Literature DB >> 27190067

Regional lung response to bronchodilator reversibility testing determined by electrical impedance tomography in chronic obstructive pulmonary disease.

Barbara Vogt1, Zhanqi Zhao2, Peter Zabel3, Norbert Weiler1, Inéz Frerichs4.   

Abstract

Patients with obstructive lung diseases commonly undergo bronchodilator reversibility testing during examination of their pulmonary function by spirometry. A positive response is defined by an increase in forced expiratory volume in 1 s (FEV1). FEV1 is a rather nonspecific criterion not allowing the regional effects of bronchodilator to be assessed. We employed the imaging technique of electrical impedance tomography (EIT) to visualize the spatial and temporal ventilation distribution in 35 patients with chronic obstructive pulmonary disease at baseline and 5, 10, and 20 min after bronchodilator inhalation. EIT scanning was performed during tidal breathing and forced full expiration maneuver in parallel with spirometry. Ventilation distribution was determined by EIT by calculating the image pixel values of FEV1, forced vital capacity (FVC), tidal volume, peak flow, and mean forced expiratory flow between 25 and 75% of FVC. The global inhomogeneity indexes of each measure and histograms of pixel FEV1/FVC values were then determined to assess the bronchodilator effect on spatial ventilation distribution. Temporal ventilation distribution was analyzed from pixel values of times needed to exhale 75 and 90% of pixel FVC. Based on spirometric FEV1, significant bronchodilator response was found in 17 patients. These patients exhibited higher postbronchodilator values of all regional EIT-derived lung function measures in contrast to nonresponders. Ventilation distribution was inhomogeneous in both groups. Significant improvements were noted for spatial distribution of pixel FEV1 and tidal volume and temporal distribution in responders. By providing regional data, EIT might increase the diagnostic and prognostic information derived from reversibility testing.
Copyright © 2016 the American Physiological Society.

Entities:  

Keywords:  COPD; EIT; pulmonary function testing; spirometry; ventilation distribution

Mesh:

Substances:

Year:  2016        PMID: 27190067     DOI: 10.1152/ajplung.00463.2015

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  11 in total

1.  Technique Innovation and Clinical Application of Electrical Impedance Tomography: Bibliometric Research from 2001 to 2020.

Authors:  Li Xiao; Kang Yu; Ying Cao; Xiaowan Lin; Xiao Liu; Hui Qiao; Huihui Miao; Tianzuo Li
Journal:  Med Sci Monit       Date:  2022-05-18

2.  Chest electrical impedance tomography examination, data analysis, terminology, clinical use and recommendations: consensus statement of the TRanslational EIT developmeNt stuDy group.

Authors:  Inéz Frerichs; Marcelo B P Amato; Anton H van Kaam; David G Tingay; Zhanqi Zhao; Bartłomiej Grychtol; Marc Bodenstein; Hervé Gagnon; Stephan H Böhm; Eckhard Teschner; Ola Stenqvist; Tommaso Mauri; Vinicius Torsani; Luigi Camporota; Andreas Schibler; Gerhard K Wolf; Diederik Gommers; Steffen Leonhardt; Andy Adler
Journal:  Thorax       Date:  2016-09-05       Impact factor: 9.139

3.  Regional expiratory time constants in severe respiratory failure estimated by electrical impedance tomography: a feasibility study.

Authors:  Christian Karagiannidis; Andreas D Waldmann; Péter L Róka; Tina Schreiber; Stephan Strassmann; Wolfram Windisch; Stephan H Böhm
Journal:  Crit Care       Date:  2018-09-21       Impact factor: 9.097

4.  Global and regional degree of obstruction determined by electrical impedance tomography in patients with obstructive ventilatory defect.

Authors:  Chao Zhang; Meng Dai; Wei Liu; Xiaohui Bai; Jiaming Wu; Canhua Xu; Junying Xia; Feng Fu; Xuetao Shi; Xiuzhen Dong; Faguang Jin; Fusheng You
Journal:  PLoS One       Date:  2018-12-20       Impact factor: 3.240

Review 5.  Electrical Impedance Tomography for Cardio-Pulmonary Monitoring.

Authors:  Christian Putensen; Benjamin Hentze; Stefan Muenster; Thomas Muders
Journal:  J Clin Med       Date:  2019-08-07       Impact factor: 4.241

Review 6.  Electrical impedance tomography in perioperative medicine: careful respiratory monitoring for tailored interventions.

Authors:  Elena Spinelli; Tommaso Mauri; Alberto Fogagnolo; Gaetano Scaramuzzo; Annalisa Rundo; Domenico Luca Grieco; Giacomo Grasselli; Carlo Alberto Volta; Savino Spadaro
Journal:  BMC Anesthesiol       Date:  2019-08-07       Impact factor: 2.217

Review 7.  A narrative review of electrical impedance tomography in lung diseases with flow limitation and hyperinflation: methodologies and applications.

Authors:  Ling Sang; Zhanqi Zhao; Zhimin Lin; Xiaoqing Liu; Nanshan Zhong; Yimin Li
Journal:  Ann Transl Med       Date:  2020-12

8.  Spatial Ventilation Inhomogeneity Determined by Electrical Impedance Tomography in Patients With Chronic Obstructive Lung Disease.

Authors:  Inéz Frerichs; Livia Lasarow; Claas Strodthoff; Barbara Vogt; Zhanqi Zhao; Norbert Weiler
Journal:  Front Physiol       Date:  2021-12-13       Impact factor: 4.566

9.  Qualitative and quantitative assessment of pendelluft: a simple method based on electrical impedance tomography.

Authors:  Ling Sang; Zhanqi Zhao; Po-Jen Yun; Inéz Frerichs; Knut Möller; Feng Fu; Xiaoqing Liu; Nanshan Zhong; Yimin Li
Journal:  Ann Transl Med       Date:  2020-10

10.  Regional ventilation distribution in healthy lungs: can reference values be established for electrical impedance tomography parameters?

Authors:  Lin Yang; Meng Dai; Xinsheng Cao; Knut Möller; Mantas Dargvainis; Inéz Frerichs; Tobias Becher; Feng Fu; Zhanqi Zhao
Journal:  Ann Transl Med       Date:  2021-05
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