Non-contact capacitive electrodes for bioelectric diagnostics provide an interesting alternative to classical galvanically coupled electrodes. Such a low cost diagnostic system can be applied without preparation time and in mobile wireless environments. For even higher user comfort textile capacitive electrodes are preferable. In this work, a comprehensive model for the electronic noise properties and frequency dependent responses of PCB-based, as well as textile non-contact capacitive electrodes, is presented. A thorough study of the influence of the electrical components on the resulting noise properties of these electrodes, is provided by independently measuring the corresponding noise spectra. The most important low frequency noise sou...
Electroencephalogram (EEG) is the biopotential recording of electrical signals generated by brain ac...
Abstract This study reports attempts to characterise the noise properties of un‐gelled, textile‐base...
Capacitive Electrodes (CE) allow the acquisition of biopotentials through a dielectric layer, withou...
Kapazitive Elektroden ermöglichen eine einfache Messung des Elektrokardiogramms (EKG) und Elektroenz...
Low frequency noise performance is the key indicator in determining the signal to noise ratio of a c...
Low frequency noise performance is the key indicator in determining the signal to noise ratio of a c...
Abstract: Low frequency noise performance is the key indicator in determining the signal to noise ra...
It is important to go through a validation process when developing new electroencephalography (EEG) ...
It is important to go through a validation process when developing new electroencephalography (EEG) ...
In modern medicine, the measurement of electrophysiological signals play a key role in health monito...
Standard wet EEG electrodes can cause skin irritation and dry over time. Though dry EEG metal electr...
EEG electrodes currently on the market are not suitable for longterm monitoring or wearable applicat...
In this work, we propose a fabric electrode with a special structure that can play the role of a noi...
The development of mobile systems for monitoring bioelectric signals outside a hospital environment ...
Wet Ag/AgCl electrodes, although very popular in clinical diagnosis, are not appropriate for expandi...
Electroencephalogram (EEG) is the biopotential recording of electrical signals generated by brain ac...
Abstract This study reports attempts to characterise the noise properties of un‐gelled, textile‐base...
Capacitive Electrodes (CE) allow the acquisition of biopotentials through a dielectric layer, withou...
Kapazitive Elektroden ermöglichen eine einfache Messung des Elektrokardiogramms (EKG) und Elektroenz...
Low frequency noise performance is the key indicator in determining the signal to noise ratio of a c...
Low frequency noise performance is the key indicator in determining the signal to noise ratio of a c...
Abstract: Low frequency noise performance is the key indicator in determining the signal to noise ra...
It is important to go through a validation process when developing new electroencephalography (EEG) ...
It is important to go through a validation process when developing new electroencephalography (EEG) ...
In modern medicine, the measurement of electrophysiological signals play a key role in health monito...
Standard wet EEG electrodes can cause skin irritation and dry over time. Though dry EEG metal electr...
EEG electrodes currently on the market are not suitable for longterm monitoring or wearable applicat...
In this work, we propose a fabric electrode with a special structure that can play the role of a noi...
The development of mobile systems for monitoring bioelectric signals outside a hospital environment ...
Wet Ag/AgCl electrodes, although very popular in clinical diagnosis, are not appropriate for expandi...
Electroencephalogram (EEG) is the biopotential recording of electrical signals generated by brain ac...
Abstract This study reports attempts to characterise the noise properties of un‐gelled, textile‐base...
Capacitive Electrodes (CE) allow the acquisition of biopotentials through a dielectric layer, withou...