Clinical Trials Logo

Clinical Trial Summary

The respiratory system receives mechanical power (MP) throughout time during mechanical ventilation. Despite its life-saving benefits, mechanical ventilation can cause ventilator-induced lung injury (VILI). Recently, VILI has been linked to mechanical power, or the amount of energy the mechanical ventilator sends to the respiratory system in a given time. The hunt for lung damage-reducing characteristics, notably after VILI and ARDS (Acute respiratory distress syndrome), has increased after Covid-19. Mechanical power must be used more to promote lung protection. We examined the effects of bilateral rectus sheath and OSTAP (Oblique Subcostal Transversus Abdominis Plane ) block on mechanically powered patients.


Clinical Trial Description

MP is the energy transmitted over time to the respiratory system during mechanical ventilation. Although mechanical ventilation is a life-supporting treatment, it has the potential to cause damage to the lung structure in a process referred to as VILI. Recently, the degree of VILI has been associated with the amount of energy transmitted to the respiratory system by the mechanical ventilator within a specific time frame, which is referred to as mechanical power. After the occurrence of Covid-19, the search for parameters to reduce lung damage, especially following VILI and ARDS, has become more prominent. In this regard, promoting lung protection requires the more widespread use of mechanical power. We aimed to investigate the effect of bilateral rectus sheath and OSTAP block applied to patients on mechanical power. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT06202040
Study type Interventional
Source Konya City Hospital
Contact
Status Completed
Phase N/A
Start date December 22, 2023
Completion date January 25, 2024

See also
  Status Clinical Trial Phase
Completed NCT04193254 - LPP , MP and DP:Relation With Mortality and SOFA in Mechanically Ventilated Patients in ER, Ward and ICU
Recruiting NCT06062212 - Effect of Transpulmonary MP on Prognosis of Patients With Severe ARDS Treated With VV-ECMO
Recruiting NCT05559970 - Inhalational Sedation and Mechanical Power N/A
Recruiting NCT03939260 - ECCO2R - Mechanical Power Study
Recruiting NCT06400095 - Ventilatory Parameters in Predicting Outcomes in ARDS Patients
Completed NCT04827927 - The Effect of Closed-Loop Versus Conventional Ventilation on Mechanical Power N/A
Recruiting NCT03616704 - Effects of Different Driving Pressure on Lung Stress, Strain and Mechanical Power in Patients With Moderate to Severe ARDS
Completed NCT05962125 - The Role of Periodic Alveolar Recruitment Maneuvers in Intraoperative Protective Ventilation N/A
Recruiting NCT06462976 - Postoperative Pulmonary Complications in Adult PNL Patients
Recruiting NCT06425354 - Use of 'Mechanical Power' as a Predictor of Increased Serum and Pulmonary Proinflammatory Cytokine Concentrations in Patients With Acute Hypoxemic Respiratory Failure: A Prospective Observational Study