Author of the publication

A closed loop transcutaneous power transfer system for implantable devices with enhanced stability.

, , , , , , , and . ISCAS (4), page 17-20. IEEE, (2004)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed. You can also use the button next to the name to display some publications already assigned to the person.

 

Other publications of authors with the same name

Harvesting solar energy to power ocular implants., , and . BioCAS, page 1-4. IEEE, (2015)Design and fabrication of a high-density flexible microelectrode array., , , , , and . NEMS, page 299-302. IEEE, (2017)A closed loop transcutaneous power transfer system for implantable devices with enhanced stability., , , , , , , and . ISCAS (4), page 17-20. IEEE, (2004)An efficient inductive power link design for retinal prosthesis., , , , , and . ISCAS (4), page 41-44. IEEE, (2004)A Novel Racing Array Transducer for Noninvasive Ultrasonic Retinal Stimulation: A Simulation Study., , , , , , , , and . Sensors, 19 (8): 1825 (2019)Power supply topologies for biphasic stimulation in inductively powered implants., , , , and . ISCAS (3), page 2743-2746. IEEE, (2005)3D Nano-Crystal Iridium Oxide/Platinum as a Highperformance Coating for Neural Electrodes., , , , and . NEMS, page 562-565. IEEE, (2018)Strategies to improve stimulation efficiency for retinal prostheses., , , , and . EMBC, page 3133-3138. IEEE, (2016)Flexible microelectrode array for retinal prosthesis., , , , , and . EMBC, page 1097-1100. IEEE, (2017)The physiological connection: stimulating the human and amphibian retina., , , and . ICNN, page 2321-2326. IEEE, (1997)