An 8‐channel Tx dipole and 20‐channel Rx loop coil array for MRI of the cervical spinal cord at 7 Tesla

Author:

Lopez‐Rios Nibardo1ORCID,Gilbert Kyle M.2,Papp Daniel1ORCID,Cereza Gaspard1,Foias Alexandru1,Rangaprakash Deshpande34,May Markus W.56,Guerin Bastien34,Wald Lawrence L.347,Keil Boris89,Stockmann Jason P.34,Barry Robert L.347,Cohen‐Adad Julien1101112

Affiliation:

1. NeuroPoly Lab Institute of Biomedical Engineering, Polytechnique Montréal Montréal Quebéc Canada

2. Centre for Functional and Metabolic Mapping The University of Western Ontario London Ontario Canada

3. Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology Massachusetts General Hospital Charlestown Massachusetts USA

4. Harvard Medical School Boston Massachusetts USA

5. Erwin L. Hahn Institute for Magnetic Resonance Imaging University of Duisburg‐Essen Essen Germany

6. High Field and Hybrid MR Imaging, University Hospital Essen University of Duisburg‐Essen Essen Germany

7. Harvard‐Massachusetts Institute of Technology Health Sciences and Technology Cambridge Massachusetts USA

8. Institute of Medical Physics and Radiation Protection University of Applied Sciences Mittelhessen Giessen Germany

9. Department of Diagnostic and Interventional Radiology, University Hospital Marburg Philipps University of Marburg Marburg Germany

10. Functional Neuroimaging Unit, CRIUGM Université de Montréal Montréal Québec Canada

11. Mila – Quebec AI Institute Montréal Québec Canada

12. Centre de recherche du CHU Sainte‐Justine Université de Montréal Montréal Québec Canada

Abstract

AbstractThe quality of cervical spinal cord images can be improved by the use of tailored radiofrequency (RF) coil solutions for ultrahigh field imaging; however, very few commercial and research 7‐T RF coils currently exist for the spinal cord, and in particular, those with parallel transmission (pTx) capabilities. This work presents the design, testing, and validation of a pTx/Rx coil for the human neck and cervical/upper thoracic spinal cord. The pTx portion is composed of eight dipoles to ensure high homogeneity over this large region of the spinal cord. The Rx portion is made up of twenty semiadaptable overlapping loops to produce high signal‐to‐noise ratio (SNR) across the patient population. The coil housing is designed to facilitate patient positioning and comfort, while also being tight fitting to ensure high sensitivity. We demonstrate RF shimming capabilities to optimize B1+ uniformity, power efficiency, and/or specific absorption rate efficiency. B1+ homogeneity, SNR, and g‐factor were evaluated in adult volunteers and demonstrated excellent performance from the occipital lobe down to the T4‐T5 level. We compared the proposed coil with two state‐of‐the‐art head and head/neck coils, confirming its superiority in the cervical and upper thoracic regions of the spinal cord. This coil solution therefore provides a convincing platform for producing the high image quality necessary for clinical and research scanning of the upper spinal cord.

Funder

Canada Foundation for Innovation

Canadian Institutes of Health Research

Fonds de Recherche du Québec - Santé

Natural Sciences and Engineering Research Council of Canada

Canada First Research Excellence Fund

National Institutes of Health

Publisher

Wiley

Subject

Spectroscopy,Radiology, Nuclear Medicine and imaging,Molecular Medicine

Reference71 articles.

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