StayCurrentMD · Burns
Podcast51 min·Published Oct 2017Older

Burns

With Dr. Robert Sheridan · hosted by Dr. Todd Ponsky · StayCurrentMD
Try
Intelligent Search· scoped to burns · not medical adviceSearch the whole library →

More about burns

same diagnosis
Only a few other public items share this diagnosis — nothing to add yet.

More from Dr. Sheridan

same expert · first-hand onlyDive deeper → Dr. Robert Sheridan
Only a few other public items share this expert — go deeper there →

More from StayCurrentMD

same institutionDive deeper → StayCurrentMD
What the experts said34 expert statements
Animal studies in the 1960s and 1970s showed that excessive colloid administration resulted in histologic accumulation of colloid in the lungs, leading to fear of pulmonary compromise before mechanical ventilation was widely available.
ClinicalRobert Sheridan
Traditional crystalloid-only resuscitation formulas (Brooke, Parkland) cause severe anasarca with significant morbidity, including near-compartment syndrome and neurologic injury.
ClinicalRobert Sheridan
Children do not need to make 2 cc/kg/hr of urine unless they are extremely young or have abnormal renal concentrating ability; targets of 0.5–1 cc/kg/hr are reasonable.
ClinicalRobert Sheridan
Starting 5% albumin colloid immediately in burns ≥30–40% reduces total fluid volume and eliminates the need for abdominal decompression in Sheridan's practice.
ClinicalRobert Sheridan
For burns 15–20% or less, maintenance-and-a-half IV fluids or ad lib PO intake with clinical monitoring (tears, moist oral cavity, pulse quality) is sufficient; calculated resuscitation is not needed.
ClinicalRobert Sheridan
For mid-range burns (20–50%), Sheridan calculates Parkland (4 cc/kg/% burn over 24 hours), subtracts 1× maintenance, and gives that volume as 5% albumin; the remainder is given as Ringer's lactate. If the child is young and at risk for hypoglycemia, he also subtracts 1× maintenance as D5 Ringer's.
ClinicalRobert Sheridan
For burns >50%, Sheridan gives 2× maintenance as 5% albumin (or one-third of total calculated resuscitation as albumin), with the remainder as crystalloid.
ClinicalRobert Sheridan
Resuscitation fluids are adjusted hourly based on urine output and distal perfusion; by 24 hours, total fluid infusion typically reaches approximately 150% of maintenance if resuscitation goes well.
ClinicalRobert Sheridan
Most small burns (<10%) are managed outpatient; admission criteria are driven by family factors (distance, car access, ability to follow instructions), not wound size alone.
ClinicalRobert Sheridan
Thick, durable, non-tense blisters (e.g., on fingertips and palms) can be left intact for a few days to avoid painful debridement; thin blisters that will rupture should be debrided in the clinic.
ClinicalRobert Sheridan
Early excision for large burns (≥20–30%) means removing non-viable tissue within the first few days to prevent septic morbidity, which typically appears by day 3–5.
ClinicalRobert Sheridan
For small deep burns with no septic threat, early excision means clear identification of what needs excision, family teaching, and operative intervention within the first week.
ClinicalRobert Sheridan
Children with large burns (≥50%) are intubated early if airway edema or extensive surgery is anticipated, to secure the airway before swelling makes intubation difficult.
ClinicalRobert Sheridan
Enteral feeding via nasogastric tube is started on day 1 in most burns; children with very large burns or prolonged transport may have splanchnic ischemia and require trophic feeds until bowel sounds return.
ClinicalRobert Sheridan
Prophylactic antibiotics are not routinely used; a study of ~600 children (300 per arm) showed no difference in infection rates but more rashes and diarrhea in the antibiotic group.
ClinicalRobert Sheridan
Central venous access is placed in nearly all large burns; femoral lines have the same infection rate as other sites in Sheridan's 1000-catheter review, with a slight trend toward higher infection in internal jugular lines in small children.
ClinicalRobert Sheridan
Central lines are rotated weekly in the pre-antiseptic-line era (infection spike at 10 days) and every 2 weeks with antiseptic-impregnated lines (spike at 2 weeks); lines are also rotated in conjunction with OR trips.
ClinicalRobert Sheridan
Army burn unit studies showed up to 42% incidence of occult bacteremia during major wound manipulations in children with open wounds.
EpidemiologicalRobert Sheridan
Escharotomies are performed in the first 24–36 hours if circumferential burns risk limb or torso ischemia; pulse oximetry or Doppler checks every 2 hours guide the decision.
ClinicalTodd Ponsky
Sheridan uses silver nitrate soaks, sulfamylon soaks (sometimes with amphotericin for difficult gram-negatives), and other wet topicals for large burns; the choice is unit-specific and differences in outcomes are modest if other program elements are strong.
ClinicalRobert Sheridan
Diagnostic dermatome passes in small representative areas help determine burn depth intraoperatively when clinical exam is uncertain.
ClinicalRobert Sheridan
Excision is staged over 2–3 days for very large burns to avoid critical illness, excessive blood loss, and fluid overload; the goal is to remove all threatened tissue by day 5–7.
ClinicalRobert Sheridan
Maintaining normothermia during excision (OR at 120°F, 100% humidity, continuous temperature monitoring) prevents coagulopathic bleeding from hypothermia.
ClinicalRobert Sheridan
Fascial excisions, once routine for full-thickness burns, are now rare; layered excision preserving remnant fat improves long-term appearance and reconstructive options.
ClinicalRobert Sheridan
Hemostatic excision endpoints include the appearance of fat and deep reticular dermis, not free bleeding; this minimizes blood loss compared to older techniques.
ClinicalRobert Sheridan
Allograft is used as temporary coverage when the child is unstable, excision depth is uncertain, or burns are too large for immediate autografting; it is treated like autograft (secured, allowed to vascularize) and replaced with autograft in 5–7 days.
ClinicalRobert Sheridan
Split-thickness autograft remains the definitive permanent membrane; no permanent skin substitute has proven superior.
OpinionRobert Sheridan
Donor sites should be treated as the most valuable territory: thin harvests, meticulous care, no infections, no deep passes, to preserve tissue for future reconstruction.
ClinicalRobert Sheridan
Colloid-inclusive resuscitation has transformed outcomes by reducing anasarca and eliminating the need for abdominal decompression in Sheridan's practice.
ClinicalRobert Sheridan
Minimally ablative excision improves long-term aesthetic and functional outcomes but carries a slightly higher septic risk and makes definitive coverage on fat beds more challenging than on fascial beds.
ClinicalRobert Sheridan
Modern scar management favors small tension-relief operations over ablative excision and skin grafting; scars shrink with regional tension release, sometimes augmented by fractional COâ‚‚ laser.
ClinicalRobert Sheridan
Early functional and aesthetic reconstruction (as soon as functional issues arise) has replaced the old practice of waiting 2 years before operating on healed burns.
ClinicalRobert Sheridan
Multidisciplinary aftercare (PT, OT, psychology, nutrition, nursing, surgery) in daily rounds and clinic is essential to long-term outcomes and reintegration.
ClinicalRobert Sheridan
Infants <6 months with large burns require obsessive attention to fluid management, line care, tube position, lung-protective ventilation, hemostatic excision, normothermia, and thin harvests; they are prone to flexion contractures and need aggressive PT/OT and early functional reconstruction.
ClinicalRobert Sheridan