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Intra-Operative Modified Ventilator Mechanical Power in Laparoscopic Bariatric Surgeries

Intra-Operative Modified Ventilator Mechanical Power as a Predictor of Postoperative Hypoxemia In Laparoscopic Bariatric Surgeries

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT07065370
Enrollment
100
Registered
2025-07-15
Start date
2023-11-30
Completion date
2023-12-30
Last updated
2025-07-15

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

Conditions

Hypoxemia, Laparoscopic Bariatric Surgeries, Obese Patients

Keywords

mechanical power, hypoxemia, morbid obese patients, laparoscopic bariatric surgeries

Brief summary

To compare the effects of two levels of mechanical power on the incidence of post-operative hypoxemia in morbid obese patients undergoing laparoscopic bariatric surgeries. Primary outcome: Incidence of postoperative hypoxemia within the first 24 hour after surgery.

Detailed description

Postoperative pulmonary complications are estimated to occur in more than 30% of patients after major surgery and are associated with increased morbidity, mortality and healthcare costs. Therefore, it is desirable to identify potentially modifiable factors that may be associated with an increased risk of Postoperative pulmonary complications. A high tidal volume, a high driving pressure, and also a high flow and a high respiratory rate can induce lung injury. Changing one of these variables could inadvertently affect the other three variables . Previous studies have focused on intraoperative lung-protective ventilation to prevent Postoperative pulmonary complications but have yielded equivocal results: the combination of lowering tidal volume and applying positive end-expiratory pressure, which resulted in lower driving pressures, improved postoperative pulmonary function and reduced major postoperative adverse events. Trials investigating single interventions were, however, nonconfirmatory: a single-center randomized controlled trial failed to demonstrate an effect of low (6 ml/kg) versus high tidal volumes (10 ml/kg) in patients undergoing surgery, .While tidal volume was the only randomized variable in these studies, there was an associated increase in respiratory rate, potentially offsetting the beneficial effect of lowering tidal volume. This illustrates the need for a unifying concept that integrates the effects of changes in multiple parameters when adjusting mechanical ventilation to reduce perioperative ventilator-induced lung injury . Recently, it has been proposed that the extent of the ventilator-induced lung injury may relate to the amount of energy transferred from the ventilator to the lungs, a concept referred to as 'mechanical power . Measurement of mechanical power is determined by a combination of factors including tidal volume, inspiratory pressure, respiratory rate and inspiratory flow rate, all of which determine the amount of energy generated during mechanical ventilation. Previous studies have demonstrated that mechanical power is associated with increased mortality in intensive care unit patients with and without Acute Respiratory Distress Syndrome . The effects of the intraoperative mechanical power on the occurrence of Postoperative pulmonary complications in abdominal surgery have not yet been investigated thoroughly. In our study, we hypothesized that decrease mechanical power of ventilator would decrease Postoperative pulmonary complications in patients undergoing laparoscopic bariatric surgery. The purpose of the study to compare the effects of two levels of mechanical power on the incidence of post-operative hypoxemia in morbid obese patients undergoing laparoscopic bariatric surgeries

Interventions

DEVICEGroup I ( volume-controlled ventilation with tidal volume 6-8ml/kg (predicted body weight) with respiratory rate 12-14 cycle/minute.

Volume-controlled ventilation with tidal volume 6-8ml/kg (predicted body weight) with respiratory rate 12-14 cycle/minute.

DEVICEGroup II: (volume-controlled ventilation with tidal volume 6-8ml/kg )

group received volume-controlled ventilation with tidal volume 6-8ml/kg predicted body weight with respiratory rate 18-20 cycle/minute

Sponsors

Tanta University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
SINGLE (Subject)

Eligibility

Sex/Gender
ALL
Age
21 Years to 60 Years
Healthy volunteers
No

Inclusion criteria

* Age 21-60 years * American society of anesthesiology physical status III * Body mass index ≥ 40 kg/m2 undergoing laparoscopic bariatric surgery.

Exclusion criteria

* Uncontrolled respiratory morbidity such as sever bronchial asthma or chronic obstructive pulmonary disease. * Patients with valvular or ischemic heart diseases, or uncontrolled hypertension * Patients with hepatic dysfunction or renal or endocrine disorders, * Patients with history of cerebrovascular disease or uncontrolled Diabetes mellitus. * Previous lung surgery * Pregnant * Patients with neuromuscular diseases

Design outcomes

Primary

MeasureTime frame
Incidence of hypoxemia24 hours postoperative

Secondary

MeasureTime frameDescription
Correlation between the intraoperative mechanical power and postoperative hypoxemia24 hours postoperativePearson correlation test was used to assess Correlation between the intraoperative mechanical power and incidence of postoperative hypoxemia

Countries

Egypt

Outcome results

None listed

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