Emergency Medicine Cardiac Research and Education Group




ACTION Registry
ACTION Registry®–GWTG™ is a national, risk-adjusted, outcomes-based quality improvement program that helps participating facilities measure and improve care for high-risk ACS patients with STEMI and NSTEMI. The result of the collaboration between the two leading national coronary artery disease registries, the NCDR® ACTION Registry® and the American Heart Association (AHA) Get With The GuidelinesSM-CAD Registry, ACTION Registry–GWTG will be the largest, most comprehensive national cardiovascular patient database ever developed by the medical profession.

Combining the strengths of the two programs, ACTION Registry–GWTG will collect a comprehensive set of data elements that provide healthcare professionals and their facilities with the information they need to monitor and improve adherence to the most current, science-based ACC/AHA treatment guidelines. Participation will greatly facilitate quality improvement efforts, optimize clinical care, and improve clinical outcomes for acute coronary syndrome patients.

Visit How To Join to request additional information or to download an enrollment package. Or, visit the ACTION website for more information.



A shear gradient–dependent platelet aggregation mechanism drives thrombus formation



Nat Med 2009; 15: 665–673 View citation

Platelet aggregation at sites of vascular injury is essential for hemostasis and arterial thrombosis. It has long been assumed that platelet aggregation and thrombus growth are initiated by soluble agonists generated at sites of vascular injury. By using high-resolution intravital imaging techniques and hydrodynamic analyses, we show that platelet aggregation is primarily driven by changes in blood flow parameters (rheology), with soluble agonists having a secondary role, stabilizing formed aggregates. We find that in response to vascular injury, thrombi initially develop through the progressive stabilization of discoid platelet aggregates. Analysis of blood flow dynamics revealed that discoid platelets preferentially adhere in low-shear zones at the downstream face of forming thrombi, with stabilization of aggregates dependent on the dynamic restructuring of membrane tethers. These findings provide insight into the prothrombotic effects of disturbed blood flow parameters and suggest a fundamental reinterpretation of the mechanisms driving platelet aggregation and thrombus growth.





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