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May 7, 2026Annals of Medicine and Surgery0 citationsOpen Access

High-altitude pulmonary edema: a case series of four patients from Nepal

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APAnish PaudyalSBSachin BhattaSDSanjay Dhungana

Key Points

  • This case series aims to describe the clinical presentation and management of high-altitude pulmonary edema in Nepalese trekkers.
  • Retrospective case series of patients with high-altitude pulmonary edema at a tertiary care center in Nepal
  • Cases identified from hospital records
  • Narrative literature review for context
  • Four previously healthy trekkers developed acute high-altitude pulmonary edema after rapid ascent above 4000 m
  • Patients presented with dyspnea, cough, hypoxemia (SpO2 55-60%), and bilateral crackles
  • All patients received oxygen therapy and supportive care, showing gradual improvement and discharge within 3-5 days

Abstract

Background and importance: High-altitude pulmonary edema (HAPE) is a potentially fatal, non-cardiogenic pulmonary edema that develops after rapid ascent above 2500 m. Its incidence is influenced by ascent rate, altitude, and individual susceptibility, with risk factors including overexertion, cold exposure, respiratory infection, and genetic predisposition. Despite Nepal’s extensive high-altitude trekking activity, published HAPE reports remain limited. This case series describes the clinical presentation, diagnostic features, and management outcomes of HAPE in Nepalese trekkers to promote early recognition and guide timely interventions. Methods: This retrospective case series included patients with HAPE managed at a tertiary care center in Nepal. Cases were identified from hospital records, and relevant literature was narratively reviewed to contextualize findings. Case presentation: Four previously healthy adults developed acute HAPE after rapid ascent above 4000 m in Nepal. They presented with dyspnea, cough, hypoxemia (SpO 2 55–60%), and bilateral crackles. Imaging confirmed non-cardiogenic pulmonary edema. All patients received supplemental oxygen, nifedipine, and supportive care, resulting in gradual clinical improvement and discharge within 3–5 days. Clinical discussion: This series highlights the clinical variability of HAPE and emphasizes early diagnosis, descent, and oxygen therapy as mainstays of treatment. Rapid ascent, excessive exertion, cold exposure, and preceding respiratory infection were identified as common triggers. Diagnosis relied on clinical assessment supported by imaging, including bedside ultrasound. All patients recovered with conservative management. Conclusion: HAPE is life-threatening but reversible with prompt recognition and management. Strengthening clinician awareness, training, and early diagnostic capacity in high-altitude regions is essential to reduce associated morbidity and mortality.

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Cite This Study

Paudyal et al. (2026) studied this question.

synapsesocial.com/papers/69fbefef164b5133a91a40c2https://doi.org/10.1097/ms9.0000000000004976
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