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Browse 47,334 clinical trials for rheumatoid arthritis. Find studies that match your criteria and connect with research centers.
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NCT04787835
Wide-awake surgery with local anesthesia is a widely described approach to performing numerous minor hand procedures, such as tendon repairs and percutaneous fracture pinning, but is less frequently used for longer procedures such as open reduction internal fixation (ORIF). This is in part due to the need for a tourniquet for improved visualization, however pain-free tourniquet time with local anesthesia is roughly 20 minutes, shorter than the average time for ORIFs (Gillis), for example. While general anesthesia may still be avoided with more proximal blocks such as a brachial plexus or bier blocks, these still require presence of an anesthesiologist during the procedure, increasing human resource utilization and costs. Development of an anesthetic technique for hand surgery which could be performed by surgeons in a clinic setting, that still provides sufficiently long pain-free tourniquet times could decreases costs and wait times. The investigators hypothesize that the pain patients experience after 20 minutes of tourniquet application with local anesthetic infiltration is not due to direct pressure on the proximal arm, but rather distal digital ischemia pain. Previously, it has been shown that ultrasound-guided regional block of the median, radial, and ulnar nerves in the forearm is effective analgesia for awake hand surgery (Winter). Currently, there are no randomized studies investigating if forearm nerve blocks can prolong pain-free tourniquet time compared to local anesthesia infiltration, by blocking this ischemic pain in the distal arm. The investigators' objective is therefore to determine if forearm nerve blocks prolong pain-free tourniquet time compared to local anesthetic infiltration.
NCT04657393
Over the last decades, research in cardiopulmonary resuscitation was primarily focused on uninterrupted chest compressions to restore sufficient circulation. Ventilation during ongoing chest compressions was regarded as potentially deleterious and thus not given any major scientific focus. Current guidelines advise that ventilation be monitored by end-tidal CO2 and emphasize that hyperventilation be avoided. Recent findings from arterial blood gas analyses showed high levels of arterial pCO2, resulting in a frequent occurrence of hypercapnic acidosis, which may be caused by iatrogenic hypoventilation. Ventilation during ongoing chest compressions can be hard to achieve, as nearly every breath may be terminated by simultaneous chest compressions. In case of bag ventilation the applied tidal volumes have not yet been measured und mechanical ventilators so far were not able to ventilate during chest compressions, because pressure limit settings induced termination of inspiration. The aim of this study is to provide patients with the best possible ventilation, even under ongoing chest compressions. Patients are ventilated with a new turbine-driven ventilator (Monnal T60, Air Liquide, France), which can deliver adequate tidal volumes within a very short inspiratory phase due to the inspiratory flow of \> 200l/min. Thus, in deviation from the current recommendations, the ventilation rate can be doubled to 20/min, so that inspiration coincides with cardiac massage less often. The study compares effective ventilation volumes applied by two regimes, 10 breaths/min and 20/min.