
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Abstract In this work, the B1 field homogeneity and specific absorption rate (SAR) values were evaluated for three high-frequency (340 MHz) radio frequency coils designed for use in human magnetic resonance imaging at 8 tesla. Eight-, 16-, and 24-strut transverse electromagnetic (TEM) resonators were examined both experimentally and with the finite difference time domain numerical method. It was observed that increasing the number of TEM elements acted to lower the maximal achievable frequency of the coil and to increase the experimental complexities associated with tuning and matching. In addition, it is demonstrated from experiment and numerical analysis that the circularly polarized component of the B1 (B1+) field homogeneity in the head improved most from 8- to 16-strut coils. Numerical analysis revealed little difference in terms of SAR distribution between these coils; however, stronger tissue/coil coupling and consequently higher SAR peak values were obtained for the 8-strut case.
AbstractList In this work, the B1 field homogeneity and specific absorption rate (SAR) values were evaluated for three high-frequency (340 MHz) radio frequency coils designed for use in human magnetic resonance imaging at 8 tesla. Eight-, 16-, and 24-strut transverse electromagnetic (TEM) resonators were examined both experimentally and with the finite difference time domain numerical method. It was observed that increasing the number of TEM elements acted to lower the maximal achievable frequency of the coil and to increase the experimental complexities associated with tuning and matching. In addition, it is demonstrated from experiment and numerical analysis that the circularly polarized component of the B1 (B1+) field homogeneity in the head improved most from 8- to 16-strut coils. Numerical analysis revealed little difference in terms of SAR distribution between these coils; however, stronger tissue/coil coupling and consequently higher SAR peak values were obtained for the 8-strut case.
Author Robitaill, P M
Ibrahim, T S
Baertlein, B A
Lee, R
Abduljalil, A M
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  givenname: P M
  surname: Robitaill
  fullname: Robitaill, P M
BackLink https://www.ncbi.nlm.nih.gov/pubmed/11686274$$D View this record in MEDLINE/PubMed
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Snippet In this work, the B1 field homogeneity and specific absorption rate (SAR) values were evaluated for three high-frequency (340 MHz) radio frequency coils...
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StartPage 2545
SubjectTerms Algorithms
Computer Simulation
Electric Conductivity
Electromagnetic Fields
Head - anatomy & histology
Humans
Magnetic Resonance Imaging - instrumentation
Magnetic Resonance Imaging - methods
Reference Values
Title Analysis of B1 field profiles and SAR values for multi-strut transverse electromagnetic RF coils in high field MRI applications
URI https://www.ncbi.nlm.nih.gov/pubmed/11686274
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