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  4. Soft Beats: A Dielectric Elastomer-Based Ventricular Assist Device for Next-Gen Heart Failure Management
 
research article

Soft Beats: A Dielectric Elastomer-Based Ventricular Assist Device for Next-Gen Heart Failure Management

Benouhiba, Amine  
•
Walter, Armando Matthieu  
•
Jahren, Silje Ekroll  
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2025
Advanced Engineering Materials

Ventricular assist devices (VADs) are vital for patients with severe heart failure but often face limitations in energy efficiency and adaptability. To address these challenges, the dielectric elastomer-based electropneumatic device (DE-EPD) is introduced, a novel cardiac assist device utilizing dielectric elastomers (DEAs) for soft, pulsatile motion. The DE-EPD incorporates a tubular multilayer DEA within a vacuum chamber, optimized with axial prestretch and radial biasing to improve performance while minimizing energy consumption. With a weight of less than 200 g and an energy consumption of only 1.6 W, the DE-EPD achieves a flow rate of 6.8 L min−1, equal to a head pressure of 85 mmHg at 5 Hz, effectively mimicking physiological heart dynamics. Its lightweight and portable design offers significant advantages over conventional motor- and pneumatic-driven VADs. The DE-EPD sets a new standard for the next generation of VADs, offering a sophisticated and effective alternative in heart failure management.

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Type
research article
DOI
10.1002/adem.202501234
Scopus ID

2-s2.0-105012949365

Author(s)
Benouhiba, Amine  

EPFL

Walter, Armando Matthieu  

EPFL

Jahren, Silje Ekroll  

EPFL

Obrist, Dominik

University of Bern, Faculty of Medicine

Clavica, Francesco  

EPFL

Civet, Yoan René Cyrille  

EPFL

Perriard, Yves  

EPFL

Date Issued

2025

Published in
Advanced Engineering Materials
Article Number

2501234

Subjects

artificial heart

•

artificial muscles

•

cardiac assist devices

•

dielectric elastomer actuators.

•

soft actuators

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LAI  
CAM  
FunderFunding(s)Grant NumberGrant URL

Werner Siemens foundation

Available on Infoscience
August 20, 2025
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/253020
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