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Chapter 4. Initial Management andResuscitation
135
elbow or knee, which should in turn be at or above the level
of the heart [63]. Caution is advised with hand orthosis use
during initial resuscitation, due to the risk of causing external
pressure and tissue ischemia [63].
Burn injury location is important in determining the
functional impact of the injury and the resultant therapy
workload. The CFU concept is a way of quantifying this
relationship. It is based on how skin is recruited and how it
moves during joint range of motion. Based on this analysis,
grossly 100 major CFUs were identified, excluding the neck
and face [64]. Therapists can utilize the completed LundBrowder diagram to identify CFUs at that are at risk of
contracture or deformity. For instance, a burn to a single
hand (dorsal and volar surface) only represents 2% TBSA,
but comprises at least 30 CFUs accounting for approximately 30% of all CFUs in the body. Thus, the hand is at
very high risk for deformity and decreased function. We
utilize the calculation of CFUs during the initial phases of
burn injury to assist in determining therapy time and
resource allocation [65, 66].
The rehabilitation team plays a vital role in the initial
management and resuscitation of a burn injury. Therapists’
unique skill set places them in an ideal position to assist the
multidisciplinary team in the identification of key elements
vital to preservation of limb and function:
• Extremity perfusion, through the careful assessment of
edema and use of edema management techniques
• Neuromuscular status of the extremities, through
assessment and identification of sensory and/or motor
deficits
• Identification of tendon or bony anomalies such as exposed
tendons and fractures

136
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L. C. Cancio and J. M. Cancio
T . US Army
Institute of Surgical
Research Burn
Resuscitation
Checklist
Hour postburn
Mean arterial blood pressure
Lactate
Base deficit
-to-FiO2 ratio
PaO
2
Bladder pressure
Pulses
Urine output
Pressor doses
Crystalloid rate
Colloid rate
Total volume received to date (mL/kg)
Teamwork
The care of patients with burn shock is complex and requires
the coordinated efforts of a multidisciplinary team [67]. At
the US Army Burn Center, we have devoted significant effort
to improving communication among members of our team by
means of processes such as the following:
• Twice-daily multidisciplinary team rounds, starting with a
briefing by the bedside ICU nurse
• Task lists (“to-do lists”) managed by the charge nurse
• Custom (burn-specific) multivariable data display tools
• Three-way crisis communication techniques
• Focused after-action reviews
The first 48 hours is a time during which it is particularly
important to employ all of these processes, and more. For
example, we have found it helpful to schedule conference
calls every 6 hours during the course of a difficult resuscitation among the various team members. During these calls, a
standardized checklist of key variables can be used to guide
the discussion (Table4.2):

Chapter 4. Initial Management andResuscitation
137
Final Thoughts
The successful initial evaluation and treatment of extensively
burned casualties are challenging, but critical to both survival
and optimal long-term outcomes. Early communication with
a burn center and timely transport are keys to success. Under
most circumstances, transport can and should be accomplished within hours of injury. In austere, mass-casualty, or
military environments, this may not be possible—if so, postponing evacuation until after the resuscitation phase is complete, but before infection sets in, may be the best choice.
Adherence to the principles described in this chapter will
support the successful early care of burn patients.
Acknowledgments The opinions or assertions contained herein are the private views of the authors and are not to be construed as official or as representing the views of the Department of the Army or the Department of
Defense.
L.C.C. is an inventor of Burn Navigator (Arcos Medical, Inc., Houston,
TX). He has assigned his rights to the US Army. He is funded by the
Department of Defense to conduct studies of plasma for burn shock resuscitation. The authors declare no other conicts of interest.
The authors gratefully acknowledge Mr. W.Scott Dewey for helpful comments, and Ms. Susan Reyna, Library Assistant, US Army Institute of Surgical
Research.
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143

Chapter 5
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Inhalation Injury
AxelRodriguez andAlexisMcQuitty
Introduction
Inhalation injury is major cause of death for patients burned
in structural fires, which often occur in enclosed spaces with
inability to flee the incident [1]. Smoke inhalation may be
present in up to 20% of reported burn cases and is identified
in 60–70% of patients who die in burn centers. The degree of
injury depends on many factors: gas components of fire accidents, presence of soot (particulate matter), and magnitude of
exposure to flame or steam [2]. If inhalation injury is suspected in a patient with any burn size, a referral to a burn
center should occur promptly. Early intervention, treatment,
and monitoring in a burn ICU may improve patient outcome.
In addition to extremes of age and the total body surface area
(TBSA) burn, inhalation injury is an important predictor of
mortality [3–5].
A. Rodriguez · A. McQuitty (*)
Department of Anesthesiology, University of Texas Medical
Branch, Galveston, TX, USA
e-mail: axrodrig@utmb.edu; almcquit@utmb.edu
© The Author(s), under exclusive license to Springer Nature
Switzerland AG 2023
J. O. Lee (ed.), Essential Burn Care for Non-Burn Specialists,
https://doi.org/10.1007/978-3-031-28898-2_5
145
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