Emergency Medical Minute
Contributor: Meghan Hurley, MD Educational Pearls: 1. Initial Assessment Start with a physical examination: Determine if the bleed is anterior or posterior. Perform a primary survey: assess airway, breathing, and circulation (ABCs). Airway compromise = intubation immediately. If the patient is stable, have them blow out any clots, then re-examine the nares. 2. Topical Medications Anesthetics: provide local anesthesia and pain relief. Lidocaine Tetracaine Vasoconstrictors: reduce bleeding. LET (Lidocaine, Epinephrine, Tetracaine) is ideal because it provides...
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Contributor: Travis Barlock, MD Educational Pearls: Quick Statistics on Electrical Burns: Electrical burns compose roughly 2 to 9% of all burns that come into emergency departments. The majority of patients who receive electrical burns are male, typically aged 20’s to 30’s, accounting for 80 to 90% of all electrical burn victims. The majority of burns are linked to occupational exposure. The upper extremities are more commonly impacted by electrical burns, accounting for 70 to 90% of entry points into the body during an exposure. What are some of the key considerations in electrical...
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Contributors: Preeya Prakash MD, Adam Greenhaw PharmD, Travis Barlock MD, and Jeffrey Olson MS4 In this episode, cardiologist Preeya Prakash and medical student Jeffrey Olson listen in as two cases are presented from EMM’s recent event, Tox Talk 2025. Talk 1- Digoxin Overdose Dr. Adam Greenhaw presents a case of a Digoxin overdose along with many pearls. During the studio listen in, Dr. Prakash helps to answer the questions of: How does digoxin work? Why might a patient still be on digoxin in 2025? What are the EKG findings of digoxin toxicity? Is there any utility in atropine...
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Contributor: Aaron Lessen, MD Educational Pearls: Traumatic Brain Injuries are a frequent complaint in the Emergency Department and have increased in recent years. The American Association for Surgery of Trauma (AAST) has created Brain Injury Guidelines (BIG), in an attempt to categorize brain injuries and the level of treatment they require. They are… BIG 1 Normal neuro exam Not intoxicated Not on anticoagulation or antiplatelet medications Minimal findings on head CT No fracture <4 mm bleed (subdural, epidural, intraparenchymal (max one location)) Maximum of “trace” subarachnoid...
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Contributor: Taylor Lynch, MD Educational Pearls: A recent study published in a pediatric journal in April 2025 compared temporal and oral thermometers Paired temperature measurements (temporal and oral temperature within 30 minutes) were obtained from 1,412 pediatric patients 26% of patients had statistically different temporal and oral temperatures The temporal reading was always lower than the oral reading Children less than 12 years old were 2-3x more likely to actually have that statistical difference in temperatures The study also evaluated 1,000 adult patients 36% had a temporal...
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Contributor: Taylor Lynch, MD Educational Pearls: Delusional parasitosis is a subtype of the psychiatric condition delusional disorder Defined as a fixed, false belief of infestation by parasites or other organisms A somatic type of delusional disorder Primary delusional parasitosis Occurs in the absence of other psychiatric or medical conditions Secondary delusional parasitosis Causes include methamphetamine use disorder, schizophrenia, neurologic diseases, or medical conditions such as thyroid disease Pathophysiology Poorly understood Upregulation of striatal dopamine system is...
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Contributor: Aaron Lessen, MD Educational Pearls: The cause of Alzheimer’s disease is multifactorial, but the most widely suspected mechanism is the amyloid cascade hypothesis: Beta-amyloid proteins accumulate in the central nervous system, forming plaques that impair neuronal function. In recent years, advances have led to the development of targeted therapies with monoclonal antibodies. These drugs: Work by degrading amyloid plaques Slow the rate of cognitive decline and disease progression Have major side effects, most notably the development of amyloid-related imaging abnormalities...
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Contributor: Alec Coston, MD Case Report Summary: A 17-year-old female involved in a motor vehicle collision presented to a rural emergency facility via personally operated vehicle. During workup and initial CT scan, the patient began rapidly decompensating with CT revealing a 1.5cm epidural hematoma with 7mm of midline shift. The patient went from being able to walk and talk to being obtunded with a blown left pupil and unresponsive. Following intubation, the patient was being prepared for transport but potential delays required immediate emergency evacuation of the hematoma via a Burr Hole....
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Contributor: Aaron Lessen, MD Educational Pearls: What is a Nursemaid's Elbow? A condition in which an elbow gets partially pulled out of place (a radial head subluxation) Usually happens in kids under 5 because the ligaments around their elbow are still loose. A common situation is when an adult pulls a child up by the hand or swings them by the arms. The sudden tug causes the radius to slip out of its normal spot at the elbow joint. How are they identified? These don’t normally need an xray The child will often hold their arm close to their side and refuse to use it There’s usually no...
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Contributor: Ricky Dhaliwal, MD Educational Pearls: Angioedema in anaphylaxis Histamine and mast cell-mediated pathway Treatment: First line: epinephrine for vasoconstriction and bronchodilation Second line: H1 and H2 antihistamines such as Benadryl and famotidine ACE inhibitor-induced angioedema Different pathway from anaphylaxis ACE inhibitor-induced angioedema is mediated by bradykinins Therefore, anaphylaxis medications are not beneficial in patients with ACE inhibitor-induced angioedema Leading cause of drug-induced angioedema in the US Patients most commonly present with...
info_outlineContributor: Travis Barlock, MD
Educational Pearls:
- Quick Statistics on Electrical Burns:
Electrical burns compose roughly 2 to 9% of all burns that come into emergency departments. - The majority of patients who receive electrical burns are male, typically aged 20’s to 30’s, accounting for 80 to 90% of all electrical burn victims.
- The majority of burns are linked to occupational exposure.
- The upper extremities are more commonly impacted by electrical burns, accounting for 70 to 90% of entry points into the body during an exposure.
What are some of the key considerations in electrical burns?
- Unlike chemical or fire/heat related burns, electrical burns have the potential to cause significant internal damage that may not be physically appreciated externally.
- This damage can include, but is not limited to:
- Cardiac dysthymias (PVCs, SVT, AV block, to more serious ventricular dysrhythmias such as ventricular fibrillation or ventricular tachycardia).
- Deep tissue injury resulting in rhabdomyolysis from the initial surge of electricity
- Rare cases of compartment syndrome
What are the treatment considerations for patients who suffer electrical burns?
- Remembering that cutaneous findings associated with burns may underestimate the severity of the injury, with deeper structures being more likely to be involved as the voltage of the burn injury is directly correlated to severity.
- Manage the patient's airway, breathing, and circulation as always, and conduct further workup into potential cardiac involvement with EKGs, as well as analysis of the extremities where entry occurred for muscle breakdown and compartment syndrome.
Clinical Pearl on Voltage and Current:
- Voltage can be thought of being equivalent to pressure in a fluid/liquid system. Higher voltages are equivalent to higher pressures, but the ultimate damage delivered to the system is from the rate of delivery/speed of the electrical energy surging (current) through the body.
- Current is dependent on the tissue it is travelling through, with different tissues having differing electrical resistances. Tissues like the stratum corneum of the skin and the human bone confer the most resistance (thus lower current) whereas skeletal muscle confers lower electrical resistance (thus higher current) due to water and electrolyte content, which is why injuries like rhabdomyolysis are possible and increase with increasing voltage.
References
- Khor D, AlQasas T, Galet C, et al. Electrical injuries and outcomes: A retrospective review. Burns. 2023;49(7):1739-1744. doi:10.1016/j.burns.2023.03.015
- Durdu T, Ozensoy HS, Erturk N, Yılmaz YB. Impact of Voltage Level on Hospitalization and Mortality in Electrical Injury Cases: A Retrospective Analysis from a Turkish Emergency Department. Med Sci Monit. 2025;31:e947675. doi:10.12659/MSM.947675
- Karray R, Chakroun-Walha O, Mechri F, et al. Outcomes of electrical injuries in the emergency department: epidemiology, severity predictors, and chronic sequelae. Eur J Trauma Emerg Surg. 2025;51(1):85. doi:10.1007/s00068-025-02766-1
- Faes TJ, van der Meij HA, de Munck JC, Heethaar RM. The electric resistivity of human tissues (100 Hz-10 MHz): a meta-analysis of review studies. Physiol Meas. 1999;20(4):R1-10. doi:10.1088/0967-3334/20/4/201
Summarized by Dan Orbidan, OMS2 | Edited by Dan Orbidan and Jorge Chalit, OMS4
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