Radiation safety and vascular access: attitudes among cardiologists worldwide.
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[1] D. Angiolillo,et al. Operator radiation exposure and physical discomfort during a right versus left radial approach for coronary interventions: a randomized evaluation. , 2014, JACC. Cardiovascular interventions.
[2] Steven M Bradley,et al. Change in Hospital-Level Use of Transradial Percutaneous Coronary Intervention and Periprocedural Outcomes: Insights from the National Cardiovascular Data Registry , 2014, Circulation. Cardiovascular quality and outcomes.
[3] Mitchell W Krucoff,et al. The Learning Curve for Transradial Percutaneous Coronary Intervention Among Operators in the United States: A Study From the National Cardiovascular Data Registry , 2014, Circulation.
[4] B. Hiebert,et al. Radiation dose reduction in the cardiac catheterization laboratory utilizing a novel protocol. , 2014, JACC. Cardiovascular interventions.
[5] R. Mongrain,et al. Effectiveness of low rate fluoroscopy at reducing operator and patient radiation dose during transradial coronary angiography and interventions. , 2014, JACC. Cardiovascular interventions.
[6] W. Hoffmann,et al. Efficacy of a minicourse in radiation-reducing techniques in invasive cardiology: a multicenter field study. , 2014, JACC. Cardiovascular interventions.
[7] C. Indolfi,et al. Left radial access for percutaneous coronary procedures: from neglected to performer? A meta-analysis of 14 studies including 7,603 procedures. , 2014, International journal of cardiology.
[8] B. Rangan,et al. A randomized comparison of the transradial and transfemoral approaches for coronary artery bypass graft angiography and intervention: the RADIAL-CABG Trial (RADIAL Versus Femoral Access for Coronary Artery Bypass Graft Angiography and Intervention). , 2013, JACC. Cardiovascular interventions.
[9] A. Shroff,et al. A review of radiation exposures associated with radial cardiac catheterisation. , 2013, EuroIntervention : journal of EuroPCR in collaboration with the Working Group on Interventional Cardiology of the European Society of Cardiology.
[10] John C. Messenger,et al. Adoption of Radial Access and Comparison of Outcomes to Femoral Access in Percutaneous Coronary Intervention: An Updated Report from the National Cardiovascular Data Registry (2007–2012) , 2013, Circulation.
[11] Juan F Granada,et al. Safety and feasibility of robotic percutaneous coronary intervention: PRECISE (Percutaneous Robotically-Enhanced Coronary Intervention) Study. , 2013, Journal of the American College of Cardiology.
[12] P. Gao,et al. Effect of radial versus femoral access on radiation dose and the importance of procedural volume: a substudy of the multicenter randomized RIVAL trial. , 2013, JACC. Cardiovascular interventions.
[13] Binita Shah,et al. Radiation exposure during coronary angiography via transradial or transfemoral approaches when performed by experienced operators. , 2013, American heart journal.
[14] R. Diletti,et al. Operator exposure to x-ray in left and right radial access during percutaneous coronary procedures: OPERA randomised study , 2013, Heart.
[15] M. Bell,et al. Radiation dose reduction in the invasive cardiovascular laboratory: implementing a culture and philosophy of radiation safety. , 2012, JACC. Cardiovascular interventions.
[16] B. Gersh. Radial versus femoral access for coronary angiography and intervention in patients with acute coronary syndromes (RIVAL): a randomised, parallel group, multicentre trial , 2012 .
[17] G. Sangiorgi,et al. Reduction of scatter radiation during transradial percutaneous coronary angiography: A randomized trial using a lead‐free radiation shield , 2012, Catheterization and cardiovascular interventions : official journal of the Society for Cardiac Angiography & Interventions.
[18] John J. Graham,et al. Characterization of Operator Learning Curve for Transradial Coronary Interventions , 2011, Circulation. Cardiovascular interventions.
[19] Sunil V. Rao,et al. Operator Radiation Exposure During Percutaneous Coronary Procedures Through the Left or Right Radial Approach: The TALENT Dosimetric Substudy , 2011, Circulation. Cardiovascular interventions.
[20] S. Yusuf,et al. Impact of transradial and transfemoral coronary interventions on bleeding and net adverse clinical events in acute coronary syndromes. , 2011, EuroIntervention : journal of EuroPCR in collaboration with the Working Group on Interventional Cardiology of the European Society of Cardiology.
[21] D. Kirsch,et al. Comparison of a suspended radiation protection system versus standard lead apron for radiation exposure of a simulated interventionalist. , 2011, Journal of vascular and interventional radiology : JVIR.
[22] Changchun Xie,et al. Radial artery access as a predictor of increased radiation exposure during a diagnostic cardiac catheterization procedure. , 2011, JACC. Cardiovascular interventions.
[23] E. Romagnoli,et al. Transradial approach (left vs right) and procedural times during percutaneous coronary procedures: TALENT study. , 2011, American heart journal.
[24] Olivier F Bertrand,et al. Transradial approach for coronary angiography and interventions: results of the first international transradial practice survey. , 2010, JACC. Cardiovascular interventions.
[25] J. Neill,et al. Comparison of radiation dose and the effect of operator experience in femoral and radial arterial access for coronary procedures. , 2010, The American journal of cardiology.
[26] J. Núñez,et al. Acceso radial izquierdo en la práctica diaria. Estudio aleatorizado para comparar los accesos femoral, radial derecho y radial izquierdo , 2009 .
[27] J. Núñez,et al. The left radial approach in daily practice. A randomized study comparing femoral and right and left radial approaches. , 2009, Revista espanola de cardiologia.
[28] D. Edwards,et al. Patient awareness and concern regarding pharmaceutical manufacturer interactions with doctors , 2009, Internal medicine journal.
[29] Salim Yusuf,et al. Radial versus femoral access for coronary angiography or intervention and the impact on major bleeding and ischemic events: a systematic review and meta-analysis of randomized trials. , 2009, American heart journal.
[30] D. Metz,et al. Comparison of operator radiation exposure with optimized radiation protection devices during coronary angiograms and ad hoc percutaneous coronary interventions by radial and femoral routes. , 2008, European heart journal.
[31] H. Lange,et al. Randomized comparison of operator radiation exposure during coronary angiography and intervention by radial or femoral approach , 2006, Catheterization and cardiovascular interventions : official journal of the Society for Cardiac Angiography & Interventions.
[32] P. Garot,et al. Comparison of transradial and transfemoral approaches for coronary angiography and angioplasty in octogenarians (the OCTOPLUS study). , 2004, The American journal of cardiology.
[33] Arrowood,et al. Operator Radiation Exposure in PTCA: Comparison of Radial and Femoral Approaches. , 1996, The Journal of invasive cardiology.