Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao… - Journal of applied …, 2012 - journals.physiology.org
Electrical impedance tomography (EIT) is a functional imaging modality capable of tracing
continuously regional pulmonary gas volume changes. The aim of our study was to …

Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao… - Journal of Applied …, 2012 - journals.physiology.org
Electrical impedance tomography (EIT) is a functional imaging modality capable of tracing
continuously regional pulmonary gas volume changes. The aim of our study was to …

[引用][C] Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B VOGT, S PULLETZ, G ELKE, Z ZHAO… - Journal of applied …, 2012 - pascal-francis.inist.fr
Spatial and temporal heterogeneity of regional lung ventilation determined by electrical
impedance tomography during pulmonary function testing CNRS Inist Pascal-Francis …

[引用][C] Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao… - Journal of Applied …, 2012 - opus.hs-furtwangen.de
OPUS 4 | Spatial and temporal heterogeneity of regional lung ventilation determined by
electrical impedance tomography during pulmonary function testing Deutsch Login Open …

Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao… - Journal of applied …, 2012 - pubmed.ncbi.nlm.nih.gov
Electrical impedance tomography (EIT) is a functional imaging modality capable of tracing
continuously regional pulmonary gas volume changes. The aim of our study was to …

[PDF][PDF] Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao, P Zabel, N Weiler… - J Appl Physiol, 2012 - Citeseer
MATERIALS AND METHODS Subjects and examination protocol. We examined three
groups of subjects of both sexes: 1) 14 young healthy adults with no history of lung disease …

[PDF][PDF] Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao, P Zabel… - J Appl …, 2012 - scholar.archive.org
MATERIALS AND METHODS Subjects and examination protocol. We examined three
groups of subjects of both sexes: 1) 14 young healthy adults with no history of lung disease …

[PDF][PDF] Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao, P Zabel… - J Appl …, 2012 - researchgate.net
MATERIALS AND METHODS Subjects and examination protocol. We examined three
groups of subjects of both sexes: 1) 14 young healthy adults with no history of lung disease …

Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing

B Vogt, S Pulletz, G Elke, Z Zhao… - Journal of Applied …, 2012 - research.uni-luebeck.de
Electrical impedance tomography (EIT) is a functional imaging modality capable of tracing
continuously regional pulmonary gas volume changes. The aim of our study was to …

Spatial and temporal heterogeneity of regional lung ventilation determined by electrical impedance tomography during pulmonary function testing.

B Vogt, S Pulletz, G Elke, Z Zhao, P Zabel… - Journal of Applied …, 2012 - europepmc.org
Electrical impedance tomography (EIT) is a functional imaging modality capable of tracing
continuously regional pulmonary gas volume changes. The aim of our study was to …