LVAD as a Bridge to Transplantation—Current Status and Future Perspectives

MJ Roesel, G Nersesian, S Neuber… - Reviews in …, 2024‏ - pmc.ncbi.nlm.nih.gov
Heart failure (HF) is a common disease associated with high morbidity and mortality rates
despite advanced pharmacological therapies. Heart transplantation remains the gold …

Design of a hybrid left ventricular assist device with a new wireless charging system

H Horie, T Isoyama, K Ishiyama - Artificial Organs, 2024‏ - Wiley Online Library
Background The objective of this study was to design a new wireless left ventricular assist
device (LVAD) that can be charged without using a conventional transcutaneous energy …

[HTML][HTML] Reduced Heating Wireless Energy Transmission System for Powering Implanted Circulatory Assist Devices: Benchtop and In-Vivo Studies

ML Karim, R Grimes, H Larkin, AM Bosnjak… - Sensors, 2025‏ - mdpi.com
This study aimed to develop a novel Transdermal Energy Transmission System (TETS)
device that addresses the driveline complications faced by patients with advanced heart …

Systems for power and data transfer

Y Qu, M Vilathgamuwa, D McCormick… - … and Respiratory Support, 2025‏ - Elsevier
Medical device–related infection is one of the major complications of mechanical circulatory
and respiratory support (MCRS) that hinders its long-term success. Percutaneous power and …

Feasibility Testing of the Bionet Sonar Ultrasound Transcutaneous Energy Transmission (UTET) System for Wireless Power and Communication of a LVAD

G Monreal, SC Koenig, A Sangwan, R Guida… - Cardiovascular …, 2024‏ - Springer
Purpose To address the clinical need for totally implantable mechanical circulatory support
devices, Bionet Sonar is develo** a novel Ultrasonic Transcutaneous Energy …

[کتاب][B] Modelling Hemolysis and Thrombosis in Blood-Wetted Medical Devices

H Valtchanov - 2023‏ - search.proquest.com
Heart failure, broadly characterized by the gradual decline of the ability of the heart to
maintain adequate blood flow throughout the body's vascular network of veins and arteries …

Current status and future directions in the development and optimization of thoracic and abdominal artificial organs.

R Tatum, D Wong, PN Martins… - Artificial …, 2023‏ - search.ebscohost.com
Introduction: Artificial organs are engineered devices with the capacity to be implanted or
integrated into a living body to replace a failing organ, or to duplicate or augment one or …

The Effect of the Implant Casing Material on Tissue Heating during Transcutaneous Inductive Power Transfer

EV Ryabchenko, AA Danilov - Biomedical Engineering, 2022‏ - Springer
Numerical simulation of heating of the surrounding biological tissues by a transcutaneous
inductive power transfer system with an output power of 500 mW has been performed. A four …

Measurement of high-frequency patient leakage current from a transmitting coil in a transcutaneous energy transmission system for ventricular assist device

K Shiba - IEEE Transactions on Electromagnetic Compatibility, 2022‏ - ieeexplore.ieee.org
The transcutaneous energy transmission system (TETS) has been studied for wireless
power supply in ventricular assist devices embedded in the body. To be approved as a …

On the path to permanent artificial heart technology: Greater energy independence is paramount.

CM Komlo, AL Throckmorton… - Artificial …, 2021‏ - search.ebscohost.com
Abstract ASAIO J. 2012; 58: 550-3. https://doi. org/10.1097/MAT. 0b013e31826a9204 20
MacLean GK, Aiken PA, Duguay DG, Adams WA, Mussivand T. The effect of pulsatile power …