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Burns

Burns 2010

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Page 1: Burns 2010

BurnsBurns

Page 2: Burns 2010

Types of Burn InjuryTypes of Burn Injury

• Thermal Burns• Chemical Burns• Smoke Inhalation Injury• Electrical Burns• Cold Thermal Injury

• Thermal Burns• Chemical Burns• Smoke Inhalation Injury• Electrical Burns• Cold Thermal Injury

Page 3: Burns 2010

Types of Burn InjuryThermal Burns

Types of Burn InjuryThermal Burns

• Caused by flame, flash, scald, or contact with hot objects

• Most common type of burn

• Caused by flame, flash, scald, or contact with hot objects

• Most common type of burn

Page 4: Burns 2010

Full-Thickness Thermal Burn

Fig. 24-1, A

Page 5: Burns 2010

Partial-Thickness Burn to the Hand

Fig. 24-1, B

Page 6: Burns 2010

Partial-Thickness Burns Due to Immersion in Hot Water

Fig. 24-1, C

Page 7: Burns 2010

Types of Burn InjuryChemical Burns

Types of Burn InjuryChemical Burns

• Result from tissue injury and destruction from necrotizing substances • Most commonly caused by acids• Respiratory & systemic problems• Eye injuries• Tissue destruction may continue for up to 72 hrs after

injury

• Result from tissue injury and destruction from necrotizing substances • Most commonly caused by acids• Respiratory & systemic problems• Eye injuries• Tissue destruction may continue for up to 72 hrs after

injury

Page 8: Burns 2010

Types of Burn InjurySmoke Inhalation InjuriesTypes of Burn Injury

Smoke Inhalation Injuries

• Result from inhalation of hot air or noxious chemicals • Cause damage to respiratory tract• Important determinant of mortality in fire victims CO poisoning Inhalation injury

• Result from inhalation of hot air or noxious chemicals • Cause damage to respiratory tract• Important determinant of mortality in fire victims CO poisoning Inhalation injury

Page 9: Burns 2010

Types of Burn Injury Smoke Inhalation Injuries

Types of Burn Injury Smoke Inhalation Injuries

Carbon monoxide (CO) poisoning• CO is produced by the incomplete combustion of burning materials• Inhaled CO displaces oxygen

Carbon monoxide (CO) poisoning• CO is produced by the incomplete combustion of burning materials• Inhaled CO displaces oxygen

Page 10: Burns 2010

Types of Burn InjuryElectrical Burns

Types of Burn InjuryElectrical Burns

• Result from coagulation necrosis caused

by intense heat generated from an

electrical current

• May result from direct damage to nerves

and vessels causing tissue anoxia and

death

• Result from coagulation necrosis caused

by intense heat generated from an

electrical current

• May result from direct damage to nerves

and vessels causing tissue anoxia and

death

Page 11: Burns 2010

Electrical Burn- Hand

Fig. 24-2, A

Page 12: Burns 2010

Electrical Burn- Back

Fig. 24-2, B

Page 13: Burns 2010

Types of Burn Injury Electrical Burns

Types of Burn Injury Electrical Burns

• Severity of injury depends on the amount of voltage, tissue resistance, current pathways, surface area, and on the length of time of the flow

• Severity of injury depends on the amount of voltage, tissue resistance, current pathways, surface area, and on the length of time of the flow

Page 14: Burns 2010

Types of Burn Injury Electrical Burns

Types of Burn Injury Electrical Burns

• Electrical sparks may ignite the patient’s

clothing, causing a combination of

thermal and electrical injury

• Electrical sparks may ignite the patient’s

clothing, causing a combination of

thermal and electrical injury

Page 15: Burns 2010

Types of Burn Injury Cold Thermal Injury

Types of Burn Injury Cold Thermal Injury

• Frostbite

• Frostbite

Page 16: Burns 2010

Classification of Burn InjuryClassification of Burn Injury

• Severity of injury is determined by

- Depth of burn

- Extent of burn

- Location of burn

- Patient risk factors

• Severity of injury is determined by

- Depth of burn

- Extent of burn

- Location of burn

- Patient risk factors

Page 17: Burns 2010

Classification of Burn InjuryBurn Injury

Classification of Burn InjuryBurn Injury

- In the past, burns were defined by

degrees:

• First-degree, second-degree, and third-

degree burns

- In the past, burns were defined by

degrees:

• First-degree, second-degree, and third-

degree burns

Page 18: Burns 2010

Cross Section of Skin

Fig. 24-3

Page 19: Burns 2010

Classification of Burn InjuryDepth of Burn

Classification of Burn InjuryDepth of Burn

- Burns now classified according to depth of skin destruction:

• Partial-thickness burn

• Full-thickness burn

- Burns now classified according to depth of skin destruction:

• Partial-thickness burn

• Full-thickness burn

Page 20: Burns 2010

Classification of Burn InjuryDepth of Burn

Classification of Burn InjuryDepth of Burn

- Superficial partial thickness

• Involves the epidermis

- Deep partial thickness

• Involves the dermis

- Full thickness

• Involves fat, muscle, bone

- Superficial partial thickness

• Involves the epidermis

- Deep partial thickness

• Involves the dermis

- Full thickness

• Involves fat, muscle, bone

Page 21: Burns 2010

Partial Thickness (Superficial)

• Redness

• Pain

• Moderate to severe tenderness

• Minimal oedema

• Blanching with pressure

Page 22: Burns 2010

Superficial Burns

Page 23: Burns 2010

Partial Thickness Burns

Page 24: Burns 2010

Partial-Thickness (Deep)

• Moist blebs, blisters

• Mottled white, pink to cherry red

• Hypersensitive to touch or air

• Moderate to severe pain

• Blanching with pressure

Page 25: Burns 2010

Partial Thickness Burns

Page 26: Burns 2010

Full-Thickness

• Dry, leathery eschar• White, waxy, dark brown or charred

appearance• Strong burn odour• Impaired sensation when touched• Absence of pain with severe pain in

surrounding tissues• Lack of blanching with pressure

Page 27: Burns 2010

Full Thickness Burns

Page 28: Burns 2010

Full Thickness Burns

Page 29: Burns 2010

Full Thickness Burns

Page 30: Burns 2010

Partial & Full Thickness Burns

Page 31: Burns 2010

Classification of Burn InjuryExtent of Burn

Classification of Burn InjuryExtent of Burn

- Two commonly used guides for

determining the total body surface area:

• Lund-Browder chart

• Rule of nines

- Two commonly used guides for

determining the total body surface area:

• Lund-Browder chart

• Rule of nines

Page 32: Burns 2010

Lund-Browder Chart

Fig. 24-4, A

Page 33: Burns 2010

Rule of Nines Chart

Fig. 24-4, B

Page 34: Burns 2010

Classification of Burn InjuryLocation of Burn

Classification of Burn InjuryLocation of Burn

Location of the burn is related to the

severity of the injury:– Face, neck, chest respiratory

obstruction

– Hands, feet, joints, and eyes self-care – Ears, nose infection

Location of the burn is related to the

severity of the injury:– Face, neck, chest respiratory

obstruction

– Hands, feet, joints, and eyes self-care – Ears, nose infection

Page 35: Burns 2010
Page 36: Burns 2010

Classification of Burn InjuryLocation of Burn

Classification of Burn InjuryLocation of Burn

- Circumferential burns of the extremities

can cause circulatory compromise

- Patients may also develop compartment

syndrome

- Circumferential burns of the extremities

can cause circulatory compromise

- Patients may also develop compartment

syndrome

Page 37: Burns 2010

Circumferential Burns

Page 38: Burns 2010
Page 39: Burns 2010

Classification of Burn Injury Patient Risk Factors

Classification of Burn Injury Patient Risk Factors

• Older adults heal more slowly than young adults• Preexisting cardiovascular, respiratory, renal disease• Diabetes mellitus• Alcoholism• Drug abuse• Malnutrition• Concurrent fractures, head injuries, or other trauma

• Older adults heal more slowly than young adults• Preexisting cardiovascular, respiratory, renal disease• Diabetes mellitus• Alcoholism• Drug abuse• Malnutrition• Concurrent fractures, head injuries, or other trauma

Page 40: Burns 2010

Emergent PhaseEmergent Phase

• Emergent phase is the period of time required to resolve the immediate problems resulting from burn injury• From burn onset to 5 or more days• Usually lasts 24 to 48 hours • The phase begins with fluid loss and edema formation and continues until fluid mobilization

and diuresis begin

• Emergent phase is the period of time required to resolve the immediate problems resulting from burn injury• From burn onset to 5 or more days• Usually lasts 24 to 48 hours • The phase begins with fluid loss and edema formation and continues until fluid mobilization

and diuresis begin

Page 41: Burns 2010

Emergent PhasePathophysiology

Emergent PhasePathophysiology

• Fluid and Electrolyte Shifts

- Greatest threat is hypovolaemic shock,

caused by a massive shift of fluids out of

blood vessels as a result of increased

capillary permeability

• Fluid and Electrolyte Shifts

- Greatest threat is hypovolaemic shock,

caused by a massive shift of fluids out of

blood vessels as a result of increased

capillary permeability

Page 42: Burns 2010

Conditions Leading to Burn Shock

Fig. 24-5

Page 43: Burns 2010

Emergent PhasePathophysiology

Emergent PhasePathophysiology

• Fluid and Electrolyte Shifts

- The net result of the fluid shift is

intravascular volume depletion

• Oedema

• Blood pressure

• Pulse

• Fluid and Electrolyte Shifts

- The net result of the fluid shift is

intravascular volume depletion

• Oedema

• Blood pressure

• Pulse

Page 44: Burns 2010

Emergent PhasePathophysiology

Emergent PhasePathophysiology

• Fluid and Electrolyte Shifts

- Normal insensible loss: 30 to 50 ml per

hour

- Severely burned patient: 200 to 400 ml per

hour

• Fluid and Electrolyte Shifts

- Normal insensible loss: 30 to 50 ml per

hour

- Severely burned patient: 200 to 400 ml per

hour

Page 45: Burns 2010

Emergent PhasePathophysiology

Emergent PhasePathophysiology

• Fluid and Electrolyte Shifts

- RBCs are haemolyzed by a circulating

factor released at the time of the burn

- Thrombosis

- Elevated haematocrit

• Fluid and Electrolyte Shifts

- RBCs are haemolyzed by a circulating

factor released at the time of the burn

- Thrombosis

- Elevated haematocrit

Page 46: Burns 2010

Emergent PhasePathophysiology

Emergent PhasePathophysiology

• Fluid and Electrolyte Shifts

- Na+ shifts to the interstitial spaces and

remains until oedema formation ceases

- K+ shift develops because injured cells

and haemolyzed RBCs release K+ into

extracellular spaces

• Fluid and Electrolyte Shifts

- Na+ shifts to the interstitial spaces and

remains until oedema formation ceases

- K+ shift develops because injured cells

and haemolyzed RBCs release K+ into

extracellular spaces

Page 47: Burns 2010

Effects of Burn Shock

Fig. 24-6

Page 48: Burns 2010

Emergent PhaseClinical Manifestations

Emergent PhaseClinical Manifestations

• Shock from pain and hypovolaemia

• Blisters

• Adynamic ileus

• Shivering

• Altered mental status

• Shock from pain and hypovolaemia

• Blisters

• Adynamic ileus

• Shivering

• Altered mental status

Page 49: Burns 2010

Debriding Full-Thickness Burn

Fig. 24-9

Page 50: Burns 2010

Acute PhaseAcute Phase

• The acute phase begins with the mobilization

of extracellular fluid and subsequent diuresis

• The acute phase is concluded when the burned

area is completely covered by skin grafts or

when the wounds are healed

• The acute phase begins with the mobilization

of extracellular fluid and subsequent diuresis

• The acute phase is concluded when the burned

area is completely covered by skin grafts or

when the wounds are healed

Page 51: Burns 2010

Acute PhasePathophysiology

Acute PhasePathophysiology

• Diuresis from fluid mobilization occurs, and

the patient is no longer grossly edematous

• Bowel sounds return

• Healing begins when WBCs have surrounded

the burn wound and phagocytosis occurs

• Diuresis from fluid mobilization occurs, and

the patient is no longer grossly edematous

• Bowel sounds return

• Healing begins when WBCs have surrounded

the burn wound and phagocytosis occurs

Page 52: Burns 2010

Surgeon Harvesting Skin

Fig. 24-11, A

Page 53: Burns 2010

Donor Site After Harvesting

Fig. 24-11, B

Page 54: Burns 2010

Healed Donor Sites

Fig. 24-11, C

Page 55: Burns 2010

Healed Split-Thickness Skin Graft

Fig. 24-11, D

Page 56: Burns 2010

Application of Cultured Epithelial Autograft

Fig. 24-12, A

Page 57: Burns 2010

Healed Cultured Epithelial Autograft

Fig. 24-12, B

Page 58: Burns 2010

Escharotomy of the Lower Extremity

Fig. 24-7

Page 59: Burns 2010

Acute PhaseComplicationsAcute PhaseComplications

• Infection

- Localized inflammation, induration, and

suppuration

- Partial-thickness burns can become full-

thickness wounds in the presence of

infection

• Infection

- Localized inflammation, induration, and

suppuration

- Partial-thickness burns can become full-

thickness wounds in the presence of

infection

Page 60: Burns 2010

Contracture of the Axilla

Fig. 24-13

Page 61: Burns 2010

Contractures

Page 62: Burns 2010

Rehabilitation PhaseRehabilitation Phase

• The rehabilitation phase is defined as

beginning when the patient’s burn wounds are

covered with skin or healed and the patient is

able to resume a level of self-care activity

• The rehabilitation phase is defined as

beginning when the patient’s burn wounds are

covered with skin or healed and the patient is

able to resume a level of self-care activity