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Effect of Mechanical Power-based Lung-protective Ventilation During One-lung Ventilation
Sponsor: Samsung Medical Center
Summary
The goal of this clinical trial is to determine whether a mechanical power-based lung-protective ventilation strategy during one-lung ventilation reduces the incidence of postoperative pulmonary complications in adult patients undergoing lung resection surgery. Mechanical power during pressure-regulated volume control mode is calculated using the formula below. Mechanical power (J/min) = 0.098 x respiratory rate x tidal volume x (inspiratory airway pressure above positive end-expiratory pressure + positive end-expiratory pressure) The main questions it aims to answer are: * Does a mechanical power-based lung-protective ventilation strategy significantly lower the incidence of major postoperative pulmonary complications compared to conventional ventilation? * How does this strategy impact intraoperative hemodynamic and vital profiles (e.g., blood pressure, cardiac output, vasopressor requirements, and blood oxygen saturation) during one-lung ventilation? Participants will: * Be randomized to receive either a mechanical power-based lung-protective ventilation strategy or a conventional lung-protective ventilation strategy exclusively during one-lung ventilation. * Be closely monitored for the occurrence of major postoperative pulmonary complications (atelectasis, pneumonia, acute respiratory distress syndrome, and pulmonary aspiration) and adverse events for 1 month postoperatively.
Official title: Incidence of Postoperative Pulmonary Complications Between Mechanical Power-based Versus Conventional Lung Protective Ventilation During One-lung Ventilation: a Randomized Controlled Trial
Key Details
Gender
All
Age Range
19 Years - Any
Study Type
INTERVENTIONAL
Enrollment
164
Start Date
2026-08-30
Completion Date
2027-09-30
Last Updated
2026-08-27
Healthy Volunteers
No
Interventions
Mechanical power-based lung protective ventilation
Initial Settings 1\) Tidal Volume: 4-6 mL/kg of predicted body weight 2) Positive End-Expiratory Pressure: Set to the value that minimizes driving pressure 3) Respiratory Rate: Adjusted to maintain an end-tidal carbon dioxide of 35-45 mmHg Protocol 1. If mechanical power exceeds 7 J/min, decrease the respiratory rate by 1 and reduce the tidal volume by 5%, then maintain these settings for 1 minute. 2. If mechanical power remains above 7 J/min after 1 minute, further decrease the respiratory rate by 1 and reduce the tidal volume by an additional 5%, then maintain for 1 minute. 3. If end-tidal carbon dioxide exceeds 50 mmHg, perform arterial blood gas analysis to check arterial pH. 4. If arterial pH drops below 7.2, the intervention will be discontinued, and the patient will be withdrawn from the study and treated with conventional treatment.
Conventional lung protective ventilation
Ventilator Settings * Tidal Volume: 4-6 mL/kg of predicted body weight * Positive End-Expiratory Pressure: 5 cmH2O * Respiratory Rate: Adjusted to maintain an end-tidal carbon dioxide of 35-45 mmHg
Locations (1)
Samsung Medical Center
Seoul, South Korea