Prosthetic valve thrombosis (PVT) is a serious complication affecting prosthetic heart valves. The transvalvular mean pressure gradient (MPG) derived by Doppler echocardiography is a crucial index to diagnose PVT but may result in false negatives mainly in case of bileaflet mechanical valves (BMVs) in mitral position. This may happen because MPG estimation relies on simplifying assumptions on the transvalvular fluid dynamics or because Doppler examination is manual and operator dependent. A deeper understanding of these issues may allow for improving PVT diagnosis and management. To this aim, we used in vitro and fluid–structure interaction (FSI) modeling to simulate the function of a real mitral BMV in different configurations: normally functioning and stenotic with symmetric and completely asymmetric leaflet opening, respectively. In each condition, the MPG was measured in vitro, computed directly from FSI simulations and derived from the corresponding velocity field through a Doppler-like postprocessing approach. Following verification versus in vitro data, MPG computational data were analyzed to test their dependency on the severity of fluid-dynamic derangements and on the measurement site. Computed MPG clearly discriminated between normally functioning and stenotic configurations. They did not depend markedly on the site of measurement, yet differences below 3 mmHg were found between MPG values at the central and lateral orifices of the BMV. This evidence suggests a mild uncertainty of the Doppler-based evaluation of the MPG due to probe positioning, which yet may lead to false negatives when analyzing subjects with almost normal MPG.
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October 2019
Research-Article
Fluid–Structure Interaction and In Vitro Analysis of a Real Bileaflet Mitral Prosthetic Valve to Gain Insight Into Doppler-Silent Thrombosis
Annalisa Dimasi,
Annalisa Dimasi
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39,
Milan 20133, Italy
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Daniela Piloni,
Daniela Piloni
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
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Laura Spreafico,
Laura Spreafico
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
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Emiliano Votta,
Emiliano Votta
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
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Riccardo Vismara,
Riccardo Vismara
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
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Gianfranco Beniamino Fiore,
Gianfranco Beniamino Fiore
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
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Masoud Meskin,
Masoud Meskin
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
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Laura Fusini,
Laura Fusini
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
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Manuela Muratori,
Manuela Muratori
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
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Piero Montorsi,
Piero Montorsi
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
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Mauro Pepi,
Mauro Pepi
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
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Alberto Redaelli
Alberto Redaelli
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
e-mail: alberto.redaelli@polimi.it
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
e-mail: alberto.redaelli@polimi.it
1Corresponding author.
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Annalisa Dimasi
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39,
Milan 20133, Italy
Daniela Piloni
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
Laura Spreafico
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
Emiliano Votta
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
Riccardo Vismara
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
Gianfranco Beniamino Fiore
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
Masoud Meskin
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
Laura Fusini
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
Manuela Muratori
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
Piero Montorsi
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
Mauro Pepi
Centro Cardiologico Monzino IRCCS,
Milan 20138, Italy
Via Carlo Parea 4
,Milan 20138, Italy
Alberto Redaelli
Department of Electronics,
Information and Bioengineering,
Politecnico di Milano,
Milan 20133, Italy
e-mail: alberto.redaelli@polimi.it
Information and Bioengineering,
Politecnico di Milano,
Via Golgi 39
,Milan 20133, Italy
e-mail: alberto.redaelli@polimi.it
1Corresponding author.
Manuscript received January 31, 2018; final manuscript received April 24, 2019; published online July 11, 2019. Assoc. Editor: Giuseppe Vairo.
J Biomech Eng. Oct 2019, 141(10): 101002 (9 pages)
Published Online: July 11, 2019
Article history
Received:
January 31, 2018
Revised:
April 24, 2019
Citation
Dimasi, A., Piloni, D., Spreafico, L., Votta, E., Vismara, R., Fiore, G. B., Meskin, M., Fusini, L., Muratori, M., Montorsi, P., Pepi, M., and Redaelli, A. (July 11, 2019). "Fluid–Structure Interaction and In Vitro Analysis of a Real Bileaflet Mitral Prosthetic Valve to Gain Insight Into Doppler-Silent Thrombosis." ASME. J Biomech Eng. October 2019; 141(10): 101002. https://doi.org/10.1115/1.4043664
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