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Chapter 8
Treatment ofHand Burns
TinaL.Palmieri
Introduction
The hands, although comprising <10% of overall body surface area, are involved in >90% of severe burns [1]. Because people interact with the environment predominantly via their hands, even a partial loss of hand function can result in difficulties in performing the simplest tasks. Hands are particularly important in completing activities of daily living; loss of hand use is associated with a 57% loss of total function for an individual [2]. Hands are also visible representations of our selves. We see our hands more often than our face, and hands are frequently what is noticed by others. Appearance has become the focus of outcome research after hand injury [3]. In children with large burns, the presence of a burn injury in a visible area, such as the hands, is more strongly associated with psychological consequences and worse health related quality of life outcomes than the overall severity of the burn [4, 5]. Hence, the appearance, as well as the function, of hands is important. The initial treatment of a hand burn sets the stage for future hand function; hence, it is important for non-
T. L. Palmieri (*) Shriners Children’s Northern California, University of California Davis, Sacramento, CA, USA e-mail: tlpalmieri@ucdavis.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_8
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burn and non-plastic surgery practitioners to understand the basic principles of management of hand burns. Delayed treat­ment of a hand burn can result in lifelong disability. The pur­pose of this chapter is to provide the non-burn physician with the tools to appropriately evaluate and manage the acute presentation of a hand burn.
Anatomy ofHand Skin
Understanding skin anatomy is the cornerstone of accurate diagnosis and management of hand burns. The skin of the hand is unique anatomically compared to other body regions. The dorsal hand and palmar hand have different skin struc­ture and function. While the dorsum of the hand has thin, flexible skin to facilitate movement and joint flexion, the palmar skin is thicker, attached to the palmar fascia, resistant to pressure, and contains essential sensory end organs [6]. As such, the dorsal surface is a motion facilitator, while the palm is designed structurally and biologically to facilitate grasping and holding objects. Injuries to the dorsal hand, due to the proximity of tendons to the skin surface, are prone to motion deficits, while palm injuries may have long-term impact on hand sensorium and grasp.
The etiology of burn injuries to the hand varies by anatomic region, as well as age. Dorsal hand burns are more commonly caused by scald or flame injuries, while palm burns, particularly in children, result from contact with a hot object, such as a curling iron or glass fireplace front [7,
8].Children explore their environment using their hands;
hence, young children, especially toddlers, are at particular risk of palm injury. Due to the thickness of the palmar skin, third degree burns of the palm occur less frequently than dorsal hand burns. Other anatomic locations impose addi­tional risks for long-term sequelae after burn injury. Nail bed burns can result in nail deviation, cleft, loss, or discol­oration and adversely impact hand function [9]. The exten­sor tendons of the proximal interphalangeal joint (PIP) is
Chapter 8. Treatment ofHand Burns
another area of concern. The central slip of the extensor tendon inserts at the proximal interphalangeal joint (PIP), while 2 lateral bands continue distally to the base of the phalanx. Disruption of this mechanism causes the Boutonniere deformity. Finally, the fifth finger metacarpo­phalangeal joint, which is hypermobile, increases the likeli­hood for development of a boutonniere deformity months after excision and grafting [10].
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Aim ofHand Burn Treatment
In general, tenets of hand burn care are to (1) promote a wound healing environment, (2) maintain circulation, (3) prevent infection, (4) obtain wound closure, and (5) main­tain motion. Appropriate initial wound care relies on knowledge of the pathophysiology of burn wounds. Because definitive treatment of the hand burn is complex, requiring the input of surgeons, physiotherapists, occupational thera­pists, psychologists, and nursing, national burn treatment guidelines recommend that hand burns be treated in a burn center [11]. Due to the limited number of verified burn centers, most patients are initially evaluated in non-burn facilities. Timely referral of hand burns to a qualified burn provider is essential.
Initial Hand Burn Evaluation
The initial priority for burn injury treatment is to remove the patient from the heat source. This is generally accomplished at the injury scene. For small burns (less than 10%) immedi­ate irrigation with cool tap water (NOT cold water and NOT ice) for 20–30min may minimize the damage caused by heat exposure [1214]. Initial medical evaluation focuses on assessment for life-threatening injuries following the guide­lines set forth for initial trauma management. Injury history provides valuable insight into potential associated trauma
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T. L. Palmieri
(such as crush injury during a motor vehicle crash). The etiol­ogy of the burn injury (flame, scald, contact, chemical, electri­cal), duration of contact with the heat source, temperature of the heat source (if available), first aid applied at the scene, and prior hand injuries should be recorded. Hand radio­graphs are generally unnecessary unless there is associated crush or traumatic injury.
Determination of burn extent and depth is an essential element of the evaluation. Perhaps the most neglected yet essential step to enable accurate assessment of burn injury extent and depth is to wash the wound with soap and water to remove debris and soot that may obscure visualization of the wound beneath. Pain associated with the burn wound will need to be addressed prior to debridement. For initial burn treatment, patients frequently require intrave­nous narcotic administration to control pain. Low doses of short acting narcotics are recommended, as pain decreases precipitously after dressings are applied. Anxiolytic medi­cations may be required, as well. Appropriate monitoring should be instituted. After pain is controlled, debridement can be accomplished by initially rinsing the wound with cool water, followed by utilization of wet wash rag satu­rated with room temperature water and soap (such as chlorhexidine). The rag can then be used to remove loose tissue and further clean the wound. At times scissors may be needed to remove adherent skin ends. The final step is to rinse off the soap and pat the wound dry. This allows for wound visualization and decreases infection risk.
Burn extent (i.e., how much of the body surface area is involved in the burn) is generally estimated by applying one of the three techniques: the palm rule, in which the patient’s palm (including fingers) is 1% of the patient’s body; the Rule of Nines, in which each body part is a multiple of 9; or employing the Lund-Browder chart, which adjusts body surface area estimates based on age. Upper extremity or hand burns that encompass the entire circumference of the arm or hand should be noted and extremity capillary refill assessed.
Chapter 8. Treatment ofHand Burns
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Burn depth determination can be particularly challenging for the hand due to the dynamic nature of the wound. The burn wound has three injury zones: coagulation, stasis, and hyperemia. The size of each zone over time is influenced by tissue perfusion and wound care. The tissue in the zone of coagulation is damaged beyond repair. The tissue in the zone of hyperemia, with minimal injury, will heal spontaneously within a week. The zone most influenced by initial treatment is the zone of stasis, in which there is significant, but not complete tissue injury. Appropriate wound management will allow healing of the zone of stasis, while inappropriate management or lack of perfusion will result in extension of the tissue injury. The goal of initial wound care is to minimize conversion of the zone of stasis to the zone of coagulation by optimizing the wound healing environment.
Burn injury depth is divided into three categories: first (superficial), second (partial-thickness), and third (full­thickness) degrees. First degree burns involve only the epidermis and do not blister but can be painful. A common first degree burn scenario is sunburn. A second degree burn traverses the epidermis and extends a variable dis­tance into the dermis. Superficial second-degree burns are blistered, painful, moist, pink, and blanch on touch. These wounds should be managed in a moist environment to encourage epithelialization [15]. Deep second-degree burns are generally blistered, deeper red or mottled in color, have minimal blanching, and are usually somewhat less painful. These wounds should also initially be man­aged in a moist environment to encourage epithelializa­tion, but the wounds should be closely monitored by a burn surgeon. Third-degree flame burns are white or leath­ery, generally have decreased sensation centrally, while third-degree scald burns are deep cherry red, dry, and mottled. Topical antimicrobials or silver dressings should be placed, and the patient referred to a burn surgeon for possible excision and grafting. Second and third-degree hand burns are best treated in a qualified burn center.
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Most isolated hand burns can be referred for an outpatient clinic appointment within 1–3 days after injury. To date visual inspection of the wound for depth determination is commonplace, although advanced wound imaging modali­ties such as thermography and laser Doppler are gaining in popularity [16]. Presence of a blister makes determination of wound depth problematic, at best, because visualization of the skin beneath the blister is not possible.
Promote aWound Healing Environment
Loose debris and broken blisters are removed from the wound, as they are a nidus for infection. Loose fingernails should be left in place (unless already gone). Loss of fingernails suggests the presence of a deep third-degree hand burn, and the patient should be immediately referred to a burn center. Palm blisters can be left intact; however, if the blister compromises circula­tion or impedes range of motion, they may require removal. Blisters contain inflammatory mediators [17]. Any blister 2cm in height on the palm can usually be left intact without adverse outcomes. If the blister ruptures, however, the tissue pieces should be removed, and the skin beneath washed with soap and water as described above. Intact blisters should be wrapped in dry dressings, as topical antimicrobials such as sil­ver sulfadiazine or bacitracin do not penetrate the blister and will result in skin maceration. Application of topical antimicro­bials is appropriate after the blister has ruptured and the wound cleaned. The topical antimicrobial should be placed with a thickness of approximately 0.25 and covered with loose dressings. Circumferential wrapping of hands should be moni­tored for impairment of perfusion. Elastic tube netting is the most efficacious method of holding dressings in place. Dressing changes depend on the dressing selected. Topical antimicrobi­als such as silver sulfadiazine and bacitracin should be changed daily, while silver dressings can be applied for 3—7days. The patient should be referred to a burn center for outpatient man­agement within the week.
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Maintain Circulation
Maintaining circulation in the burned hand is essential to avoid extension of the zone of stasis to the zone of coagula­tion. This is particularly important in major burns (>20% total body surface area). Major burns should receive appro­priate intravenous resuscitation. Hand and arm burns should be elevated above the level of the heart, and dressings placed loosely to avoid circulatory compromise of the extremity. Hand escharotomy for burn injury is rarely necessary and should be performed by a trained burn or hand surgeon, as they may cause blood loss or injury to underlying structures. After adequate intravenous sedation is assured, electrocau­tery is used to incise through burn eschar to pliable non­constricting tissue or fat. Arm escharotomies consist of incisions along the medial and lateral aspects of the extremity with the arm in supination. In the hand, the eschar is released with 2–3 longitudinal dorsal incisions between the tendons on the dorsal hand [18]. Digital escharotomies are rarely required on the lateral and medial aspects of the fingers and should be above the skin crease formed when the finger is bent at the DIP joint in order to avoid neurovascular injury. Circulation should be reassessed frequently after the performance of escharotomies, and fasciotomy in the operating room may be necessary if ischemia persists.
Prevent Infection
As emphasized above, burn hand infection is best prevented by early and complete wound debridement and cleaning with soap. A partial-thickness wound, which is classically pink, moist, and painful, will heal within 2weeks and can be treated with topical bacitracin and Adaptic™ or petroleum gauze such as Xeroform™ once or twice daily. The advent of silver dress­ings, which can be applied and kept in place for 5–7days, has facilitated management. However, proper application of sil­ver dressings is important. The dressing needs to be secured
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to avoid dislodgement yet allow for movement. In general, tape should be avoided on burned skin, as it may denude the epithelial layer. Silver sulfadiazine should be reserved for third-degree burns. Although silver sulfadiazine has broad antimicrobial coverage, it leaves a thick residue on wounds that results in painful dressing changes, and it impedes wound healing [19]. Other topicals for third-degree wounds include mafenide acetate (reserved for ears, invasive infections), sil­ver nitrate solution, and silver-containing dressings.
Obtain Wound Closure
Burn wound closure occurs either primarily through wound healing or secondarily via excision and grafting. The resultant healed skin or skin graft should be strong and pliable enough to allow maximal hand function while minimizing unsightly scar. Burns that heal within 2 weeks do not usually result in significant scarring or restriction in range of motion. Generally, all deep partial- or full-thickness burns that are not healing within 2–3 weeks should be considered for excision of the burn eschar with skin grafting [20, 21]. It is not necessary to wait 2weeks prior to referral; the earlier the operative inter­vention, the less the scarring.
The foundation for surgical treatment of the burned hand is to perform the simplest technique that allows wound clo­sure and optimized aesthetics without compromising func­tion. Ideally, surgery should be performed as soon as possible after identification of grafting need to minimize scarring, but certainly within a week. Early excision decreases infection risk and facilitates wound excision, as the sub-eschar edema often separates the eschar from underlying tendons. The burn eschar is removed by tangentially excising (serial shaving) nonviable tissue using guarded blade (Goulian knife). Tourniquets can be employed to decrease blood loss and improve visualization of vital hand structures during excision. The wound is reexamined after tourniquet deflation, and hemostasis is obtained.
Chapter 8. Treatment ofHand Burns
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Skin grafts are generally either full-thickness or split­thickness. The size of full-thickness skin grafts is limited by the ability to close the donor site skin with sutures. Split­thickness skin grafts are thus used for larger grafts, such as grafts encompassing the entire dorsum of the hand and fin­gers. Because split-thickness skin grafts only contain a por­tion of the dermis, they may result in greater graft contraction, increased scarring, and less sensation than full thickness grafts. As such, the cosmetic outcomes can be compromised. Full-thickness skin grafts are reserved for smaller vital areas, such as the palm. In children, full-thickness grafting of the palm, using a full-thickness donor skin obtained from the child’s inguinal crease, provides a durable graft that covers the entire surface of the palm [7]. However, full-thickness palm grafts will have darker pigmentation than the native palm skin, which has a paucity of melanocytes. Grafts can be inserted as sheets of skin (non-meshed) or meshed, in which holes are placed to extend the skin coverage. Meshed grafts are used in larger burns where donor sites are limited. Although meshed skin can cover more surface area, they heal by scarring of the interstices, resulting in a permanent meshed pattern that can increase contracture formation, compromis­ing function, and aesthetics. Sheet split- or full-thickness skin grafts maximize cosmetic and functional outcomes, but the burn excision should include the dermal elements to prevent inclusion cyst development. Use of sheet grafts is contingent upon skin availability and adequacy of the wound bed. It may be impractical to use sheet grafts for major life-threatening burns. Allograft or skin substitutes may be used as temporary coverage when adequate donor site for hand grafts is not available.
Donor site location in split-thickness skin grafting is an important consideration for adults and children. In children, the back has decreased long-term donor site scarring and no difference in infection rate, pigmentation, or blistering com­pared to the thigh [22]. The back is our donor site of choice for split-thickness skin grafts in children. Sheet skin grafting, which maximizes both function and cosmesis, is advisable.
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The six-inch dermatome can be used to obtain a graft of suf­ficient dimensions to completely cover the dorsum of the hand for most adults and all children without having seams. This dermatome is particularly suited to the wide flat surface of the back or transversely on the thigh. However, this der­matome requires additional expertise and should only be used by trained personnel.
Fourth degree burns (involving tendon, joint, muscle, bone), often from electrical injury or trauma, may compro­mise hand viability and function, and should be immediately referred to a burn center. Wounds are debrided and either autologous or cadaveric skin grafts or skin substitutes are used to determine tissue viability. In the event of joint insta­bility, Kirschner wires can be inserted axially to immobilize the joint in a position of function until autografting is com­plete. Joint fixation may compromise movement: approxi­mately 25% of patients treated with wire fixation have significant restriction in activities of daily living [23]. Free flaps may be required in the case of extensive fourth degree injury involving multiple fingers. Amputation is reserved for nonviable and non-salvageable situations.
Maintain Motion
Maintaining range of motion in the burned hand is imperative to prevent future contractures. Patients with partial- thickness burns should be instructed on exercises promoting extremity range of motion. This will both maintain motion and decrease edema. Splints may be needed to maintain the hand in a functional position in severe burns and postoperatively. Hand splints generally use 20 degrees of wrist extension, 70–90 degree metacarpophalangeal joint flexion, and extension of the interphalangeal joint. Passive range of motion should be initiated postoperatively as soon as grafts are stable. Involvement of an occupational therapist is essential to ensure compliance with strength, range of motion, and function of the hand. Although pressure garments can