Comparison between Embroidered and Gel Electrodes on ECG-Derived Respiration Rate

Xinqi Bao, Matthew Howard, Imran Khan Niazi, Ernest Nlandu Kamavuako

Publikation: Bidrag til bog/antologi/rapport/konference proceedingKonferenceartikel i proceedingForskningpeer review

5 Citationer (Scopus)

Abstract

Respiratory rate (RR), which is an essential observation for prediagnosis, can be obtained indirectly from the electrocardiogram (ECG), the so-called ECG-derived respiration (EDR). In this paper, we compared embroidered electrodes with gel electrodes on their performance in capturing EDR signals and analysed which frequency feature best estimates RR. Data were collected from 9 healthy subjects. Results reveal that (1) embroidered electrodes performed similarly to gel electrodes (P = 0.077), (2) using the median frequency of the obtained EDR signals is significantly better (P = 0.01) than the counting methods in the time domain. The obtained results are relevant for the future development of textile-based sensors.

OriginalsprogEngelsk
Titel42nd Annual International Conferences of the IEEE Engineering in Medicine and Biology Society : Enabling Innovative Technologies for Global Healthcare, EMBC 2020
Antal sider4
ForlagIEEE Signal Processing Society
Publikationsdatojul. 2020
Sider2622-2625
Artikelnummer9176485
ISBN (Elektronisk)9781728119908
DOI
StatusUdgivet - jul. 2020
Udgivet eksterntJa
Begivenhed42nd Annual International Conferences of the IEEE Engineering in Medicine and Biology Society, EMBC 2020 - Montreal, Canada
Varighed: 20 jul. 202024 jul. 2020

Konference

Konference42nd Annual International Conferences of the IEEE Engineering in Medicine and Biology Society, EMBC 2020
Land/OmrådeCanada
ByMontreal
Periode20/07/202024/07/2020
NavnProceedings of the Annual International Conference of the IEEE Engineering in Medicine and Biology Society, EMBS
Vol/bind2020-July
ISSN1557-170X

Fingeraftryk

Dyk ned i forskningsemnerne om 'Comparison between Embroidered and Gel Electrodes on ECG-Derived Respiration Rate'. Sammen danner de et unikt fingeraftryk.

Citationsformater