Literature DB >> 24365879

Emergency whole-blood use in the field: a simplified protocol for collection and transfusion.

Geir Strandenes1, Marc De Pasquale, Andrew P Cap, Tor A Hervig, Einar K Kristoffersen, Matthew Hickey, Christopher Cordova, Olle Berseus, Håkon S Eliassen, Logan Fisher, Steve Williams, Philip C Spinella.   

Abstract

Military experience and recent in vitro laboratory data provide a biological rationale for whole-blood use in the treatment of exsanguinating hemorrhage and have renewed interest in the reintroduction of fresh whole blood and cold-stored whole blood to patient care in austere environments. There is scant evidence to support, in a field environment, that a whole blood-based resuscitation strategy is superior to a crystalloid/colloid approach even when augmented by a limited number of red blood cell (RBC) and plasma units. Recent retrospective evidence suggests that, in this setting, resuscitation with a full compliment of RBCs, plasma, and platelets may offer an advantage, especially under conditions where evacuation is delayed. No current evacuation system, military or civilian, is capable of providing RBC, plasma, and platelet units in a prehospital environment, especially in austere settings. As a result, for the vast minority of casualties, in austere settings, with life-threatening hemorrhage, it is appropriate to consider a whole blood-based resuscitation approach to provide a balanced response to altered hemostasis and oxygen debt, with the goal of reducing the risk of death from hemorrhagic shock. To optimize the successful use of fresh whole blood/cold-stored whole blood in combat field environments, proper planning and frequent training to maximize efficiency and safety will be required. Combat medics will need proper protocol-based guidance and education if whole-blood collection and transfusion are to be successfully and safely performed in austere environments. In this article, we present the Norwegian Naval Special Operation Commando unit-specific remote damage control resuscitation protocol, which includes field collection and transfusion of whole blood. This protocol can serve as a template for others to use and adjust for their own military or civilian unit-specific needs and capabilities for care in austere environments.

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Year:  2014        PMID: 24365879     DOI: 10.1097/SHK.0000000000000114

Source DB:  PubMed          Journal:  Shock        ISSN: 1073-2322            Impact factor:   3.454


  10 in total

Review 1.  Fresh whole blood transfusion capability for Special Operations Forces.

Authors:  Andrew Beckett; Jeannie Callum; Luis Teodoro da Luz; Joanne Schmid; Christopher Funk; Elon Glassberg; Homer Tien
Journal:  Can J Surg       Date:  2015-06       Impact factor: 2.089

2.  Infrastructure and clinical practice for the detection and management of trauma-associated haemorrhage and coagulopathy.

Authors:  A Driessen; N Schäfer; V Albrecht; M Schenk; M Fröhlich; E K Stürmer; M Maegele
Journal:  Eur J Trauma Emerg Surg       Date:  2014-10-25       Impact factor: 3.693

Review 3.  Hemorrhagic blood failure: Oxygen debt, coagulopathy, and endothelial damage.

Authors:  Nathan J White; Kevin R Ward; Shibani Pati; Geir Strandenes; Andrew P Cap
Journal:  J Trauma Acute Care Surg       Date:  2017-06       Impact factor: 3.313

Review 4.  Remote Damage Control Resuscitation in Austere Environments.

Authors:  Ronald Chang; Brian J Eastridge; John B Holcomb
Journal:  Wilderness Environ Med       Date:  2017-06       Impact factor: 1.518

5.  Effects of platelet-sparing leukocyte reduction and agitation methods on in vitro measures of hemostatic function in cold-stored whole blood.

Authors:  Kenneth E Remy; Mark H Yazer; Arun Saini; Ajlana Mehanovic-Varmaz; Sharon R Rogers; Andrew P Cap; Philip C Spinella
Journal:  J Trauma Acute Care Surg       Date:  2018-06       Impact factor: 3.313

6.  Trauma hemostasis and oxygenation research position paper on remote damage control resuscitation: definitions, current practice, and knowledge gaps.

Authors:  Donald H Jenkins; Joseph F Rappold; John F Badloe; Olle Berséus; Lorne Blackbourne; Karim H Brohi; Frank K Butler; Andrew P Cap; Mitchell Jay Cohen; Ross Davenport; Marc DePasquale; Heidi Doughty; Elon Glassberg; Tor Hervig; Timothy J Hooper; Rosemary Kozar; Marc Maegele; Ernest E Moore; Alan Murdock; Paul M Ness; Shibani Pati; Todd Rasmussen; Anne Sailliol; Martin A Schreiber; Geir Arne Sunde; Leo M G van de Watering; Kevin R Ward; Richard B Weiskopf; Nathan J White; Geir Strandenes; Philip C Spinella
Journal:  Shock       Date:  2014-05       Impact factor: 3.454

Review 7.  Whole Blood for Resuscitation of Traumatic Hemorrhagic Shock in Adults.

Authors:  Allison R Jones; Justin L Miller; Jan O Jansen; Henry E Wang
Journal:  Adv Emerg Nurs J       Date:  2021 Oct-Dec 01

Review 8.  The Role of Whole Blood Transfusions in Civilian Trauma: A Review of Literature in Military and Civilian Trauma.

Authors:  Shane Kronstedt; Joon Lee; David Millner; Connor Mattivi; Halli LaFrankie; Lorenzo Paladino; Jeffrey Siegler
Journal:  Cureus       Date:  2022-04-18

9.  The Norwegian blood preparedness project: A whole blood program including civilian walking blood banks for early treatment of patients with life-threatening bleeding in municipal health care services, ambulance services, and rural hospitals.

Authors:  Torunn Oveland Apelseth; Mirjana Arsenovic; Geir Strandenes
Journal:  Transfusion       Date:  2022-06-25       Impact factor: 3.337

Review 10.  Hemorrhagic Resuscitation Guided by Viscoelastography in Far-Forward Combat and Austere Civilian Environments: Goal-Directed Whole-Blood and Blood-Component Therapy Far from the Trauma Center.

Authors:  James H Lantry; Phillip Mason; Matthew G Logsdon; Connor M Bunch; Ethan E Peck; Ernest E Moore; Hunter B Moore; Matthew D Neal; Scott G Thomas; Rashid Z Khan; Laura Gillespie; Charles Florance; Josh Korzan; Fletcher R Preuss; Dan Mason; Tarek Saleh; Mathew K Marsee; Stefani Vande Lune; Qamarnisa Ayoub; Dietmar Fries; Mark M Walsh
Journal:  J Clin Med       Date:  2022-01-12       Impact factor: 4.241

  10 in total

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