Detection of Ischemic ST-Segment Changes Using a Novel Handheld ECG Device in a Porcine Model
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C. Slump | Alejandra Zepeda-Echavarria | M. Vos | R. R. van de Leur | R. van Es | Nynke M. de Vries | R. van der Zee | J. Jaspers | M. Boonstra | T. Wildbergh | Pieter A. Doevendans | Vera Loen
[1] G. Perkins,et al. European Resuscitation Council Guidelines 2021: Epidemiology of cardiac arrest in Europe. , 2021, Resuscitation.
[2] M. Haïssaguerre,et al. Accuracy of a Smartwatch-Derived ECG for Diagnosing Bradyarrhythmias, Tachyarrhythmias, and Cardiac Ischemia. , 2021, Circulation. Arrhythmia and electrophysiology.
[3] E. Wolf,et al. Animal models of arrhythmia: classic electrophysiology to genetically modified large animals , 2019, Nature Reviews Cardiology.
[4] Agam Bansal,et al. Portable out‐of‐hospital electrocardiography: A review of current technologies , 2018, Journal of arrhythmia.
[5] G. Heusch,et al. Reflection of Cardioprotection by Remote Ischemic Perconditioning in Attenuated ST-Segment Elevation During Ongoing Coronary Occlusion in Pigs: Evidence for Cardioprotection From Ischemic Injury , 2018, Circulation research.
[6] C. Reid,et al. Coronary intervention door-to-balloon time and outcomes in ST-elevation myocardial infarction: a meta-analysis , 2018, Heart.
[7] Wataru Shimizu,et al. The spectrum of epidemiology underlying sudden cardiac death. , 2015, Circulation research.
[8] S. Sonnad,et al. Using EMS Dispatch to Trigger STEMI Alerts Decreases Door-to-Balloon Times , 2015, The western journal of emergency medicine.
[9] Harlan M Krumholz,et al. Relation between door-to-balloon times and mortality after primary percutaneous coronary intervention over time: a retrospective study , 2015, The Lancet.
[10] Rachel Phillips,et al. Inter-rater reliability of J-point location and measurement of the magnitude of ST segment elevation at the J-point on ECGs of STEMI patients by emergency department doctors , 2015, Emergency Medicine Journal.
[11] Sotirios Nedios,et al. Precordial electrode placement for optimal ECG monitoring: implications for ambulatory monitor devices and event recorders. , 2014, Journal of electrocardiology.
[12] J. Tamayo-Sarver,et al. Effect of Prehospital Cardiac Catheterization Lab Activation on Door-to-Balloon Time, Mortality, and False-Positive Activation , 2014, Prehospital emergency care : official journal of the National Association of EMS Physicians and the National Association of State EMS Directors.
[13] J. Cinca,et al. Mechanism and diagnostic potential of reciprocal ECG changes induced by acute coronary artery occlusion in pigs. , 2013, Heart rhythm.
[14] K. Polderman,et al. Is therapeutic hypothermia immunosuppressive? , 2012, Critical Care.
[15] J. M. Di Diego,et al. Ischemic ventricular arrhythmias: experimental models and their clinical relevance. , 2011, Heart rhythm.
[16] D. Carrié,et al. ST-segment changes after direct current external cardioversion for atrial fibrillation. Incidence, characteristics and predictive factors. , 2011, International journal of cardiology.
[17] C. Terkelsen,et al. System delay and mortality among patients with STEMI treated with primary percutaneous coronary intervention. , 2010, JAMA.
[18] C. Cannon,et al. Utilization and impact of pre-hospital electrocardiograms for patients with acute ST-segment elevation myocardial infarction: data from the NCDR (National Cardiovascular Data Registry) ACTION (Acute Coronary Treatment and Intervention Outcomes Network) Registry. , 2009, Journal of the American College of Cardiology.
[19] A. Go,et al. Reducing delay in seeking treatment by patients with acute coronary syndrome and stroke: a scientific statement from the American Heart Association Council on Cardiovascular Nursing and Stroke Council. , 2006, The Journal of cardiovascular nursing.
[20] A. Weiss,et al. ST-segment elevation post cardioversion: a current of injury without injury. , 2006, International journal of cardiology.
[21] H. Wellens,et al. A comparison of electrocardiographic changes during reperfusion of acute myocardial infarction by thrombolysis or percutaneous transluminal coronary angioplasty. , 2000, American heart journal.
[22] Robert H. Anderson,et al. Anatomy of the pig heart: comparisons with normal human cardiac structure , 1998, Journal of anatomy.
[23] J. Figueras,et al. Additional elevation of the ST segment: a possible early electrocardiographic marker of experimental myocardial reperfusion. , 1996, Cardiovascular research.
[24] H. Wellens,et al. Electrocardiographic diagnosis of reperfusion during thrombolytic therapy in acute myocardial infarction. , 1995, The American journal of cardiology.
[25] R. Coronel,et al. T-Q, S-T segment mapping and hyperemia in reperfused pig heart with ischemic preconditioning. , 1992, The American journal of physiology.
[26] A. Keynan,et al. "Intermittent" and transient ST-segment elevation following direct current cardioversion. , 1988, International journal of cardiology.
[27] C. Granger,et al. Association of Rapid Care Process Implementation on Reperfusion Times Across Multiple ST-Segment–Elevation Myocardial Infarction Networks , 2017, Circulation. Cardiovascular interventions.
[28] C. Don,et al. Diagnostic time course, treatment, and in-hospital outcomes for patients with ST-segment elevation myocardial infarction presenting with nondiagnostic initial electrocardiogram: a report from the American Heart Association Mission: Lifeline program. , 2013, American heart journal.
[29] C. Terkelsen. The reperfusion ST-peak in acute myocardial infarction. , 2011, Journal of Electrocardiology.
[30] P. Savard,et al. Body surface potential mapping of ST-segment shift in patients undergoing percutaneous transluminal coronary angioplasty. Correlations with the ECG and vectorcardiogram. , 1993, Journal of electrocardiology.
[31] I. V. Van Gelder,et al. Incidence and clinical significance of ST segment elevation after electrical cardioversion of atrial fibrillation and atrial flutter. , 1991, American heart journal.