Emergency Medical Minute
Contributors: Travis Barlock MD, Ian Gillman PA, Jacob Altholz MD, Jeffrey Olson MS4 In this episode, EM attending Travis Barlock and medical student Jeffrey Olson listen in to the two remaining cases presented from EMM’s recent event, Tox Talk 2025. Talk 1- Methemoglobinemia- Ian Gillman Cyanosis + chocolate-colored blood + normal PaO₂ + pulse ox stuck at ~85% = Methemoglobinemia → Treat with methylene blue The medications that can cause it can be remembered with… Watch out with methylene blue as it can cause serotonin syndrome While treating with methylene blue the...
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Contributor: Alec Coston, MD Educational Pearls: BiPAP is often effective in severe asthma, but many patients struggle with mask tolerance due to intense air hunger–driven anxiety, often compounded by hypoxia. Benzodiazepines are commonly used for anxiety, but they can depress respiratory drive, making clinical improvement difficult to interpret (a lower RR may reflect sedation rather than true physiologic improvement). Low-dose fentanyl is a useful alternative when patients cannot tolerate BiPAP despite coaching. Opioids blunt the perception of dyspnea and are well established for...
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Contributor: Aaron Lessen, MD Educational Pearls BRASH Syndrome: Bradycardia Renal Failure AV Nodal Blockade Shock Hyperkalemia Clinical Features: Profound bradycardia and shock in patients on AV nodal blockers: Commonly, Beta Blockers or Calcium Channel Blockers Etiology: Caused by an inciting kidney injury: Common triggers include precipitating illness, dehydration, or medications Results in hyperkalemia The enhanced effect of the combination of AV nodal blockade and hyperkalemia leads to a more profound presentation of shock. ...
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Contributor: Taylor Lynch, MD Educational Pearls: What is tramadol and how does it work? Tramadol is a Schedule IV opioid analgesic used for moderate pain and is often perceived as safer than other opioids due to lower abuse potential. It is a prodrug with weak direct μ-opioid receptor activity. The parent compound also inhibits serotonin and norepinephrine reuptake, giving it SSRI/SNRI-like properties. Tramadol is metabolized by CYP2D6 into O-desmethyltramadol (ODT), which has significantly stronger μ-opioid receptor agonism than the parent drug. What are the concerns with...
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Contributor: Aaron Lessen, MD Educational Pearls: The Case 24F brought in for anxiety. Patient is tearful, not talking, and potentially hyperventilating. History from boyfriend is that she suddenly stopped talking and started crying and it was hard to understand what she was saying. On exam, patient appears anxious and has a gaze preference for the right side and is still having difficulty speaking. Decision is made to stroke alert patient. CT shows early MCA stroke and M2 occlusion. Patient is treated by IR with mechanical thrombectomy. What are the risk factors for strokes in young...
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Contributor: Aaron Lessen, MD Educational Pearls: A 2025 multistate outbreak of infant botulism has been linked to ByHeart infant formula As of December 10-17th, there have been at least 51 infants with suspected or confirmed botulism who were exposed to this formula across 19 states All reported cases resulted in hospitalization but no deaths reported to date Infant botulism Occurs when C. botulinum spores germinate in the infant’s intestine, producing toxin Spores are classically found in honey but can also be in dirt or contaminated in infant formula Infants are...
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Carepoint Journal Club is a quarterly series with discussions about a medical topic, brought to you by Carepoint's Emergency Physicians.
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Contributor: Meghan Hurley, MD Educational Pearls: OTC Medications Dextromethorphan (DM) Most common OTC cough suppressant Minimal efficacy: Little evidence that it shortens the duration or severity of cough. Potential side effects: At recommended doses: Mild dizziness, drowsiness, GI symptoms Higher doses: Decreased consciousness, dissociative effects Guaifenesin Found in Mucinex and other severe cough/cold products Thins secretions and loosens mucus in airways No more effective than increasing oral fluid intake Prescription Medications Codeine-containing products ...
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Contributor: Taylor Lynch, MD Educational Pearls: What is orbital compartment syndrome, and how is it assessed in the emergency room? Orbital compartment syndrome (OCS) is an emergent ophthalmic condition in which intraorbital pressure in the orbital compartment rises dramatically, compromising perfusion of the optic nerve and retina, leading to risk of irreversible vision loss. OCS occurs in the context of traumatic lesions with retrobulbar hemorrhage. Intraocular pressures (IOP) are measured via tonometry as a surrogate for intraorbital pressures, with emergent pathology being present when...
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Contributor: Aaron Lessen, MD Educational Pearls: How do amiodarone and lidocaine work on the heart? Amiodarone Blocks potassium channels (Class III effect). Also blocks sodium and calcium channels. Additional noncompetitive beta-blocker effects. Stabilizes cardiac tissue, slows heart rate, and suppresses both atrial and ventricular arrhythmias. Lidocaine Blocks fast sodium channels in ventricular tissue (Class Ib). Shortens the action potential in ventricular myocardium, especially in ischemic tissue. Suppresses abnormal automaticity in damaged/irritable myocardium. Which one should...
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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