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Electrical Impedance Tomography in One-Lung Ventilation

Tidal Volume and PEEP Titration in One-Lung Ventilation With Electrical Impedance Tomography

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03728010
Enrollment
20
Registered
2018-11-01
Start date
2018-12-07
Completion date
2024-01-31
Last updated
2023-05-12

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

Conditions

Ventilator Lung

Keywords

Electrical impedance tomography, One-lung ventilation, Protective ventilation, Ventilator- Induce Lung injury

Brief summary

Mechanical ventilation can cause damage to the lung parenchyma, this is known as ventilatory induce lung injury (VILI).To avoid this damage, ventilatory strategies have been created, focused on the reduction of tidal volume, airway pressures and use of PEEP (positive end-expiratory pressure), which together are called protective ventilation. Although ventilation with protective parameters seems to reduce VILI in one-lung ventilation, the optimal parameters are not clear.

Detailed description

This research aims to describe the ventilation, perfusion and pulmonary mechanics on one-lung ventilation with different levels of tidal volume and PEEP. An extreme situation of VILI occurs in thoracic surgery, where the atelectasis of a lung is required, ventilating throughout the surgery only the contralateral one. This generates an inflammatory state, with the release of alveolar cytokines from both the non-ventilated and ventilated lungs, which potentiates the development of damage in the lung parenchyma. In addition, one lung ventilation has traditionally been performed with high tidal volume (Vt) values and low PEEP. In this context, the development of VILI is even more probable, so extreme measures of protection in this kind of ventilation are necessary. The electrical impedance tomography will allow the investigators to obtain a visual and quantitative representation of the areas of ventilation and perfusion of the lung. By relating the tidal volume and PEEP with the tomographic results, it is expected to define mechanical ventilation parameters that achieve the best ventilation/perfusion ratio for patients in one-lung ventilation. Specifically, analyze the distribution and deformation of the ventilated areas in the different lung regions and its correlation with respiratory mechanics and volumetric capnography. This will allow the investigators to make a better definition of the tidal volume and PEEP in patients undergoing one-lung ventilation. .

Interventions

DIAGNOSTIC_TESTElectrical impedance tomography. Pulmonary mechanics measurement.Arterial gas measurement. Esophageal pressure measurement

After general anesthesia, patients will be ventilated with three tidal volume level (4, 6 and 8 cc / Kg / IBW), in two levels of PEEP, 6 cm2 H20, and best PEEP, the latter obtained after a recruitment maneuver and decremental titration.

Sponsors

University of Chile
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
No

Inclusion criteria

* ASA (American Society of Anesthesiologists) classification I-III * Age 18-75 Years * Elective thoracic surgery * One-Lung Ventilation * Healthy non ventilated lung

Exclusion criteria

* ASA classification \> III * BMI (Body mass index) \> 30 * Emergency surgery * Pregnancy * Patients includes in other protocols

Design outcomes

Primary

MeasureTime frameDescription
Arterial gas measurement20 minutes5 samples per patient
Ventilation/ perfusion ratio1 hourElectrical impedance tomography.
Pulmonary mechanics1 hourAirway pressure ,esophageal pressure measurement.

Countries

Chile

Contacts

Primary ContactRoberto Gonzalez, MD
robgonzalez@uchile.cl56999397515

Outcome results

None listed

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