Emergency Medicine Cardiac Research and Education Group


CRUSADE
CRUSADE Quality Improvement Initiative

Launched in 2001, CRUSADE is a national quality improvement initiative, designed to increase the practice of evidence-based medicine for patients diagnosed with non-ST segment elevation acute coronary syndromes (NSTE ACS) (i.e., unstable angina or NSTE myocardial infarction).

Through a continuous cycle of data collection, performance feedback and quality improvement interventions, over 500 participating sites in the US are consistently improving the standard of care for patients with NSTE ACS. Because of the dedication of the participating hospitals to this mission, over 200,000 cases have been submitted to the CRUSADE database. For more information visit the CRUSADE website.

In 2007, a milestone occurred. Duke Clinical Research Institute and its CRUSADE leadership joined forces with the American College of Cardiology Foundation's National Cardiovascular Data Registry (NCDR™) to launch a new initiative to improve the safety and outcomes for patients with ACS through the development of NCDR-ACTION™. This initiative will combine the data collection and quality reporting features of two leading national ACS registries to create the largest and most comprehensive national cardiovascular patient database ever developed. For more information visit the NCDR-ACTION Registry™ visit the website or call 800-257-4737 for more information.




Effect on Treatment Delay of Prehospital Teletransmission of 12-Lead Electrocardiogram to a Cardiologist for Immediate Triage and Direct Referral of Patients With ST-Segment Elevation Acute Myocardial Infarction to Primary Percutaneous Coronary Intervention



Am J Cardiol 2008;101:941-946 View citation

Prehospital electrocardiogram (ECG) transmission to hospitals was shown to reduce time to treatment in patients with acute myocardial infarction. However, new technologies allow transmission directly to a mobile unit so an attending physician can respond irrespective of presence within or outside the hospital. The primary study purpose was to determine whether delays could be decreased in an urban area by transmitting a prehospital 12-lead ECG directly to the attending cardiologist’s mobile telephone for rapid triage and transport to a primary percutaneous coronary intervention (PCI) center, bypassing local hospitals and emergency departments. A secondary purpose was to describe whether transport would be safe despite longer transport times. During a 2-year period, patients with acute nontraumatic chest pain had their prehospital ECG transmitted directly to a cardiologist’s mobile telephone. Time to treatment was compared with historic controls. After ECG evaluation, 168 patients (30%) were referred directly for PCI, and 146 of these (87%) underwent emergent catheterization. In referred patients, median time from 911 call to PCI was significantly shorter than in the control group (74 vs 127 minutes; p <0.001). Accordingly, door-to-PCI time was 63 minutes shorter for referred patients versus controls (34 vs 97 minutes; p <0.001). During transport, 7 patients (4%) experienced ventricular fibrillation; 3 patients (2%), ventricular tachycardia; and 1 patient (0.5%), pulseless electrical activity, including 2 deaths (1%) caused by treatment-resistant arrhythmia. In conclusion, transmission of a prehospital 12-lead ECG directly to the attending cardiologist’s mobile telephone decreased door-to-PCI time by >1 hour when patients were transported directly to PCI centers, bypassing local hospitals. Ambulance transport seems safe despite longer transport times.




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