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NCT Number: NCT06929078

Role of Individualized PEEP Vs Fixed PEEP in Mechanical Ventilation During Laparoscopic Surgeries

To compare the effects of Individualized positive end-expiratory pressure with recruitment maneuver on respiratory parameters and oxygenation in mechanical ventilation during laparoscopic surgeries with the fixed positive end-expiratory pressure and conventional mechanical ventilation without positive end-expiratory pressure.

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Key information

Age range

25 year–65 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Combined Military Hospital Bahawalpur

Bahawalpur, Punjab Province, 63100, Pakistan

Location contact

Colonal Naseem Abbas, FCPS Anesthesiology

PRINCIPAL_INVESTIGATOR

Dr Noor-Ul-Ain Registrar Anesthesia, MBBS

PRINCIPAL_INVESTIGATOR

Dr. Noor-Ul-Ain Registrar Anesthesia, MBBS

CONTACT

[email protected]

+92332-6594515

About this study

Thus study will compare the effects different methods of positive end-expiratory pressure administration in mechanical ventilation on respiratory parameters and oxygenation of the patients undergoing laparoscopic surgeries. There will be three groups of patients which will be as follows: Individualized positive end-expiratory pressure with recruitment maneuver group, fixed positive end-expiratory pressure group and conventional mechanical ventilation. Respiratory parameters; dynamic compliance, driving pressure and ratio of partial pressure of oxygen to fractional inspiration of oxygen will be measured. Mechanical ventilation respiratory parameters i .e. peak pressure, plateu pressure , dynamic compliance and driving pressure will be measured from ventilator machine. P/F ratio( Ratio of partial pressure of oxygen to inspiratory fraction of oxygen) will be measured by taking blood samples for arterial blood gas analysis.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • 1. Age Limit : 25 years to 65 years
  • Patients undergoing laparoscopic suregeries
  • ASA 1-3

Exclusion criteria

  • 1. Hemodynamic instability 2. Bronchospam 3. Patients having COPD 4. History of pulmonary bulla 5. Patients having history of pneumothora

Treatment and study plan

Protective lung ventilation methods with different positive end-expiratory pressure during Laparoscopic Surgeries

Other

Protective lung ventilation methods with positive end-expiratory pressure help in prevention of atelectasis and improvement of intraoperative ventilator parameters e.g low driving pressure and improved dynamic compliance resulting in better oxygenation of lungs ere will be three groups in this study. Individualized positive end-expiratory pressure with recruitment maneuver and fixed positive end-expiratory pressure will be interventional groups. They will be compared with conventional ventilation group in which no additional positive end-expiratory pressure will be applied. The effects on respiratory parameters and oxygenation of patients will be compared for each group. This study will determine which method of positive end-expiratory pressure is superior and how it differs from conventional ventilation for prevention of atelectasis induced by pneumoperitonium and improvement of respiratory mechanical parameters and oxygenation in Mechanical ventilation during laparoscopic surgeries.

Other names: Application of possitive end expiratory pressure during laparoscopic surgeries, Individual PEEP with recruitment maneuver, Fixed PEEP, Protective lung ventilation, Different positive end-expiratory pressure strategies

Primary outcomes

  1. Driving pressure

    Time frame: 10 minutes after induction of general anesthesia, 10 minutes after pneumoperitonium creation and 10 minutes before extubation of patient

    Driving pressure is defined as airway plateau pressure minus positive end-expiratory pressure and reflects the degree of ventilator induced trauma. Airway plateau pressure and positive end-expiratory values will be taken from ventilator monitor.

  2. Dynamic compliance of lungs

    Time frame: 10 minutes after induction of general anesthesia, 10 minutes after pneumoperitonium creation and 10 minutes before extubation of patient

    Dynamic compliance is change in lung volume by the change in pressure in the presence of airflow and is calculated by dividing tidal volume of a breath with difference between peak pressure of airway and positive end-expiratory pressure. Tidal volume, peak airway pressure and positive end-expiratory pressure will be noted from ventilator machine monitor.

  3. Oxygenation Index

    Time frame: 10 minutes after induction of general anesthesia and 10 minutes before extubation of patient

    Oxygenation index is calculated by following formula:

    OI = Mean Airway Pressure × FiO2 × 100 ÷ PaO2 FiO2 (fractional inspiration of oxygen) and PaO2 (partial pressure of oxygen) will be recorded from arterial blood gas analysis.

Study contacts

Contact information is provided by the study sponsor or research team.

Dr Smavia Aslam, MBBS

CONTACT

[email protected]

+92312-7125450

Dr. Noor-Ul-Ain, MBBS

CONTACT

[email protected]

+92332-6594515

Sponsors and collaborators

Lead sponsor

Noor-Ul-Ain

Other

Registry information

Official study title

Role of Individualized Positive End-expiratory Pressure Versus Fixed Positive End-expiratory Pressure in Mechanical Ventilation During Laparoscopic Surgeries

Important dates

Study start
2025
Primary completion
2025
Study completion
2025
First posted
Apr 16, 2025
Registry last updated
Apr 16, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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