Bio-implantable circuits always raise interest because it is already the frontier of overcoming different deficiencies of human body physiological limitations and impairments. They allow, on one hand the operating mode of internal organs, and the contact with outside, at the other hand, thanks to wired and/or wireless architectures. EEG (Electroencephalogram) signals are an example of a topic where scientists and researchers have been working to use them for preventing general and specific pathologies regarding namely central nervous system and other physiological aspects. This paper illustrates preliminary results of nanocircuits used for a bio-implantable neuro-case encompassing circuits useful for signal processing and measurement.

Nanocircuits for a Bio-Implantable System in EEG Signal Acquisitions

G Gigli;F Conversano;S Casciaro
2015

Abstract

Bio-implantable circuits always raise interest because it is already the frontier of overcoming different deficiencies of human body physiological limitations and impairments. They allow, on one hand the operating mode of internal organs, and the contact with outside, at the other hand, thanks to wired and/or wireless architectures. EEG (Electroencephalogram) signals are an example of a topic where scientists and researchers have been working to use them for preventing general and specific pathologies regarding namely central nervous system and other physiological aspects. This paper illustrates preliminary results of nanocircuits used for a bio-implantable neuro-case encompassing circuits useful for signal processing and measurement.
2015
Istituto di Fisiologia Clinica - IFC
EEG
Measurement
Sensors
Bio-implantability neuro-devices
nanotechnology
nanocircuits.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/309099
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