Hôpital Haut Lévêque, Centre Hospitalier Universitaire de Bordeaux
Pessac, 33600, France
NCT Number: NCT05953298
The aim of this physiologic research is to assess lung volumes variations under NIV in stable COPD patients to understand the impact of "high-intensity" ventilation following the current recommendations. The main objective is to evaluate the variation of End-expiratory lung volume (EELV) reflecting the functional residual capacity (FRC), via the End-tidal lung impedance (EELI) obtained by electrical impedance tomography during a 20 minutes NIV session.
Looking for future studies?
Notify Me18 year and older
All sexes
Interventional
Not applicable
Pessac, 33600, France
In patients with COPD, European recommendations recommend the use of NIV with a "high pressure" setting (1). These ventilatory modalities go against what is done in acute. Indeed, in this case, the pressures are much lower, because the risk of asynchronies and dynamic hyperinflation under NIV is then very important.
The usual techniques for evaluating lung volume and dynamic hyperinflation do not allow this to be measured under NIV.
Assessing lung volumes under NIV in stable COPD patients is therefore of major interest in understanding the impact of "high-intensity" ventilation.
Electrical impedance tomography (EIT) is a non-invasive evaluation tool, without radiation, simple to set up at the patient's bedside and validated, making it possible to monitor the distribution of ventilation and lung recruitment with high temporal resolution, dynamic way and at a regional level.(2) Among these measures, the End-Expiratory Lung Impedance (EELI), strongly correlated to the End-Expiratory Lung Volume (EELV), is the reflection of the FRC and can be dynamically monitored in real time at the patient's bedside(3). However, it has never been used in stable COPD patients on NIV, and could be an interesting tool for analyzing the impact of NIV on lung volumes.
The main objective is to evaluate the variation of EELV reflecting the functional residual capacity (FRC), via the End-tidal lung impedance (EELI) obtained by electrical impedance tomography, during a 20-minute session of NIV in patients with COPD at the stable state
The secondary objectives will be:
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Electrical impedance tomography (EIT) is a non-invasive evaluation tool, without radiation, simple to set up at the patient's bedside and validated, making it possible to monitor the distribution of ventilation and lung recruitment with high temporal resolution, dynamic way and at a regional level
Time frame: Day 1
End-Expiratory Lung impedance is related to the End-Expiratory Lung Volume reflecting the functional residual capacity (FRC). It is obtained by electrical impedance tomography. EELI values are presented in arbitrary values (v.a) and can vary greatly between individuals. Thus, as previously proposed by (4), the EELI values during the different measurement phases will be assessed and presented as a percentage change from their reference value. The main objective of this study aims to observe the evolution of the EELI under NIV in stable COPD patients, the reference EELI value will be that measured at T1 (NIV initiation+1 minute), compared to that measured at T2 (NIV+20minutes) under the ∆EELI%T2 abbreviation from the following calculation: ∆EELI%T2 = (EELIT1-EELIT2)/EELIT1*100
Time frame: Day 1
A secondary objective of this research is to observe the evolution of the EELI before, during and after the NIV. In this context, the reference value will be the measurement of the EELI before the NIV, i.e. EELIT0. Thus the EELI values at T1 (NIV initiation+1 minute), T2 (NIV+20minutes) and T3 (5minutes after NIV) will be presented as a percentage change compared to T0 and will be respectively ∆EELI%T1, ∆EELI %T2 and ∆EELI%T3, respecting the following calculation: ∆EELI%Tx = (EELIT0-EELITx)/EELIT0*100.
Time frame: Day 1
A secondary objective of this research is to observe the evolution of transcutaneous capnia (PtCO2) in mmHg via a capnograph before (T0), during (T1, T2) and after NIV (T3).
University Hospital, Bordeaux
Other
Evaluation by Electrical Impedancemetry of the Variation of Lung Volumes Under NIV in Patients With COPD
Acronym: Eval 3V-BPCO
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT03927820
Asthma, Bronchial Diseases
Nashville, Tennessee, United States
View Trial DetailsNCT06614959
Bronchial Diseases, Bronchitis
Montreal, Quebec, Canada
View Trial DetailsNCT04754490
COPD, Chronic Disease
Abercynon, Wales, United Kingdom
View Trial DetailsNCT06336252
Arthritis, Basal Ganglia Diseases
Copenhagen, Denmark
View Trial Details