Metallic materials are in a peculiar position for realization of electromagnetic shielding and antennas. Implanted devices, sometimes also responsible for vital functions of the hosting human body, should present reduced response to external electromagnetic interferences. In case transmission of data between the device and external environment is additionally required, the device should also be equipped with an antenna. The biocompatibility of such metallic parts is of fundamental importance: being them positioned on the external part of the device, they are the most exposed to be in close contact with the body environment. Investigations on the timely interaction between the metal based materials and the simulated hosting body by standardized physiological solution is described and quantified.

Metal-based materials for the development of implanted bio-devices (Invited paper) / Peter, Ildiko; Matekovits, Ladislau; Esselle, Karu P.. - CD-ROM. - Proceedings of 2016 International Workshop on Antenna Technology (iWAT):(2016), pp. 135-137. (Intervento presentato al convegno IEEE International Workshop on Antenna Technology, iWAT 2016 tenutosi a Hilton Cocoa Beach Oceanfront, usa nel 29 Feb.-2 March 2016) [10.1109/IWAT.2016.7434823].

Metal-based materials for the development of implanted bio-devices (Invited paper)

PETER, ILDIKO;MATEKOVITS, Ladislau;
2016

Abstract

Metallic materials are in a peculiar position for realization of electromagnetic shielding and antennas. Implanted devices, sometimes also responsible for vital functions of the hosting human body, should present reduced response to external electromagnetic interferences. In case transmission of data between the device and external environment is additionally required, the device should also be equipped with an antenna. The biocompatibility of such metallic parts is of fundamental importance: being them positioned on the external part of the device, they are the most exposed to be in close contact with the body environment. Investigations on the timely interaction between the metal based materials and the simulated hosting body by standardized physiological solution is described and quantified.
2016
9781509002672
9781509002672
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2655370
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