Clinical Effects of Intraoperative Heat and Moisture Exchange Systems During Thoracic Surgery: A Prospective Observational Cohort Study
Clinical Effects of Active Versus Passive Intraoperative Respiratory Gas Humidification During Video-Assisted Thoracoscopic Surgery: A Prospective Single-Center Observational Cohort Study
Marmara University
200 participants
Jul 25, 2026
OBSERVATIONAL
Conditions
Summary
General anesthesia with endotracheal intubation bypasses the physiological warming and humidification functions of the upper airway, allowing cold and dry gases to reach the lower respiratory tract. This may impair mucociliary clearance, increase secretion viscosity, promote atelectasis, and contribute to postoperative pulmonary complications (PPCs). Patients undergoing thoracic surgery, particularly those requiring one-lung ventilation (OLV), are at increased risk for PPCs because of altered ventilation-perfusion matching, reduced functional residual capacity, and impaired secretion clearance. Although respiratory gas humidification is routinely used during anesthesia, evidence regarding the comparative clinical effects of active heated humidification (AHH) and passive heat and moisture exchangers (HMEs) during thoracic surgery remains limited. This prospective observational cohort study aims to evaluate the association between intraoperative respiratory gas humidification methods and postoperative pulmonary complications and perioperative clinical outcomes in adult patients undergoing elective video-assisted thoracoscopic surgery (VATS).
Eligibility
Inclusion Criteria5
- Patients aged 18 to 75 years
- Elective video-assisted thoracoscopic surgery (VATS)
- Lung resection requiring general anesthesia
- Planned one-lung ventilation
- Written informed consent
Exclusion Criteria5
- Emergency surgery
- Pregnancy
- Preoperative mechanical ventilation
- Previous enrollment
- Refusal to participate
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Interventions
An active heated humidification system integrated into the anesthesia breathing circuit is used during intraoperative mechanical ventilation to warm and humidify inspired respiratory gases. Device selection and clinical management are determined solely by the attending anesthesiologist according to institutional routine practice. No study-specific intervention or modification of patient care is performed.
A passive heat and moisture exchanger filter is incorporated into the anesthesia breathing circuit during intraoperative mechanical ventilation to conserve heat and moisture from exhaled gases. Device selection is based on routine clinical practice, and no intervention is assigned by the study protocol.
Locations(1)
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NCT07729319