Authors
S E Solis-Najera, J Lazovic, A Villarreal, S Rivera de la Luz, A O Rodriguez
Published in
Journal of magnetic resonance (San Diego, Calif. : 1997). Volume 391. Pages 108138. Jul 22, 2026. Epub Jul 22, 2026.
Abstract
This work presents a bio-inspired, floral-patterned surface coil for ultra-high-field preclinical MRI, enhanced by a flexible split-ring metasurface that boosts SNR without passive tuning. When the coil is loaded with a saline-solution phantom, RF impedance matching is degraded, leading to a reduction in performance. To quantify this degradation, we evaluated the noise factor (NF) and SNR from phantom images. The NF ratios demonstrate the metasurface's advantages: without metasurface, NFcir/NFbio=1.02 (where NFcir and NFbio correspond to the circular and bio-inspired coils, respectively); with metasurface and phantom, NFcirMS/NFbioMS=3.52 (where the subscript MS denotes the addition of the metasurface), indicating drastic noise reduction. SNR results show that the bio-inspired coil alone provides a 28% improvement over a conventional circular coil, while adding the metasurface yields an additional 44% enhancement (84% overall). These results highlight the potential of combining bio-inspired geometries with flexible metasurfaces for high-sensitivity ultra-high-field MRI.
PMID:
42492142
Bibliographic data and abstract were imported from PubMed on 24 Jul 2026.
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