Electrical power to run ventricular assist devices using the Free-range Resonant Electrical Energy Delivery system

BH Waters, J Park, JC Bouwmeester… - The Journal of Heart and …, 2018 - Elsevier
BACKGROUND Models of power delivery within an intact organism have been limited to
ionizing radiation and, to some extent, sound and magnetic waves for diagnostic purposes …

Hemodynamic Evaluation of Asynchronous Speed Modulation of a Continuous-Flow Left Ventricular Assist Device in an Acute-Myocardial Injury Sheep Model

S Tanaka, T Nishinaka, A Umeki, T Murakami… - Annals of Biomedical …, 2024 - Springer
Asynchronous rotational-speed modulation of a continuous-flow left ventricular assist device
(LVAD) can increase pulsatility; however, the feasibility of hemodynamic modification by …

Resonantly coupled high-efficiency sensors for assessment of ventricular chamber size for autonomous control of left ventricular assist device

Y Palagani, E Sorkin, R Bonde, P Bahel… - ASAIO Journal, 2023 - journals.lww.com
Current left ventricular assist devices (LVADs) are set to a fixed rpm and are unable to adjust
to physiological demands irrespective of preload or afterload. Autonomous control of LVADs …

Futuristic perspectives: novel MCS devices

R Bonde, P Bonde - Indian Journal of Thoracic and Cardiovascular …, 2023 - Springer
Abstract Treatment of heart failure needs a firm understanding of anatomy and physiology of
the circulatory system and the heart. Ancient India takes credit for the “modern concepts” of …