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Pronation During Veno-venous Extra Corporeal Membrane Oxygenation

Effects of Pronation on Respiratory System Mechanical Properties and Ventilation in Patients With Acute Respiratory Distress Syndrome During Vv-ecmo

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05198986
Enrollment
15
Registered
2022-01-20
Start date
2022-02-01
Completion date
2023-02-28
Last updated
2022-01-20

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

Conditions

Acute Respiratory Distress Syndrome, Acute Respiratory Failure

Keywords

Extra Corporeal Membrane Oxygenation, Prone Position

Brief summary

The Acute Respiratory Distress Syndrome (ARDS) is defined by a recent (within 1 week) respiratory failure, not fully explained by cardiac failure or fluid overload. ARDS is also characterized by bilateral opacities at the chest imaging, with an alteration of the oxygenation while positive end-expiratory pressure equal or greater than 5 cmH2O is applied. Severe ARDS is characterized by a high mortality. In the most severe ARDS patients, venovenous extracorporeal membrane oxygenation (vv-ECMO) is increasingly accepted as a mean to support vital function, although not free from complications. In patients with severe ARDS, prone position has been used for many years to improve oxygenation. In these patients, early application of prolonged (16 hours) prone-positioning sessions significantly decreased 28-day and 90-day mortality. More recently, prone position and ECMO have been coupled as concurrent treatment. Indeed, the addition of prone positioning therapy concurrently with ECMO can aid in optimizing alveolar recruitment, and reducing ventilator-induced lung injury. Nowadays, few data exist on respiratory mechanics modifications before and after the application of prone position in patients with severe ARDS receiving vv-ECMO. The investigators have therefore designed this observational study to assess the modifications of mechanical properties of the respiratory system, ventilation and aeration distribution, and hemodynamics occurring during ECMO before and after prone position in patients with severe ARDS.

Interventions

OTHERProne Position during Extra Corporeal Membrane Oxygenation (ECMO)

Pronation will be executed according to a predefined protocol: 4 caregivers will be required for the procedure, one of them being dedicated to the management of the head of the patient, the endotracheal tube and the ventilator lines. The others will stand at each side of the bed. In the first step, the direction of the rotation will be decided giving priority to the side of the central venous lines. The patient will be then moved along the horizontal plane to the opposite side of the bed selected for the direction of rotation. In the third step, the patient will be moved in the sagittal plane and maintained in that position for a short while to attach the cardiac electrodes to her/his back and to set a new bed sheet. In the last step, the patient will be turned to the complete prone position.

Sponsors

University Magna Graecia
Lead SponsorOTHER

Study design

Observational model
CASE_ONLY
Time perspective
PROSPECTIVE

Eligibility

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

Inclusion criteria

* all adult patients with a diagnosis of severe Acute Respiratory Distress Syndrome receiving veno-venous ECMO

Exclusion criteria

* mechanical ventilation for 7 days or longer * pregnancy * body mass index (BMI) \> 45 kg/m2 * chronic respiratory failure with long-term oxygen therapy or domiciliary non-invasive ventilation * cardiac failure resulting in veno-arterial ECMO * history of heparin- induced thrombocytopenia * cancer with a life expectancy of less than 5 years * moribund condition or a Simplified Acute Physiology Score (SAPS-II) value of more than 90; * current non drug- induced coma after cardiac arrest or presence of an irreversible neurologic injury * decision to withhold or withdraw life--sustaining therapies * presence of pneumothorax and/or pulmonary emphysema * recent (1 week) thoracic surgery * presence of chest burns * inclusion in other research protocols * refusal of consent.

Design outcomes

Primary

MeasureTime frameDescription
Driving Pressure30 minutes after the prone positioningDifference between the airway plateau pressure and the total positive end-expiratory pressure after an inspiratory and expiratory hold maneuvers, respectively

Secondary

MeasureTime frameDescription
Respiratory system compliance30 minutes after the prone positioningDriving pressure to the tidal volume ratio
Cardiac output30 minutes after the prone positioningLiters of blood flow ejected from the heart per minute, measured through a pulmonary artery catheter
Pulmonary arterial pressure30 minutes after the prone positioningpulmonary arterial pressure measured through a pulmonary artery catheter
End-Expiratory Lung Impedance30 minutes after the prone positioningMeasurement of the end expiratory lung volume, as assessed by the electrical impedance tomography

Countries

Italy

Contacts

Primary ContactFederico Longhini, MD
longhini.federico@gmail.com+393475395967
Backup ContactAndrea Bruni, MD
andreabruni87@gmail.com+393401414553

Outcome results

None listed

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