Prosthetic Power Supplies
Author:
Affiliation:
1. Polytechnique Montréal; Montréal Québec Canada
2. University of Sousse; Sousse Tunisia
3. King Abdulaziz University; Jeddah Saudi Arabia
4. Carthage University; Tunis Tunisia
Publisher
John Wiley & Sons, Inc.
Reference53 articles.
1. Novel, Remotely Controlled, Artificial Urinary Sphincter: A Retro-compatible Device;Hached;IEEE/ASME Trans. Mechatron.,2014
2. Toward a Fully Integrated Neurostimulator with Inductive Power Recovery Front-End;Mounaïm;IEEE Trans. Biomed. Circuits Syst.,2012
3. Planar Microcoil Array Based Temperature-Controllable Lab-on-Chip Platform;Yushan;IEEE Trans. Magn.,2013
4. On the Design of Microfluidic Implant Coil for Flexible Telemetry System;Qusba;IEEE Sens. J.,2014
5. Wireless Smart Implants Dedicated to Multichannel Monitoring and Microstimulation;Sawan;IEEE Circuits Syst. Mag.,2005
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1. New Era of Electroceuticals: Clinically Driven Smart Implantable Electronic Devices Moving towards Precision Therapy;Micromachines;2022-01-22
2. Maximizing Data Transmission Rate for Implantable Devices Over a Single Inductive Link: Methodological Review;IEEE Reviews in Biomedical Engineering;2019
3. Geometry Optimization Approaches of Inductively Coupled Printed Spiral Coils for Remote Powering of Implantable Biomedical Sensors;Journal of Sensors;2016
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