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Altered Mental Status at High Altitude: Obstructive Hydrocephalus Mimicking High-Altitude Cerebral Edema (HACE)
Taylor Barg1, Jaclyn Walker2, Samara Levine3
1School of Medicine, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.
Barg, Taylor, Jaclyn Walker, Samara Levine, David Ryan Ormond, and James P Maloney. Altered Mental Status at High Altitude: Obstructive Hydrocephalus Mimicking High Altitude Cerebral Edema (HACE). High Alt Med Biol. 00:00-00, 2025.-A 29-year-old female presented to a Colorado emergency department with amnesia, headache, confusion, and dysarthria after rapidly ascending a 4,404 m (14,267 ft) peak. Head CT revealed cerebral edema and hydrocephalus. She was hypotensive and required vasopressors prior to evacuation to a lower-altitude intensive care unit and received initial treatment for high-altitude cerebral edema (HACE) with dexamethasone. Imaging and clinical workup revealed obstructive hydrocephalus due to a colloid cyst with minimal radiographical evidence of cerebral edema except due to the compressive effects of hydrocephalus. She transiently developed stress-induced cardiomyopathy and mixed neurocardiogenic shock. This case emphasizes the importance of considering HACE mimics at high altitude triggered by hypoxia-mediated increases in intracranial pressure.
Barg, Taylor, Jaclyn Walker, Samara Levine, David Ryan Ormond, and James P Maloney. Altered Mental Status at High Altitude: Obstructive Hydrocephalus Mimicking High Altitude Cerebral Edema (HACE). High Alt Med Biol. 00:00-00, 2025.-A 29-year-old female presented to a Colorado emergency department with amnesia, headache, confusion, and dysarthria after rapidly ascending a 4,404 m (14,267 ft) peak. Head CT revealed cerebral edema and hydrocephalus. She was hypotensive and required vasopressors prior to evacuation to a lower-altitude intensive care unit and received initial treatment for high-altitude cerebral edema (HACE) with dexamethasone. Imaging and clinical workup revealed obstructive hydrocephalus due to a colloid cyst with minimal radiographical evidence of cerebral edema except due to the compressive effects of hydrocephalus. She transiently developed stress-induced cardiomyopathy and mixed neurocardiogenic shock. This case emphasizes the importance of considering HACE mimics at high altitude triggered by hypoxia-mediated increases in intracranial pressure.
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