Effectiveness of an Innovative Chest Stabilizer in Rib Fracture Treatment: Impact on Respiratory Function, Complications, and Clinical Outcomes
NCT07238582
Blunt Chest Trauma, Fractures, Bone
Samsun, Turkey (Türkiye)
View Trial DetailsNCT Number: NCT07807566
Blunt chest trauma is a leading cause of emergency hospital visits and can result in severe breathing complications such as hypoxemic respiratory failure. While computed tomography (CT) scans provide detailed imaging of the chest, their routine use is limited by radiation exposure, high cost, and the inability to perform frequent bedside monitoring. Bedside lung ultrasound (LUS) is commonly used to detect structural injuries like lung contusions or collapsed lungs, but it cannot assess how well the breathing muscles are working. Because acute respiratory failure after chest trauma involves both lung tissue damage and impaired breathing muscle mechanics, combining lung ultrasound with diaphragmatic ultrasound may improve early risk assessment.
The primary purpose of this prospective cohort study is to determine whether combining point-of-care lung ultrasound with diaphragmatic ultrasound provides better early prediction of hypoxemic respiratory failure than lung ultrasound alone in adult patients with isolated blunt chest trauma.
Participants will undergo bedside lung ultrasound, diaphragmatic ultrasound, and arterial blood gas testing at four standardized time points: upon hospital admission (baseline), and at 6, 12, and 24 hours after admission. The lung ultrasound examination assesses the degree of lung tissue injury using a standardized 12-zone Lung Ultrasound Score (LUS). Diaphragmatic ultrasound measures muscle movement (diaphragmatic excursion) and contraction strength (diaphragm thickening fraction). Arterial blood gas results will be used to track oxygenation via the PaO2/FiO2 ratio, with a ratio of 300 mmHg or lower defining hypoxemic respiratory failure. All participants will also receive a standard-of-care chest CT scan as a reference comparison.
The study aims to evaluate whether this non-invasive, radiation-free bedside approach helps emergency physicians identify high-risk patients earlier, guiding timely respiratory support and intensive care triage while minimizing the need for repeated CT scans.
Trial opening soon.
Get Notified18 year and older
All sexes
Observational
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Time frame: 1 day
PaO2/FiO2 ratio will be calculated using arterial blood gas (ABG) analysis. Hypoxemic respiratory failure is defined as a PaO2/FiO2 ratio of 300 mmHg or less. Values will be measured in mmHg.
Assiut University
Other
The Additive Value of Diaphragmatic Ultrasound to Lung Ultrasound for Early Prediction of Hypoxemic Respiratory Failure Following Isolated Blunt Chest Trauma: A Prospective Cohort Study
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