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Emergency Medical Services


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survival. Resuscitation. 2018; 132:85–89.

      31 31 Bahr J, Klingler H, Panzer W, Rode H, Kettler D. Skills of lay people in checking the carotid pulse. Resuscitation. 1997; 35:23–6.

      32 32 Eberle B, Dick WF, Schneider T, Wisser G, Doetsch S, Tzanova I. Checking the carotid pulse check: diagnostic accuracy of first responders in patients with and without a pulse. Resuscitation. 1996; 33: 107–16.

      33 33 2005 American Heart Association Guidelines for Cardio‐pulmonary Resuscitation and Emergency Cardiovascular Care. Circulation. 2005; 112(24 Suppl):IV1–IV203.

      34 34 Vaillancourt C, Verma A, Trickett J, et al. Evaluating the effectiveness of dispatch‐assisted cardiopulmonary resuscitation instructions. Acad Emerg Med. 2007; 14:877–83.

      35 35 Larsen MP, Eisenberg MS, Cummins RO, Hallstrom AP. Predicting survival from out‐of‐hospital cardiac arrest: a graphic model. Ann Emerg Med. 1993; 22:1652–8.

      36 36 Valenzuela TD, Roe DJ, Cretin S, Spaite DW, Larsen MP. Estimating effectiveness of cardiac arrest interventions: a logistic regression survival model. Circulation. 1997; 96:3308–13.

      37 37 Sasson C, Increasing Cardiopulmonary Resuscitation Provision in Communities With Low Bystander Cardiopulmonary Resuscitation Rates A Science Advisory From the American Heart Association for Healthcare Providers, Policymakers, Public Health Departments, and Community Leaders. Circulation. 2013; 127:1342–50.

      38 38 Lerner EB, Rea TD, Bobrow BJ, et al., On behalf of the American Heart Association Emergency Cardiovascular Care Committee and the Council on Cardiopulmonary, Critical Care, Perioperative and Resuscitation. Emergency medical service dispatch cardiopulmonary resuscitation prearrival instructions to improve survival from out‐of‐hospital cardiac arrest: a scientific statement from the American Heart Association. Circulation. 2012; 125:1–8.

      39 39 Sayre MR, Berg RA, Cave DM, Page RL, Potts J, White RD. Hands‐only (compression‐only) cardiopulmonary resuscitation: a call to action for bystander response to adults who experience out‐of‐hospital sudden cardiac arrest. A science advisory for the public from the American Heart Association Emergency Cardiovascular Care Committee. Circulation. 2008; 117:2162–7.

      40 40 Hupfle M, Selig H, Nagele P. Chest‐compression‐only versus standard cardiopulmonary resuscitation: a meta‐analysis. Lancet. 2010; 376):1552–7.

      41 41 Bobrow BJ, Spaite DW, Berg RA, et al. Chest Compression–Only CPR by Lay Rescuers and Survival From Out‐of‐Hospital Cardiac Arrest. JAMA. 2010; 304:1447–54.

      42 42 Hallstrom A, Cobb L, Johnson E, Copass M. Cardiopulmonary resuscitation by chest compression alone or with mouth‐to‐mouth ventilation. N Engl J Med. 2000; 342:1546–53.

      43 43 Weaver WD, Cobb LA, Hallstrom AP, Fahrenbruch C, Copass MK, Ray R. Factors influencing survival after out‐of‐hospital cardiac arrest. J Am Coll Cardiol. 1986; 7:752–7.

      44 44 Diack AW, Welborn WS, Rullman RG, Walter CW, Wayne MA. An automatic cardiac resuscitator for emergency treatment of cardiac arrest. Med Instrum. 1979; 13:78–83.

      45 45 Marenco JP, Wang PJ, Link MS, Homoud MK, Estes NA 3rd. Improving survival from sudden cardiac arrest: the role of the automated external defibrillator. JAMA. 2001; 285:1193–200.

      46 46 Abella BS, Alvarado JP, Myklebust H, et al. Quality of cardiopulmonary resuscitation during in‐hospital cardiac arrest. JAMA. 2005; 293:305–10.

      47 47 Wik L, Kramer‐Johansen J, Myklebust H, et al. Quality of cardiopulmonary resuscitation during out‐of‐hospital cardiac arrest. JAMA. 2005; 293:299–304.

      48 48 Abella BS, Edelson DP, Kim S, et al. CPR quality improvement during in‐hospital cardiac arrest using a real‐time audiovisual feedback system. Resuscitation. 2007; 73:54–61.

      49 49 Kramer‐Johansen J, Myklebust H, Wik L, et al. Quality of out‐of‐hospital cardiopulmonary resuscitation with real time automated feedback: a prospective interventional study. Resuscitation. 2006; 71:283–92.

      50 50 Page RL, Joglar JA, Kowal RC, et al. Use of automated external defibrillators by a U.S. airline. N Engl J Med. 2000; 343:1210–16.

      51 51 Caffrey SL, Willoughby PJ, Pepe PE, Becker LB. Public use of automated external defibrillators. N Engl J Med. 2002; 347):1242–7.

      52 52 Kitamura T, Iwami T, Kawamura T, et al. Nationwide public‐access defibrillation in Japan. N Engl J Med. 2010; 362:994–1004.

      53 53 Mitamura H. Public access defibrillation: advances from Japan. Nat Clin Pract Cardiovasc Med. 2008; 5:690–2.

      54 54 Murakami Y, Iwami T, Kitamura T, et al. Outcomes of out‐of‐hospital cardiac arrest by public location in the public‐access defibrillation era. Circulation. 2014; 24: doi: 10.1161/jaha.113.000533.

      55 55 Bardy GH, Lee KL, Mark DB, et al. Home use of automated external defibrillators for sudden cardiac arrest. N Engl J Med. 2008; 258:1793–804.

      56 56 Klein HU, Goldenberg I, Moss AJ. Risk stratification for implantable cardioverter defibrillator therapy: the role of the wearable cardioverter‐defibrillator. European Heart J. 2013; 34:2230–42.

      57 57 Sasson C, Meischke H, Abella BS, et al. Increasing cardiopulmonary resuscitation provision in communities with low bystander cardiopulmonary resuscitation rates: a science advisory from the American Heart Association for healthcare providers, policymakers, public health departments, and community leaders. Circulation. 2013; 127:1342–50.

      58 58 Ong ME, Tan EH, Yan X, et al. An observational study describing the geographic‐time distribution of cardiac arrests in Singapore: What is the utility of geographic information systems for planning public access defibrillation? (PADS Phase I). Resuscitation. 2008; 76:388–96.

      59 59 Becker L, Eisenberg M, Fahrenbruch C, Cobb L. Public locations of cardiac arrest. Implications for public access defibrillation. Circulation. 1998; 97:2106–9.

      60 60 Frank RL, Rausch MA, Menegazzi JJ, Rickens M. The locations of nonresidential out‐of‐hospital cardiac arrests in the City of Pittsburgh over a three‐year period: implications for automated external defibrillator placement. Prehosp Emerg Care. 2001; 5:247–51.

      61 61 Reed DB, Birnbaum A, Brown LH, et al. Location of cardiac arrests in the public access defibrillation trial. Prehosp Emerg Care. 2006; 10:61–76.

      62 62 American Heart Association. Automated External Defibrillator: Implementing an AED Program. Dallas, TX: AHA, 2012.

      63 63 Medtronic Physio‐Control. AED Program Implementation Guide. Redmond, WA: Medtronic, 2002.

      64 64 Lifesaving Society. AED Implementation Guide. Toronto, Ontario: Lifesaving Society, 2012.

      65 65 Weaver WD, Hill D, Fahrenbruch CE, et al. Use of the automatic external defibrillator in the management of out‐of‐hospital cardiac arrest. N Engl J Med. 1988; 319:661–6.

      66 66 Davis EA, Mosesso VN Jr. Performance of police first responders in utilizing automated external defibrillation on victims of sudden cardiac arrest. Prehosp Emerg Care. 1998; 2:101–7.

      67 67 White RD, Asplin BR, Bugliosi TF, Hankins DG. High discharge survival rate after out‐of‐hospital ventricular fibrillation with rapid defibrillation by police and paramedics. Ann Emerg Me.d 1996; 28:480–5.

      68 68 White RD, Hankins DG, Bugliosi TF. Seven years’ experience with early defibrillation by police and paramedics in an emergency medical services system. Resuscitation. 1998; 39:145–51.

      69 69 Ong MEH, Chan YH, Anantharaman V. Improved response times with motorcycle based Fast Response Paramedics. SGH Proceedings. 2003; 12:114–19.

      70 70 Stiell IG, Wells GA, Field BJ, et al. Improved out‐of‐hospital cardiac arrest survival through the inexpensive optimization of an existing defibrillation program: OPALS study phase II. JAMA. 1999; 281(13):1175–81.

      71 71 Olasveengen TM, Wik L, Steen PA. Quality of cardiopulmonary resuscitation before and during transport in out‐of‐hospital cardiac arrest. Resuscitation. 2008; 76:185–90.

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