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American Medical Research Expedition to Everest
Sleep and Respiration at High Altitude
Physiology of Permanent Residents of High Altitude
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acclimatization ACE activity acute mountain sickness adaptation alkalosis alveolar gas American Medical Research Appl Physiol arterial blood arterial oxygen saturation awake barometric pressure blunted brain blood flow breath-to-breath breathing pattern carbon dioxide carotid body changes chemoreflex chemosensitivity chemosensory input CHERNIACK chronic mountain sickness climbers Clin decreased effect Environ Exercise Physiol exercise ventilation Expedition to Everest exposure extreme altitude glucose hematocrit high altitude high-altitude natives hypercapnia hypercapnic hyperventilation hypoxemia hypoxia hypoxic response hypoxic ventilatory response increased J. B. WEST LAHIRI lower lowlanders mechanism Medical Research Expedition metabolic rate MILLEDGE mmHg Mount Everest non-REM sleep normal oscillations oxygen affinity oxygen saturation Paco2 Pao2 partial pressure Pco2 periodic breathing physiological polycythemia pulmonary reduced REM sleep Respir Respirat response to hypoxia Sao2 sea level sensitivity to hypoxia Sherpas showed Sleep Apnea sojourners stimulation studies subjects summit Tibetan tissue upper airway muscles values ventilatory sensitivity wakefulness