Emergency Medical Services. Группа авторов

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Galvagno SM, Jr., Sikorski RA, Floccare DJ, et al. Prehospital point of care testing for the early detection of shock and prediction of lifesaving interventions. Shock. 2020; 54(6):710–16.

      32 32 Guyette F, Suffoletto B, Castillo JL, Quintero J, Callaway C, Puyana JC. Prehospital serum lactate as a predictor of outcomes in trauma patients: a retrospective observational study. J Trauma. 2011; 70:782–6.

      33 33 Gregg A, Tutek J, Leatherwood MD, et al. Systematic review of community paramedicine and EMS mobile integrated health care interventions in the United States. Popul Health Manag. 2019; 22:213–22.

      34 34 Stewart J, Sprivulis P, Dwivedi G. Artificial intelligence and machine learning in emergency medicine. Emerg Med Australas. 2018; 30:870–4.

      35 35 Moranville MP, Mieure KD, Santayana EM. Evaluation and management of shock States: hypovolemic, distributive, and cardiogenic shock. J Pharm Pract. 2011; 24:44–60.

      36 36 Stern SA, Dronen SC, Birrer P, Wang X. Effect of blood pressure on hemorrhage volume and survival in a near‐fatal hemorrhage model incorporating a vascular injury. Ann Emerg Med 1993; 22:155–63.

      37 37 Alderson P, Bunn F, Lefebvre C, et al. Human albumin solution for resuscitation and volume expansion in critically ill patients. Cochrane Database Syst Rev. 2002; ( 1):CD001208.

      38 38 Elbers PW, Ince C. Mechanisms of critical illness: classifying microcirculatory flow abnormalities in distributive shock. Crit Care. 2006; 10:221.

      39 39 Patel GP, Grahe JS, Sperry M, et al. Efficacy and safety of dopamine versus norepinephrine in the management of septic shock. Shock. 2010; 33:375–80.

      40 40 De Backer D, Biston P, Devriendt J, et al. Comparison of dopamine and norepinephrine in the treatment of shock. N Engl J Med. 2010; 362:779–89.

      41 41 Reber LL, Hernandez JD, Galli SJ. The pathophysiology of anaphylaxis. J Allergy Clin Immunol. 2017; 140:335–48.

      42 42 Shaker M, Kanaoka T, Feenan L, Greenhawt M. An economic evaluation of immediate vs non‐immediate activation of emergency medical services after epinephrine use for peanut‐induced anaphylaxis. Ann Allergy Asthma Immuno. 2019; 122:79–85.

      43 43 Simons KJ, Simons FE. Epinephrine and its use in anaphylaxis: current issues. Curr Opin Allergy Clin Immunol. 2010; 10:354–61.

      44 44 Simons FER, Simons KJ. Epinephrine (adrenaline) in anaphylaxis. Chem Immunol Allergy. 2010; 95:211–22.

      45 45 Hochman JS, Sleeper LA, Webb JG, et al. Early revascularization in acute myocardial infarction complicated by cardiogenic shock. N Engl J Med. 1999; 341:625–34.

      46 46 Aneja RK, Carcillo JA. Differences between adult and pediatric septic shock. Minerva Anestesiol. 2011; 77:986–92.

      47 47 Kissoon N, Orr RA, Carcillo JA. Updated American College of Critical Care Medicine––pediatric advanced life support guidelines for management of pediatric and neonatal septic shock: relevance to the emergency care clinician. Pediatr Emerg Care 2010; 26:867–9.

      48 48 O’Connor RE, Domeier RM. An evaluation of the pneumatic anti–shock garment (PASG) in various clinical settings. Prehosp Emerg Care. 1997; 1:36–44.

      49 49 Pepe PE, Eckstein M. Reappraising the prehospital care of the patient with major trauma. Emerg Med Clin North Am. 1998; 16:1–15.

      50 50 Finfer S, Norton R, Bellomo R, Boyce N, French J, Myburgh J. The SAFE study: saline vs. albumin for fluid resuscitation in the critically ill. Vox Sang. 2004; 87(Suppl 2):123–31.

      51 51 Semler MW, Self WH, Rice TW. Balanced crystalloids versus saline in critically ill adults. N Engl J Med. 2018; 378:1951.

      52 52 Sperry JL, Guyette FX, Brown JB, et al. Prehospital plasma during air medical transport in trauma patients at risk for hemorrhagic shock. N Engl J Med. 2018; 379:315–26.

      53 53 Pusateri AE, Butler FK, Shackelford SA, et al. The need for dried plasma – a national issue. Transfusion 2019; 59(Suppl 2):1587–92.

      54 54 Shlaifer A, Siman‐Tov M, Radomislensky I, et al. Prehospital administration of freeze‐dried plasma, is it the solution for trauma casualties? J Trauma Acute Care Surg. 2017; 83:675–82.

      55 55 Sunde GA, Vikenes B, Strandenes G, et al. Freeze dried plasma and fresh red blood cells for civilian prehospital hemorrhagic shock resuscitation. J Trauma Acute Care. Surg. 2015; 78(6 Suppl 1):S26–30.

      56 56 Bickell WH, Wall MJ, Jr., Pepe PE, et al. Immediate versus delayed fluid resuscitation for hypotensive patients with penetrating torso injuries. N Engl J Med. 1994; 331:1105–9.

      57 57 Kaweski SM, Sise MJ, Virgilio RW. The effect of prehospital fluids on survival in trauma patients. J Trauma. 1990; 30:1215–19.

      58 58 Kowalenko T, Stern S, Dronen S, Wang X. Improved outcome with hypotensive resuscitation of uncontrolled hemorrhagic shock in a swine model. J Trauma. 1992; 33:349–362.

      59 59 Martin RR, Bickell WH, Pepe PE, Burch JM, Mattox KL. Prospective evaluation of preoperative fluid resuscitation in hypotensive patients with penetrating truncal injury: a preliminary report. J Trauma. 1992; 33:354–61.

      60 60 Silbergleit R, Satz W, McNamara RM, Lee DC, Schoffstall JM. Effect of permissive hypotension in continuous uncontrolled intra‐abdominal hemorrhage. Acad Emerg Med. 1996; 3:922–6.

      61 61 Smith JP, Bodai BI, Hill AS, Frey CF. Prehospital stabilization of critically injured patients: a failed concept. J Trauma. 1985; 25:65–70.

      62 62 Spaite DW, Hu C, Bobrow BJ, et al. Association of out‐of‐hospital hypotension depth and duration with traumatic brain injury mortality. Ann Emerg Med. 2017; 70:522–530.e21.

      63 63 Fowler R, Gallagher JV, Isaacs SM, Ossman E, Pepe P, Wayne M. The role of intraosseous vascular access in the out‐of‐hospital environment (resource document to NAEMSP position statement). Prehosp Emerg Care. 2007; 11:63–6.

      64 64 Yannopoulos D, Tang W, Roussos C, Aufderheide TP, Idris AH, Lurie KG. Reducing ventilation frequency during cardiopulmonary resuscitation in a porcine model of cardiac arrest. Respir Care. 2005; 50:628–35.

      65 65 Neumar RW, Otto CW, Link MS, et al. Part 8: adult advanced cardiovascular life support: 2010 American Heart Association Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care. Circulation. 2010; 122(18 Suppl 3):S729–767.

      66 66 Sakr Y, Reinhart K, Vincent JL, et al. Does dopamine administration in shock influence outcome? Results of the Sepsis Occurrence in Acutely ill Patients (SOAP) Study. Crit Care Med. 2006; 34:589–97.

      67 67 Hajjar LA, Vincent JL, Barbosa Gomes, et al. Vasopressin versus norepinephrine in patients with vasoplegic shock after cardiac surgery: the VANCS randomized controlled trial. Anesthesiology. 2017; 126:85–93.

      68 68 Sims CA, Holena D, Kim P, et al. Effect of low‐dose supplementation of arginine vasopressin on need for blood product transfusions in patients with trauma and hemorrhagic shock: a randomized clinical trial. JAMA Surg. 2019; 154:994–1003.

      69 69 Schwartz MB, Ferreira JA, Aaronson PM. The impact of push–dose phenylephrine use on subsequent preload expansion in the ED setting. Am J Emerg Med. 2016; 34:2419–22.

      70 70 Nawrocki PS, Poremba M, Lawner BJ. Push dose epinephrine use in the management of hypotension during critical care transport.

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