Modeling Endovascular MRI Coil Coupling With Transmit RF Excitation.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 26960218.
- Also identified by DOI 10.1109/TBME.2016.2538279 and PMC identifier 5011021.
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Abstract
To model inductive coupling of endovascular coils with transmit RF excitation for selecting coils for MRI-guided interventions. Independent and computationally efficient FEM models are developed for the endovascular coil, cable, transmit excitation, and imaging domain. Electromagnetic and circuit solvers are coupled to simulate net B<sub>1</sub> + fields and induced currents and voltages. Our models are validated using the Bloch-Siegert B<sub>1</sub> + mapping sequence for a series-tuned multimode coil, capable of tracking, wireless visualization, and high-resolution endovascular imaging. Validation shows good agreement at 24-, 28-, and 34-μT background RF excitation within experimental limitations. Quantitative coil performance metrics agree with simulation. A parametric study demonstrates tradeoff in coil performance metrics when varying number of coil turns. Tracking, imaging, and wireless marker multimode coil features and their integration is demonstrated in a pig study. Developed models for the multimode coil were successfully validated. Modeling for geometric optimization and coil selection serves as a precursor to time consuming and expensive experiments. Specific applications demonstrated include parametric optimization, coil selection for a cardiac intervention, and an animal imaging experiment. Our modular, adaptable, and computationally efficient modeling approach enables rapid comparison, selection, and optimization of inductively coupled coils for MRI-guided interventions.
Medical subject headings
- Endovascular Procedures
- Magnetic Resonance Imaging, Interventional
- Magnetics
- Transducers
- Wireless Technology