Literature DB >> 27809383

Ultra-high-field RF coil development for evaluating upper extremity imaging applications.

Shailesh B Raval1,2, Tiejun Zhao3, Narayanan Krishnamurthy1, Tales Santini1, Cynthia Britton2, Vijay S Gorantla4, Tamer S Ibrahim1,2.   

Abstract

The purpose of this study is to develop and evaluate a custom-designed 7  T MRI coil and explore its use for upper extremity applications. An RF system composed of a transverse electromagnetic transmit coil and an eight-channel receive-only array was developed for 7  T upper extremity applications. The RF system was characterized and evaluated using scattering parameters and B1+ mapping. Finite difference time domain simulations were performed to evaluate the B1+ field distribution and specific absorption rate for the forearm region of the upper extremity. High-resolution 7  T images were acquired and compared with those at 3 T. The simulation and experimental results show very good B1+ field homogeneity across the forearm. High-resolution images of musculotendinous, osseocartilaginous, and neurovascular structures in the upper extremity are presented with T1 volumetric interpolated breath-hold examination, T2 double-echo steady state, T2 * susceptibility weighted imaging (SWI), diffusion tensor imaging, and time-of-flight sequences. Comparison between 3  T and 7  T is shown. Intricate contextual anatomy can be delineated in synovial, fibrocartilaginous, interosseous, and intraosseous trabecular structures of the forearm, as well as palmar and digital vascular anatomy (including microvascular detail in SWI). Ultra-high-field 7  T imaging holds great potential in improving the sensitivity and specificity of upper extremity imaging, especially in wrist and hand pathology secondary to bone, ligament, nerve, vascular, and other soft or hard tissue etiology.
Copyright © 2016 John Wiley & Sons, Ltd.

Entities:  

Keywords:  3  T; 7  T; RF coil; SAR; diffusion (nerve) imaging; musculoskeletal; non-contrast-enhanced angiography

Mesh:

Year:  2016        PMID: 27809383      PMCID: PMC5929486          DOI: 10.1002/nbm.3582

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


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8.  Effects of receive-only inserts on specific absorption rate, B1 (+) field, and Tx coil performance.

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2.  Ultra-high field upper extremity peripheral nerve and non-contrast enhanced vascular imaging.

Authors:  Shailesh B Raval; Cynthia A Britton; Tiejun Zhao; Narayanan Krishnamurthy; Tales Santini; Vijay S Gorantla; Tamer S Ibrahim
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3.  Improved 7 Tesla transmit field homogeneity with reduced electromagnetic power deposition using coupled Tic Tac Toe antennas.

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4.  Visualization of wrist anatomy-a comparison between 7T and 3T MRI.

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5.  In-vivo and numerical analysis of the eigenmodes produced by a multi-level Tic-Tac-Toe head transmit array for 7 Tesla MRI.

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