Page 17 - JSOM Winter 2021
P. 17
clear communication with the Combatant Command Trauma 22. Bodnar D, Rashford S, Hurn C, et al. Characteristics and out-
System and Joint Trauma System. comes of patients administered blood in the prehospital envi-
ronment by a road based trauma response team. Emerg Med J.
2014;31 (7):583–8.
References 23. Le Clerc S, McLennan J, Kyle A, Mann-Salinas E, Russell R. Pre-
1. Donham BP, Barbee GA, Deaton TG, et al. Risk associated dicting when to administer blood products during tactical aero-
with autologous fresh whole blood training. J Spec Oper Med. medical evacuation: evaluation of a U.S. model. J Spec Oper Med.
2019;19(3);24–25.
2014;14(4):48–52.
2. Butler FK, Holcomb JB, Schreiber MA, Kotwal RS, Jenkins DA, 24. Wheeler, AR, Cuenca C, Fisher AD et al. Development of pre-
Champion HR, et al. Fluid Resuscitation for Hemorrhagic Shock hospital assessment findings associated with massive transfusion.
in Tactical Combat Casualty Care: TCCC Guidelines Change 14- Transfusion. 2020;60:S70–S76.
01--2 June 2014. J Spec Oper Med. 2014;14(3):13–38.
3. Strandenes G, Hervig TA, Bjerkvig CK, et al. The lost art of 25. Bassett AK, Auten JD, Zieber TJ, Lunceford NL. Early, prehos-
pital activation of the walking blood bank based on mechanism
whole blood transfusion in austere environments. Curr sports of injury improves time to fresh whole blood transfusion. J Spec
med rep. 2015;14(2):129–34. Oper Med. 2016;16(2):5–8.
4. Cap AP, Pidcoke HF, DePasquale M, et al. Blood far forward: 26. Nunez TC, Voskresensky IV, Dossett LA, Shinall R, Dutton WD,
Time to get moving! J Trauma Acute Care Surg. 2015;78(6 Suppl Cotton BA. Early prediction of massive transfusion in trauma:
1):S2–6.
5. Fisher AD, Miles EA, Cap AP, Strandenes G, Kane SF. Tactical simple as ABC (assessment of blood consumption)? J Trauma.
2009;66(2):346–52.
damage control resuscitation. Mil med. 2015;180(8):869–75.
6. Butler FK, Jr. Fluid resuscitation in tactical combat casualty care: 27. Via DK. Urgent resuscitation using blood products during tactical
evacuation from point of injury. CENTCOM Clinical Operating
yesterday and today. Wilderness Environ med. 2017;28(2S): Protocols 2016;CCOP-01.
S74–S81. 28. JTS, Damage Control Resuscitation CPG, 12 Jul 2019. https://
7. Chang R, Eastridge BJ, Holcomb JB. Remote damage control jts.amedd.army.mil/index.cfm/PI_CPGs/cpgs. Accessed Oct 2020.
resuscitation in austere environments. Wilderness environ med. 29. JTS, Frozen and Deglycerolized Red Blood Cells CPG, 11 Jul 2016
2017;28(2S):S124–S34.
8. Smith IM, James RH, Dretzke J, Midwinter MJ. Prehospital blood https://jts.amedd.army.mil/index.cfm/PI_CPGs/cpgs. Accessed Oct
2020.
product resuscitation for trauma: a systematic review. Shock (Au- 30. JTS, Whole Blood Transfusions CPG, 15 May 2018. https://jts
gusta, GA). 2016 Jul;46(1):3. .amedd.army.mil/index.cfm/PI_CPGs/cpgs. Accessed Oct 2020.
9. Shand S, Curtis K, Dinh M, Burns B. What is the impact of pre- 31. Hendrickson JE, Hillyer CD. Noninfectious serious hazards of
hospital blood product administration for patients with cata- transfusion. Anesth analg. 2009;108(3):759–69.
strophic haemorrhage: an integrative review. Injury. 2019 Feb 1; 32. Hendrickson JE, Roubinian NH, Chowdhury D, et al. Incidence
50(2):226–34. of transfusion reactions: a multicenter study utilizing systematic
10. Yazer MH, Spinella PC. An international survey on the use of low active surveillance and expert adjudication. Transfusion. 2016;56
titer group O whole blood for the resuscitation of civilian trauma (10):2587–96.
patients in 2020. Transfusion. 2020;60:S176–179.
11. Nadler R, Tsur A, Yazer MH et al. Early experience with trans- 33. Dutton RP, Shih D, Edelman BB, Hess J, Scalea TM. Safety of un-
crossmatched type-O red cells for resuscitation from hemorrhagic
fusing low titer group O whole blood in the pre-hospital setting shock. J Trauma. 2005;59(6):1445–9.
in Israel. Transfusion. 2020;60:S10–S16. 34. Ho KM, Leonard AD. Concentration-dependent effect of hypo-
12. Fisher AD, Dunn J, Pickett JR et al. Implementation of a low calcaemia on mortality of patients with critical bleeding requir-
titer group O whole blood program for a law enforcement team. ing massive transfusion: a cohort study. Anaesth Intensive Care.
Transfusion. 2020;60:S36–S44.
2011;39(1):46–54.
13. Powell-Dunford N, Quesada JF, Gross KR, Shackelford SA. 35. Magnotti LJ, Bradburn EH, Webb DL, et al. Admission ionized
Army Air Ambulance Blood Product Program in the combat zone calcium levels predict the need for multiple transfusions: a pro-
and challenges to best practices. Aerospace Med Hum Perform. spective study of 591 critically ill trauma patients. J Trauma.
2016;87 (8):728–34.
2011;70(2):391-5; discussion 5-7.
14. Malsby RF, 3rd, Quesada J, Powell-Dunford N, et al. Prehospital 36. Vivien B, Langeron O, Morell E, et al. Early hypocalcemia in
blood product transfusion by U.S. Army MEDEVAC during com- severe trauma. Crit Care Med. 2005;33(9):1946–52.
bat operations in Afghanistan: a process improvement initiative. 37. Moore HB, Tessmer MT, Moore EE, et al. Forgot calcium? Ad-
Mil Med. 2013;178(7):785–91.
15. Mabry RL, Apodaca A, Penrod J, Orman JA, Gerhardt RT, Dorlac mission ionized-calcium in two civilian randomized controlled
trials of prehospital plasma for traumatic hemorrhagic shock. J
WC. Impact of critical care-trained flight paramedics on casualty Trauma Acute Care Surg. 2020;88:588–596)
survival during helicopter evacuation in the current war in Af- 38. Giancarelli A, Birrer KL, Alban RF, Hobbs BP, Liu-DeRyke X.
ghanistan. J Trauma Acute Care Surg. 2012;73 (2 Suppl 1):S32–7.
16. Morrison JJ, Oh J, DuBose JJ, et al. En-route care capability from Hypocalcemia in trauma patients receiving massive transfusion. J
Surg Res. 2016;202(1):182–7.
point of injury impacts mortality after severe wartime injury. Ann 39. MacKay EJ, Stubna MD, Holena DN, et al. Abnormal calcium
Surg. 2013;257 (2):330–4. levels during trauma resuscitation are associated with increased
17. Apodaca A, Olson CM, Jr., Bailey J, et al. Performance improve- mortality, increased blood product use, and greater hospital re-
ment evaluation of forward aeromedical evacuation platforms in source consumption: a pilot investigation. Anesth Analg. 2017;
Operation Enduring Freedom. J Trauma Acute Care Surg. 2013; 125(3):895–901.
75 (2 Suppl 2):S157–63. 40. Cherry RA, Bradburn E, Carney DE, et al. Do early ionized
18. Shackelford SA, Del Junco DJ, Powell-Dunford N, et al. Associ- calcium levels really matter in trauma patients? J Trauma.
ation of Prehospital Blood Product Transfusion During Medical 2006;61(4):774-9. doi:10.1097/01.ta.0000239516.49799.63.
Evacuation of Combat Casualties in Afghanistan With Acute and 41. Long AM, Lefebvre CM, Masneri DA, et al. The golden oppor-
30-Day Survival. JAMA. 2017;318 (16):1581–91. tunity: multidisciplinary simulation training improves trauma
19. O’Reilly DJ, Morrison JJ, Jansen JO, et al. Prehospital blood team efficiency. Journal of Surgical Education. 2019 Jul 1;76(4):
transfusion in the en route management of severe combat trauma: 1116–21.
a matched cohort study. J Trauma Acute Care Surg. 2014;77 (3 42. Fisher AD, Carius BM, Corley JB, et al. Conducting fresh whole
Suppl 2):S114–20. blood transfusion training. J Trauma Acute Care Surg. 2019 Jul
20. Donovan W. Ranger Medic Handbook. 4th ed. North American 1;87(1S):S184–90.
Rescue 2012. 43. Miles EA, Maitha JC. Optimal methods of teaching and train-
21. Reid C. Blood Management. In: Greater Sydney Area Helicopter ing DCR/RDCR. Damage Control Resuscitation 2020 (pp. 339–
Emergency Medical Service. Sydney. 2015. https://nswhems.files 354). Springer, Cham.
.wordpress.com/2015/12/heli-cli-11-blood-management-v2.pdf.
Prehospital Blood Transfusion | 15

