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BIPAP in the Management of Acute Respiratory Distress Syndrome

Biphasic Positive Airway Pressure in the Management of Acute Respiratory Distress Syndrome: A Comparative Study

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05483959
Enrollment
40
Registered
2022-08-02
Start date
2019-04-20
Completion date
2022-07-22
Last updated
2022-08-02

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

Conditions

Mechanical Ventilation Complication

Keywords

BIPAP , ARDS

Brief summary

Evaluation of biphasic positive airway pressure as a new mode of ventilation in management of acute respiratory failure constituted in ARDS as a category of hypoxaemic respiratory failure in comparison to conventional ventilation.

Detailed description

Biphasic positive airway pressure (BIPAP) is a mode of mechanical ventilation that allow unrestricted spontaneous breathing independent of ventilator cycling, using an active expiratory valve. BIPAP mode is pressure-limited and time-cycled, Ventilation occurs via the time-cycled switching between two set pressure levels. In the absence of spontaneous breathing, this mode resemble conventional pressure controlled ventilation. A proposed advantage of BIPAP compared to conventional pressure-controlled ventilation is the improved distribution of gas to dependent lung regions as the result of spontaneous breathing enabled during the inspiratory and expiratory time cycles, so prevents atelectasis and promotes alveolar recruitment resulting in an improved ventilation-perfusion matching. ARDS is an acute diffuse, inflammatory lung injury, leading to increased pulmonary vascular permeability, increased lung weight, and loss of aerated lung tissue with hypoxemia and bilateral radiographic opacities, associated with increased venous admixture, increased physiological dead space and decreased lung compliance. In patients with ARDS, BIPAP with spontaneous breathing contributes to improved pulmonary gas exchange, systemic blood flow and oxygen supply to the tissue. This is reflected by clinical improvement in the patient's condition, which is associated with significantly fewer days on ventilatory support, earlier extubation and a shorter stay in the intensive care unit.

Interventions

OTHERBIPAP mode/SIMV PC mode

BIPAP is a mode of ventilation recently used in ARDS

Sponsors

South Valley University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
OTHER
Masking
SINGLE (Subject)

Masking description

Mechanically ventilated ARDS patients

Intervention model description

BIPAP mode of ventilation applied to 20patients , SIMV PC mode applied to the other group

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* All intubated Adult ARDS patients * ARDS is diagnosed according to berlin criteria.

Exclusion criteria

* Age \< 18 years. * Cardiac or respiratory arrest on admission. * Morbid obesity with BMI \> 40. * Acute exacerbation of IPF. * Cerebrovascular or neuro muscular disorder. 6. Diabetic ketoacidosis. 7. Hepatic or renal disease. 8.Cardiac disease.

Design outcomes

Primary

MeasureTime frameDescription
Oxygen saturation of the participants will be measured from the arterial blood gases taken from the patient and according to the range of oxygen saturation from 90 to 98% will be comparedBaselineBase line oxygen saturation of BIPAP group and SIMV PC group patients will be taken from the arterial blood gases and recorded from the range of oxygen saturation from 90 to 98% and will be compared between both groups
Blood pressure in mm Hg of BIPAP group and SIMV PC group will be measured by the sphygmomanometer deviceBase lineBlood pressure in mm Hg of BIPAP group and SIMV PC group will be measured by the sphygmomanometer device and will be compared between both groups according to the normal range of systolic blood pressure from 90mmHg to 130mmHg and diastolic blood pressure from the range of 60 mmHg to 90 mmHg
Lung mechanics including the tidal volume by ml per kg ideal body weight of BIPAP and SIMV PC groups will be taken from the ventilators and recorded24 hours after mechanical ventilationLung mechanics including the tidal volume by ml per kg ideal body weight of BIPAP and SIMV PC groups will be taken from the ventilators and compared between both groups according to the range of tidal volume from 4 to 8 ml per kg ideal body weight

Secondary

MeasureTime frameDescription
Duration of mechanical ventilation of BIPAP group6 weeksThe duration of mechanical ventilation duration had been compared between both groups
The duration of anesthesia in days2 weeksThe duration of anesthesia in days on BIPAP group willassessed between BIPAP group and SIMV PC group

Countries

Egypt

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 9, 2026