Electrical impedance tomography in extremely prematurely born infants and during high frequency oscillatory ventilation analyzed in the frequency domain


Autoria(s): Dunlop, Scott; Hough, Judy; Riedel, Thomas; Fraser, John F.; Dunster, Kimble; Schibler, Andreas
Contribuinte(s)

M. H. Neuman

Data(s)

01/01/2006

Resumo

Functional electrical impedance tomography (EIT) measures relative impedance change that occurs in the chest during a distinct observation period and an EIT image describing regional relative impedance change is generated. Analysis of such an EIT image may be erroneous because it is based on an impedance signal that has several components. Most of the change in relative impedance in the chest is caused by air movement but other physiological events such as cardiac activity change in end expiratory level or pressure swings originating from a ventilator circuit can influence the impedance signal. We obtained EIT images and signals in spontaneously breathing healthy adults, in extremely prematurely born infants on continuous positive airway pressure and in ventilated sheep on conventional mechanical or high frequency oscillatory ventilation (HFOV). Data were analyzed in the frequency domain and results presented after band pass filtering within the frequency range of the physiological event of interest. Band pass filtering of EIT data is necessary in premature infants and on HFOV to differentiate and eliminate relative impedance changes caused by physiological events other than the one of interest.

Identificador

http://espace.library.uq.edu.au/view/UQ:82151

Idioma(s)

eng

Publicador

Institute of Physics Publishing

Palavras-Chave #Biophysics #Engineering, Biomedical #Physiology #Ventilation Distribution #Measurement Technique #Filtering Technique #Regional Lung Ventilation #Eit Images #Pressure #Volume #321019 Paediatrics #730204 Child health
Tipo

Journal Article