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Clinical Trial Summary

The goal of this study is to evaluate the role that high-flow nasal cannulas (HFNC) have on respiratory drive, work of breathing and neuromuscular efficiency after lung resection surgery. The main question the investigators aim to answer is whether HFNC decrease respiratory drive by at least 15% in these patients, assessed by a special diaphragmatic electromyography (EMG) device (NAVA catheter). In order, to perform this study, the investigators will perform a physiological study in 40 patients. These patients will be assessed in the immediate postoperative period and HFNC will be compared to conventional face-mask therapy.


Clinical Trial Description

Single centre, physiological crossover clinical trial in 40 patients in the immediate postoperative period after lung resection, equipped with a NAVA catheter to monitor diaphragm electrical activity (EAdi) and assess the effects that HFNC have on the respiratory drive and work of breathing as compared to conventional facemask oxygen therapy. Once in the postoperative care unit (PACU) and 1) after recovery from anaesthesia, 2) cardiorespiratory stable and 3) pain-free (see below), the intervention will start. The study will assess the effect of HFNC and oxygen via face mask on EAdi and diaphragm function, as measured by ultrasonography. HFNC and oxygen via face mask order will be randomized in a sequence (A-B or B-A) with the aid of a website (www.randomization.com). Each intervention will last for 30 minutes. The oxygen-inspired fraction (FiO2) will be adjusted to maintain a pulse oximetry (SpO2) between >92%. In the case of the high-flow nasal cannula, the study will be carried out with a flow of 50 L/min.

EAdi signal will be continuously monitored and its signal later exported to a laptop for further analysis. At the end of the 30-minute period, a blood sample will be obtained for gas analysis from the arterial line and the investigators will perform a diaphragm ultrasonography. Ultrasonography will consist of measurement of diaphragm thickness and thickening on the right side during quiet breathing and diaphragmatic excursion on both sides. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT03877172
Study type Interventional
Source Hospital Clinic of Barcelona
Contact Ricard Mellado Artigas, MD
Phone +34 932275400
Email rmartigas@gmail.com
Status Recruiting
Phase N/A
Start date February 17, 2020
Completion date December 2020

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