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Low-field magnetic resonance imaging in the evaluation of mechanical and biological heart valve function
E Di Cesare1, R M Enrici, S Paparoni
1Department of Radiology, University of L'Aquila, Ospedale SM di Collemaggio, Italy.
Abstract:
Magnetic resonance imaging (MRI) has been frequently considered unsafe for patients with ferromagnetic implants: risks to be considered include induction of electric current, heating and dislocation of the prosthesis. Previous in vitro and in vivo studies have indicated the possibility of performing MRI examinations on patients with prosthetic heart valves. The aim of our study was to verify the presence of artifacts at the level of the prosthetic heart valve in vivo using a low-field MR unit (0.2 T) and to define the possibility of a functional analysis of the valve in patients with biomedical or mechanical prostheses. We evaluated 14 patients surgically treated for implantation of nine biological and seven mechanical aortic and mitral valves. A low-field MR unit (0.2 T) was employed using cine-MR technique on long- and short-axis view. The images were acquired on planes parallel and perpendicular to the valvular plane. Semiquantitative analysis with double-blind evaluation for definition of the extent of the artifact was performed. Three classes of artifacts were distinguished from minimal to significant. The examinations showed the presence of minimal artifacts in all biological heart valves and moderate artifacts in mechanical valves giving good qualitative data on blood flow near the valve. Analysis of the flow behind the valve showed signs of normal function in 13 prostheses and pathological findings in the remaining three. In these latter cases, MRI was able to define the presence of a pathologic aortic pressure gradient, mitral insufficiency and malpositioning of the mitral valve causing subvalvular turbulence. Nevertheless, we believe that the application of velocity-encoding cine-MR is more promising than semiquantitative analysis of artifacts.
Insights
Magnetic resonance imaging (MRI) is feasible in patients with prosthetic heart valves, showing minimal artifacts in biological valves and moderate artifacts in mechanical valves. This technique allows for functional analysis of the valves in vivo.
Area of Science:
- Cardiovascular Imaging
- Medical Device Safety
- Biomedical Engineering
Background:
- Magnetic resonance imaging (MRI) is often contraindicated in patients with ferromagnetic implants due to risks like current induction, heating, and dislocation.
- Prior studies suggest MRI may be possible for patients with prosthetic heart valves.
Purpose of the Study:
- To assess artifacts in prosthetic heart valves during in vivo low-field MRI (0.2 T).
- To determine the feasibility of functional analysis of biological and mechanical heart valves using MRI.
Main Methods:
- Evaluated 14 patients with biological (n=9) and mechanical (n=7) aortic and mitral valves.
- Utilized a 0.2 T low-field MRI unit with cine-MR technique (long- and short-axis views).
- Performed semiquantitative, double-blind artifact analysis and assessed valve function through blood flow analysis.
Main Results:
- Minimal artifacts were observed in all biological valves; moderate artifacts in mechanical valves.
- Good qualitative data on perivalvular blood flow was obtained.
- MRI identified normal function in 13 valves and pathological findings (pressure gradient, insufficiency, malpositioning) in three.
Conclusions:
- Low-field MRI can be performed in patients with prosthetic heart valves, yielding useful functional data.
- Velocity-encoding cine-MR shows promise for more detailed analysis than semiquantitative artifact assessment.