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Tundra lists 2 ENDOBRONCHIAL ULTRASOUND - TRANSBRONCHIAL NEEDLE ASPIRATION clinical trials. Each listing includes eligibility criteria, study locations, and direct links to research sites in the Tundra directory.
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NCT07677982
Consent Understanding and Propofol Requirement During Endobronchial Ultrasound
The goal of this observational study is to learn whether a participant's understanding of the informed consent information is related to the amount of propofol needed during endobronchial ultrasound (EBUS). EBUS is a procedure that uses a thin camera and ultrasound to look at lymph nodes and other areas inside the chest. Propofol is a sedative medicine used to help participants stay comfortable during the procedure. Before EBUS, all participants will receive the usual information about the procedure as part of routine care. After this routine consent process, participants will answer short questions about what they understood. They will also answer questions about their anxiety before the procedure. The study will not change the usual consent process, sedation plan, or medical care. During EBUS, participants will receive usual sedation and monitoring according to routine clinical practice. The research team will record how much sedative medicine is used, whether extra sedation is needed, whether any important clinical events occur, and how participants recover after sedation. The main question is whether participants who understand the consent information better need less propofol during EBUS.
Gender: All
Ages: 18 Years - Any
Updated: 2026-08-25
1 state
NCT07587736
The Role of Ultrasonographic Tracheal Measurements in Predicting Hypoxemia During Endobronchial Ultrasound-Guided Transbronchial Needle Aspiration
Bronchoscopic procedures performed under endobronchial ultrasound (EBUS) guidance are widely used minimally invasive diagnostic methods for the evaluation of mediastinal lymph nodes. Endobronchial Ultrasound-Guided Transbronchial Needle Aspiration (EBUS-TBNA) is an indicated procedure for the diagnosis, staging, and histopathological characterization of primary or metastatic tumors. The procedure is generally performed under moderate or deep sedation to enhance patient comfort and optimize procedural success. Deep sedation has been shown to be a safe and effective approach in terms of respiratory complications in both younger and elderly patients. However, hypoxemia may develop during EBUS procedures due to mechanisms such as mechanical airway obstruction, sedation-related ventilatory depression, and ventilation-perfusion mismatch. A decrease in oxygen saturation is frequently observed during bronchoscopic procedures, with reported rates of up to 94%. Studies have also reported a hypoxemia rate of approximately 25% during EBUS, even with the use of a nasopharyngeal oxygen cannula. Therefore, maintaining adequate oxygenation throughout the procedure is of critical importance. In patients receiving sedation under spontaneous respiration, oxygen support is typically provided via low-flow systems such as nasal cannulae, which can generally deliver flows of up to 15 L/min. It has been reported that a fiberoptic bronchoscope occupies approximately 10% of the tracheal cross-sectional area and about 15% at the level of the cricoid ring, leading to partial obstruction. EBUS endoscopes have a larger outer diameter and, in addition, may exert more pronounced negative effects on respiratory mechanics due to the balloon mechanism used. The outer diameter of EBUS bronchoscopes typically ranges between 6.2 and 6.7 mm, mechanically occupying a significant portion of the tracheal lumen. This may restrict tracheal airflow, leading to partial obstruction and consequently predisposing to hypoxemia. Therefore, identifying objective anatomical predictors that can predict the development of hypoxemia is of clinical importance. However, to the best of our knowledge, no study in the literature has statistically investigated the relationship between tracheal measurements and hypoxemia occurring during EBUS. In this study, the investigators aim to investigate the relationship between pre-procedural tracheal diameter measured by ultrasonography (USG) and the EBUS outer diameter/tracheal diameter ratio (airway occupancy ratio) with the development of hypoxemia during the procedure in patients undergoing EBUS-TBNA. Additionally, it is aimed to determine the optimal tracheal diameter cutoff value that may predict the development of hypoxemia. Study Design and Patient Population This study will be conducted in accordance with the Declaration of Helsinki and will be carried out at SBÜ Ankara Atatürk Sanatoryum Training and Research Hospital after obtaining approval from the institutional ethics committee. The study is planned as a prospective observational cohort study. Adult patients scheduled to undergo EBUS-TBNA will be included. The following parameters will be recorded: * Age * Sex * Body mass index (BMI) * FEV1 value * Baseline SpO₂ * Lowest recorded SpO₂ * Systolic/diastolic/mean arterial blood pressure and heart rate measured at 10-minute intervals during the procedure * Sedative drug doses * Procedure duration * Tracheal diameter measured by ultrasonography (USG) * Airway occupancy ratio (EBUS outer diameter / narrowest tracheal diameter measured by USG) * Duration and total number of hypoxic episodes during the procedure * Requirement for airway interventions (jaw thrust, mask ventilation, intubation, etc.) * Whether nasal oxygen flow was increased in case of hypoxemia, and if so, by how many L/min * Presence of cough, hiccups, secretions requiring aspiration, bronchospasm, and procedure-related bleeding * Whether the procedure was interrupted
Gender: All
Ages: 18 Years - Any
Updated: 2026-05-14