This article deals with the electromagnetic interference (EMI) in a cardiac implantable electronic device (e.g., implantable cardioverter-defibrillator or cardiac resynchronization therapy) generated by a left ventricular assisted device (LVAD) powered by a wireless power transfer (WPT) system. Wireless LVAD, not yet available in the market, is currently being investigated for many aspects spanning from electronics, hydraulic, electrical feeding, mechanical, and its possible impact on other implanted devices, such as a cardiac implantable electronic device (CIED). No results are yet published on possible EMI effects produced by the WPT coil currents in the pacing leads of a CIED implanted in the same patient with the LVAD. To this aim, the ...
We introduced a simple technique to eliminate electromagnetic interference between a left ventricula...
This study deals with the design of a near-field wireless power transfer (WPT) system applied to a l...
An uninterruptable wireless power supply is developed for a left ventricular assist device (LVAD), w...
This article deals with the electromagnetic interference (EMI) in a cardiac implantable electronic d...
This article deals with the electromagnetic interference (EMI) in a cardiac implantable electronic d...
Electromagnetic interference (EMI) between implantable left ventricular assist devices and cardiac i...
There is an increasing prevalence of patients with concomitant implantable cardioverter-defibrillato...
Electromagnetic interference is a concern for people wearing cardiovascular implantable electronic d...
automotivecardiac implantable electronic devicedynamic wireless power transferelectromagnetic compat...
Modern life exposes us all to an ever-increasing number of potential sources of electromagnetic inte...
An innovative configuration for a wireless power transfer (WPT) system of a left ventricular assiste...
This paper deals with the intrasystem electromagnetic interference (EMI) in a pacemaker equipped wit...
An uninterruptable wireless power supply is developed for a left ventricular assist device (LVAD), w...
Abstract: Electromagnetic interference is a concern for people wearing cardiovascular implantable el...
We introduced a simple technique to eliminate electromagnetic interference between a left ventricula...
This study deals with the design of a near-field wireless power transfer (WPT) system applied to a l...
An uninterruptable wireless power supply is developed for a left ventricular assist device (LVAD), w...
This article deals with the electromagnetic interference (EMI) in a cardiac implantable electronic d...
This article deals with the electromagnetic interference (EMI) in a cardiac implantable electronic d...
Electromagnetic interference (EMI) between implantable left ventricular assist devices and cardiac i...
There is an increasing prevalence of patients with concomitant implantable cardioverter-defibrillato...
Electromagnetic interference is a concern for people wearing cardiovascular implantable electronic d...
automotivecardiac implantable electronic devicedynamic wireless power transferelectromagnetic compat...
Modern life exposes us all to an ever-increasing number of potential sources of electromagnetic inte...
An innovative configuration for a wireless power transfer (WPT) system of a left ventricular assiste...
This paper deals with the intrasystem electromagnetic interference (EMI) in a pacemaker equipped wit...
An uninterruptable wireless power supply is developed for a left ventricular assist device (LVAD), w...
Abstract: Electromagnetic interference is a concern for people wearing cardiovascular implantable el...
We introduced a simple technique to eliminate electromagnetic interference between a left ventricula...
This study deals with the design of a near-field wireless power transfer (WPT) system applied to a l...
An uninterruptable wireless power supply is developed for a left ventricular assist device (LVAD), w...