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Ventilatory Efficiency in Critically Ill COVID-19 Patients

Ventilatory Efficiency in Critically Ill COVID-19 Patients

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04694742
Enrollment
100
Registered
2021-01-05
Start date
2020-09-01
Completion date
2021-04-15
Last updated
2021-01-05

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

ARDS

Keywords

Ventilatory ratio, Mechanical ventilation, ARDS, COVID-19, Critical illness, Dead-space

Brief summary

The new severe acute respiratory syndrome coronavirus 2019 (SARS-CoV-2) causes the illness named COVID-19, which is primarily characterized by pneumonia. As of 27 December, there have been over 79.2 million cases and over 1.7 million deaths reported since the start of the pandemic. In many cases, pneumonia evolves to acute respiratory distress syndrome (ARDS) with the need for mechanical ventilation and patient admission to intensive care unit, determining a marked increase in the need for intensive care beds worldwide. Pulmonary involvement causes predominantly hypoxemic respiratory failure. Although COVID-19 pneumonia often falls within the diagnostic criteria of ARDS, it differs from it for some peculiar pathophysiological characteristics. In particular, patients with ARDS secondary to COVID-19 often have the compliance of the respiratory system within the normal range. A significant role in the pathophysiology of hypoxemia seems to depend on vascular alterations such as altered pulmonary vascular self-regulation, pulmonary capillary leakage, and microvascular thrombosis in a complex process known as immunothrombosis. All together they act by altering the relationship between ventilation and perfusion and increasing the dead space, which ultimately results in impaired efficiency of the pulmonary ventilation. Among the various markers associated with the prognosis of patients with COVID-19, D-dimer is linked to both the inflammatory state and thrombotic phenomena and could help to identify patients at greater risk of developing early ventilation-perfusion changes. This study aims at measuring the ventilatory efficiency, assessed by Ventilatory Ratio, in critically ill, mechanically ventilated, COVID-19 patients and its correlation with plasma D-dimer and quasi-static respiratory compliance.

Interventions

Within 24h from ICU admission, the ventilatory efficiency will be assessed by the following Ventilatory Ratio equation: Ventilatory Ratio = \[minute ventilation (ml/min) × PaCO2 (mm Hg)\]/(predicted body weight × 100 × 37.5). Where PaCO2 is the partial pressure of carbon dioxide in mmHg in the arterial blood. Tha quasi-static compliance will be calculated according to the equation: C=Tidal Volume/(Paw plateau - PEEP total) where Paw plateau is the airway pressure measured during 4 seconds of inspiratory pause, PEEP total is the airway pressure measured during 4 seconds of expiratory pause. In the same time frame, complete blood count, d-dimer, sequential organ failure assessment score, blood gas analysis, haemodynamic and ventilatory parameters will be collected.

Sponsors

Ospedale Infermi Rimini
CollaboratorUNKNOWN
S. Anna Hospital
CollaboratorOTHER
Azienda Ospedaliero, Universitaria Ospedali Riuniti
CollaboratorOTHER
ASST Fatebenefratelli Sacco
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 90 Years
Healthy volunteers
No

Inclusion criteria

All of the following: * confirmed SARS-CoV-2 infection by RT-PCR on a nasopharyngeal swab * severe hypoxemia due to COVID-19 who meets the diagnostic criteria of ARDS (Berlin's definition) * invasive mechanical ventilation * patients receiving neuromuscular blocking drugs

Exclusion criteria

* history of preexisting severe hypoxemia (i.e. primary pulmonary hypertension, COPD in therapy with O2 supplementation, pulmonary fibrosis, etc.) * severe haemodynamic instability defined as: * Mean arterial pressure \< 65 mmHg despite the infusion of norepinephrine, or epinephrine, or dobutamine, or levosimendan * severe left ventricular dysfunction with ejection fraction \<20% * right ventricular failure due to pulmonary embolism

Design outcomes

Primary

MeasureTime frameDescription
Ventilatory ratio correlation24 hours from ICU admissionMeasure the correlation between ventilatory ratio, plasma D-dimer, and quasi-static compliance of the respiratory system

Secondary

MeasureTime frameDescription
Mortality30 daysMortality among subgroups stratified according to Ventilatory ratio and quasi-static respiratory compliance. Subgroup will be identified according centiles of the distribution values of 1) Ventilatory Ratio, and 2) quasi-static compliance both measured in the first 24 hours.

Countries

Italy

Contacts

Primary ContactRiccardo Colombo, M.D.
riccardo.colombo@asst-fbf-sacco.it+390239043023
Backup ContactAndrea Agarossi, M.D.

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026