Measurement of ventilation and cardiac related impedance changes with electrical impedance tomography
暂无分享,去创建一个
Caroline A Grant | Thomas Riedel | T. Riedel | C. Stocker | Andreas Schibler | Trang Pham | Judith Hough | Christian Stocker | Judith L Hough | A. Schibler | T. Pham | C. Grant
[1] D. Hansell,et al. Pulmonary perfusion in supine and prone positions: an electron-beam computed tomography study. , 2001, Journal of applied physiology.
[2] Dirk Schädler,et al. Comparison of different methods to define regions of interest for evaluation of regional lung ventilation by EIT , 2006, Physiological measurement.
[3] Thomas Riedel,et al. The value of electrical impedance tomography in assessing the effect of body position and positive airway pressures on regional lung ventilation in spontaneously breathing subjects , 2005, Intensive Care Medicine.
[4] J. Fraser,et al. Electrical impedance tomography in extremely prematurely born infants and during high frequency oscillatory ventilation analyzed in the frequency domain , 2006, Physiological measurement.
[5] R P Patterson,et al. Variability in the cardiac EIT image as a function of electrode position, lung volume and body position. , 2001, Physiological measurement.
[6] J. Marcus,et al. Pulmonary perfusion measured by means of electrical impedance tomography , 1998, Physiological measurement.
[7] J. Bronzwaer,et al. Determination of stroke volume by means of electrical impedance tomography. , 2000, Physiological measurement.
[8] T. Amis,et al. Effect of posture on inter-regional distribution of pulmonary perfusion and VA/Q ratios in man. , 1984, Respiration physiology.
[9] Marc Bodenstein,et al. Principles of electrical impedance tomography and its clinical application , 2009, Critical care medicine.
[10] Saxon Ridley. Critical care. , 2003, Anaesthesia.
[11] Ola Stenqvist,et al. Electrical impedance tomography applied to assess matching of pulmonary ventilation and perfusion in a porcine experimental model , 2009, Critical care.
[12] Peter Herrmann,et al. Regional Lung Perfusion as Determined by Electrical Impedance Tomography in Comparison With Electron Beam CT Imaging , 2002, IEEE Transactions on Medical Imaging.
[13] Inéz Frerichs,et al. Assessment of Changes in Distribution of Lung Perfusion by Electrical Impedance Tomography , 2009, Respiration.
[14] O. Stenqvist,et al. Monitoring pulmonary perfusion by electrical impedance tomography: an evaluation in a pig model , 2009, Acta anaesthesiologica Scandinavica.
[15] J. Fraser,et al. Effect of smoke inhalation on viscoelastic properties and ventilation distribution in sheep. , 2006, Journal of applied physiology.
[16] S Leonhardt,et al. Dynamic separation of pulmonary and cardiac changes in electrical impedance tomography , 2008, Physiological measurement.
[17] C. Frisbie,et al. Temperature and gate voltage dependent transport across a single organic semiconductor grain boundary , 2001 .
[18] R W Glenny,et al. Gravity is an important but secondary determinant of regional pulmonary blood flow in upright primates. , 1999, Journal of applied physiology.
[19] Inéz Frerichs,et al. Regional distribution of blood volume within the preterm infant thorax during synchronised mechanical ventilation , 2010, Intensive Care Medicine.