View clinical trials related to Cardiac Arrest.
Filter by:In the U.S. alone, over 300,000 people per year have sudden out-of-hospital cardiac arrest (OHCA), and less than 1 out of 10 survive. The current standard practice for treating OHCA is to perform cardiopulmonary resuscitation (CPR) and Advanced Cardiovascular Life Support (ACLS) at the scene until either the heart is restarted or resuscitation efforts are considered hopeless and discontinued. An alternative strategy for those with refractory OHCA is expedited transport with ongoing mechanical CPR to an Emergency Department capable of performing extracorporeal cardiopulmonary resuscitation (ECPR). The purpose of study is to test if this strategy is feasible and beneficial.
To determine the pharmacokinetics of epinephrine during cardiac arrest.
This study is designed to assess the effect of cerebral oxygen saturation as an early predictor of neurological outcomes in patients undergoing therapeutic hypothermia after cardiac arrest
Cardiac arrest is handled by cardiopulmonary resuscitation which is a time critical emergency situation. The actions during resuscitation are lead by international guidelines. Traditionally, the main focus of the training has been on medical knowledge and technical skills (TS). Nowadays non-technical skills (NTS), such as communication, teamwork behaviour, and leadership, are considered at least equally important. The aim of this study is to evaluate both TS and NTS of the resuscitation team during real-life resuscitation situations using a validated assessment tool. The association between TS and NTS will be analyzed. Findings from this study may help to recognize the possible weaknesses and issues which could be improved by training. Hypothesis is that that TS are probably in a high level, but some improvement points of NTS are ought to be known better. Investigators hypothesis that the good NTS performance in resuscitation is accompanied by good TS performance.
This multicenter randomized trial will employ in-situ cardiac arrest simulations ("mock codes") to test whether using telemedicine technology to add an intensive care physician as the "copilot" for cardiac arrest resuscitation teams influences chest compression quality, resuscitation protocol adherence, team function, and provider experience.
The aim of our retrospective clinical study was to examine the association between agonal breathing, return of spontaneous circulation (ROSC), and long-term survival. A secondary aim was to examine role of basic life support (BLS) and response time. Our hypothesis is that agonal breathing has positive effects on both primary and secondary endpoints.
This study is to evaluate whether thiamine can increase oxygen consumption and lower lactate in patients who initially survive an in-hospital cardiac arrest. Patients who are successfully resuscitated after an in-hospital cardiac arrest and who are on mechanical ventilation in the intensive care unit will be enrolled, and will get either thiamine or placebo. Their oxygen consumption and lactate will be measured at serial time points and compared between groups. The investigators' hypothesis is that thiamine will help restore the body's ability to metabolize oxygen normally (aerobic metabolism), leading to an increase in oxygen consumption and a decrease in lactate.
To evaluate the effect of automated recording on frequency of recorded scores, number of automated notifications and serious events.
It's so important to recognize ventricular fibrillation in cardiac arrest and defibrillation early. At the same time Research findings have identified high-quality CPR with minimum interruption is critical to the success of defibrillation therapy. Both the guidelines by American Heart Association and the guidelines by European Resuscitation Council emphasize the importance of minimizing interruptions in chest compressions, specifically, duration of the pre-shock and post-shock pauses. So AHA indicate that there will be a new algorithm of VF during chest compression, which has high sensitivity and specificity. And the investigators can identify VF and defibrillate earlier. The aim of this study is to verify that if Sherlock algorithm of Philips MRx monitor/defibrillator can identify shockable rhythms during chest compression accurately.
Abstract Introduction Bystander cardiopulmonary resuscitation (CPR) can more than double the patient's chance of survival in Out-of-hospital cardiac arrest (OHCA). In Singapore, bystander CPR rate was low. Recent studies have proposed and validated the use of popular songs as aids in performing CPR. These songs may not be widely known when applied to a different population, and further, may lose popularity over time. "Count on me Singapore" (COMS) is believed to be known to over 90% of the Singapore population. Pilot data indicated that CPR performed using COMS as a mental metronome (COMSCPR) can achieve guideline-compliant rate of chest compression with lower fatigue level than CPR guided by the conventional "one-and-two-three-and" (Standard CPR). The investigators hypothesize that COMSCPR is non-inferior to Standard CPR in achieving guideline-compliant rate of chest compression. Methodology The investigators planned a prospective, randomized, crossover non-inferiority trial comparing COMS CPR and Standard CPR. 80 eligible volunteers will be recruited from a convenience sample of camp personnel from a military training camp. After a 15 minutes familiarization session, they will be randomized into two groups (A and B). Group A will proceed to perform one cycle (two minutes) of Standard CPR, while group B will proceed to perform one cycle of COMS CPR. participants will cross over to perform one cycle of the other method of CPR. After completing this second cycle, a survey form will be administered. The Laerdal SkillReporter will be used to measure the CPR performed. After a 7-14 days interval, participants will be recalled to attend a test scenario. Statistical analysis will be used to compare the two arms.