Literature DB >> 7997115

The design and test of a new volume coil for high field imaging.

H Wen1, A S Chesnick, R S Balaban.   

Abstract

A major problem in the development of high field (> 100 MHz) large volume (> 6000 cm3) MR coils is the interaction of the coil with the subject as well as the radiation loss to the environment. To reduce subject perturbation of the coil resonance modes, a volume coil that uses an array of freely rotating resonant elements radially mounted between two concentric cylinders was designed for operation at 170 MHz. Substantial electromagnetic energy is stored in the resonant elements outside the sample region without compromising the efficiency of the overall coil. This stored energy reduces the effect of the subject on the circuit and maintains a high Q, facilitating the tuning and matching of the coil. The unloaded Q of the coil is 680; when loaded with a head, it was 129. The ratio of 5.3 of the unloaded to loaded Q supports the notion that the efficiency of the coil was maintained in comparison with previous designs. The power requirement and signal-to-noise performance are significantly improved. The coil is tuned by a mechanism that imparts the same degree of rotation on all of the elements simultaneously, varying their degree of mutual coupling and preserving the overall coil symmetry. A thin radiofrequency shield is an integral part of the coil to reduce the radiation effect, which is a significant loss mechanism at high fields. MR images were collected at 4T using this coil design with high sensitivity and B1 homogeneity.

Mesh:

Year:  1994        PMID: 7997115      PMCID: PMC2890274          DOI: 10.1002/mrm.1910320411

Source DB:  PubMed          Journal:  Magn Reson Med        ISSN: 0740-3194            Impact factor:   4.668


  9 in total

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4.  Rapid 31P spectroscopy on a 4-T whole-body system.

Authors:  C J Hardy; P A Bottomley; P B Roemer; R W Redington
Journal:  Magn Reson Med       Date:  1988-09       Impact factor: 4.668

5.  Whole-body MR imaging and spectroscopy with a 4-T system.

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6.  In vivo magnetic resonance imaging and spectroscopy of humans with a 4 T whole-body magnet.

Authors:  H Barfuss; H Fischer; D Hentschel; R Ladebeck; A Oppelt; R Wittig; W Duerr; R Oppelt
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7.  Functional mapping of the human visual cortex at 4 and 1.5 tesla using deoxygenation contrast EPI.

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8.  Radiative losses of a birdcage resonator.

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Journal:  Magn Reson Med       Date:  1993-05       Impact factor: 4.668

9.  Perfusion imaging.

Authors:  J A Detre; J S Leigh; D S Williams; A P Koretsky
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  9 in total
  15 in total

1.  DENSE: displacement encoding with stimulated echoes in cardiac functional MRI.

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2.  In vitro and in vivo studies of 17O NMR sensitivity at 9.4 and 16.4 T.

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4.  The intrinsic signal-to-noise ratio in human cardiac imaging at 1.5, 3, and 4 T.

Authors:  H Wen; T J Denison; R W Singerman; R S Balaban
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5.  An efficient birdcage resonator at 2.5 MHz using a novel multilayer self-capacitance construction technique.

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6.  Design and numerical evaluation of a volume coil array for parallel MR imaging at ultrahigh fields.

Authors:  Yong Pang; Ernest W H Wong; Baiying Yu; Xiaoliang Zhang
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7.  Flexible transceiver array for ultrahigh field human MR imaging.

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Review 8.  Sodium and T1rho MRI for molecular and diagnostic imaging of articular cartilage.

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9.  The evaluation of dielectric resonators containing H2O or D2O as RF coils for high-field MR imaging and spectroscopy.

Authors:  H Wen; F A Jaffer; T J Denison; S Duewell; A S Chesnick; R S Balaban
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10.  Understanding and manipulating the RF fields at high field MRI.

Authors:  Tamer S Ibrahim; Yik-Kiong Hue; Lin Tang
Journal:  NMR Biomed       Date:  2009-11       Impact factor: 4.044

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