Multistage preclinical evaluation of a retrievable 3 T MR-resonant inferior vena cava filter and snare loop for MRI-guided interventions

Abstract Background Fluoroscopy-guided inferior vena cava (IVC) filter implantation and retrieval involve ionizing radiation and iodinated contrast agents. MRI-guided interventions may provide a radiation-free alternative with direct visualization of filter position and hook accessibility. This study evaluated the feasibility of MRI-guided implantation and snare loop (SNL)-assisted retrieval of a dedicated MR-resonant IVC filter at 3 T. Methods MR-resonant devices were assessed in a three-stage protocol. Device visibility was investigated in a saline phantom using balanced steady-state free precession (bSSFP) imaging at 3 T with the IVC filter oriented parallel to the main magnetic field B 0 and assessed at different longitudinal-axis rotations and flip angles. MRI-guided IVC filter implantation was performed in a polymer-based vessel phantom. Finally, MRI-guided IVC filter implantation and SNL-assisted retrieval were performed in porcine models ( n = 5). Results MR-resonant signal enhancement enabled reliable visualization of the IVC filter in phantom and in vivo experiments. Eight filters were successfully implanted in five animals, and SNL-assisted retrieval followed by re-implantation was achieved in all retrieval attempts (3/3). Quantitative signal analysis of the saline phantom experiments demonstrated significant effects of flip angle ( p < 0.001), rotation angle ( p < 0.001), and filter diameter ( p = 0.032) on normalized signal intensity, with the strongest signal enhancement observed at a flip angle of 10°. Conclusions MRI-guided implantation and SNL-assisted retrieval of an MR-resonant IVC filter at 3 T demonstrated feasibility within a multistage preclinical workflow. Phantom and in vivo experiments showed reliable visualization and procedural guidance, supporting further development toward clinically applicable MRI-guided caval interventions.

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Publication Details

Journal
CVIR Endovascular
Published
2026-09-14
DOI
https://doi.org/10.1186/s42155-026-00770-z
Primary Topic
Advanced MRI Techniques and Applications
Type
article
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article

Multistage preclinical evaluation of a retrievable 3 T MR-resonant inferior vena cava filter and snare loop for MRI-guided interventions

Andreas Melzer, Johannes Kauffold, Haukur Sigmarsson, Bernhard Sattler et al.
CVIR Endovascular
Advanced MRI Techniques and Applications
article

Multistage preclinical evaluation of a retrievable 3 T MR-resonant inferior vena cava filter and snare loop for MRI-guided interventions

Andreas Melzer, Johannes Kauffold, Haukur Sigmarsson, Bernhard Sattler, Jan Birkigt, Christina Mulik, Denis Gholami Bajestani, Erwin Immel, Senta Schauer, Lisa Wahl, Osama Sabri, Thies Jochimsen, Michael Schmid, C. Martin Reich
article en

Abstract

Abstract Background Fluoroscopy-guided inferior vena cava (IVC) filter implantation and retrieval involve ionizing radiation and iodinated contrast agents. MRI-guided interventions may provide a radiation-free alternative with direct visualization of filter position and hook accessibility. This study evaluated the feasibility of MRI-guided implantation and snare loop (SNL)-assisted retrieval of a dedicated MR-resonant IVC filter at 3 T. Methods MR-resonant devices were assessed in a three-stage protocol. Device visibility was investigated in a saline phantom using balanced steady-state free precession (bSSFP) imaging at 3 T with the IVC filter oriented parallel to the main magnetic field B 0 and assessed at different longitudinal-axis rotations and flip angles. MRI-guided IVC filter implantation was performed in a polymer-based vessel phantom. Finally, MRI-guided IVC filter implantation and SNL-assisted retrieval were performed in porcine models ( n = 5). Results MR-resonant signal enhancement enabled reliable visualization of the IVC filter in phantom and in vivo experiments. Eight filters were successfully implanted in five animals, and SNL-assisted retrieval followed by re-implantation was achieved in all retrieval attempts (3/3). Quantitative signal analysis of the saline phantom experiments demonstrated significant effects of flip angle ( p < 0.001), rotation angle ( p < 0.001), and filter diameter ( p = 0.032) on normalized signal intensity, with the strongest signal enhancement observed at a flip angle of 10°. Conclusions MRI-guided implantation and SNL-assisted retrieval of an MR-resonant IVC filter at 3 T demonstrated feasibility within a multistage preclinical workflow. Phantom and in vivo experiments showed reliable visualization and procedural guidance, supporting further development toward clinically applicable MRI-guided caval interventions.

CVIR EndovascularVol. 9(1)
Leipzig University of Applied Sciences (DE), University of Dundee (GB), FEV (Germany) (DE), University Hospital Leipzig (DE), Leipzig University (DE)
Openalex Percentile: Top 11%
Advanced MRI Techniques and Applications
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