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Brain strain: Blood flow and metabolism in environmental extremes

Research output: Contribution to journalReview articlepeer-review

Abstract

This narrative review compares and contrasts the most commonly encountered environmental stressors on human cerebrovascular functioning. From high altitude and space, extreme apnoea, heat and cold stress, the impact of these stressors on the regulation of cerebral blood flow (CBF) and oxygen metabolism ((Formula presented.)) is discussed. As long as consciousness remains, (Formula presented.) and oxygen delivery ((Formula presented.)) remain stable during acute and chronic exposure to poikilocapnic hypoxia. Such a response is possible with alterations in CBF to maintain a relatively stable (Formula presented.). Likewise, the elevations in CBF during exercise in conditions of acute and chronic hypoxia seem to be appropriate to maintain stable (Formula presented.). In freedivers, prolonged periods of apnoea during breath-hold reflect marked hypoxaemia and acidosis. At these extremes in elite human freedivers, although elevations in CBF seem to maintain (Formula presented.), there is evidence of reductions in (Formula presented.). In contrast to hypoxia, heat- or cold-induced hyperventilation and related hypocapnic-induced vasoconstriction, marked reductions in CBF and (Formula presented.) can occur. In the cold, however, the reductions in CBF seem to be partly compensated by elevations in blood pressure and haemoconcentration. In the heat, Q10-mediated elevations in (Formula presented.) are challenged by cerebral vasoconstriction and limited (Formula presented.), especially when hyperventilation is pronounced. Furthermore, intracranial velocity seems stable during spaceflight despite elevations in (Formula presented.). The implications of these changes in CBF and metabolism during environmental stressors are considered in the context of neuropsychological functioning. Finally, the limited research on cross-exposures on cerebrovascular function is reviewed, and future research directions are proposed.

Original languageEnglish (US)
JournalExperimental Physiology
DOIs
StateAccepted/In press - 2026

Keywords

  • apnoea
  • cerebral oxygen delivery
  • environmental stressors
  • exercise
  • high altitude
  • hyperthermia
  • hypothermia
  • hypoxia

ASJC Scopus subject areas

  • Physiology
  • Nutrition and Dietetics
  • Physiology (medical)

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