Literature DB >> 15920097

Effect of exercise on cerebral perfusion in humans at high altitude.

C H E Imray1, S D Myers, K T S Pattinson, A R Bradwell, C W Chan, S Harris, P Collins, A D Wright.   

Abstract

The effects of submaximal and maximal exercise on cerebral perfusion were assessed using a portable, recumbent cycle ergometer in nine unacclimatized subjects ascending to 5,260 m. At 150 m, mean (SD) cerebral oxygenation (rSO2%) increased during submaximal exercise from 68.4 (SD 2.1) to 70.9 (SD 3.8) (P < 0.0001) and at maximal oxygen uptake (.VO2(max)) to 69.8 (SD 3.1) (P < 0.02). In contrast, at each of the high altitudes studied, rSO2 was reduced during submaximal exercise from 66.2 (SD 2.5) to 62.6 (SD 2.1) at 3,610 m (P < 0.0001), 63.0 (SD 2.1) to 58.9 (SD 2.1) at 4,750 m (P < 0.0001), and 62.4 (SD 3.6) to 61.2 (SD 3.9) at 5,260 m (P < 0.01), and at .VO2(max) to 61.2 (SD 3.3) at 3,610 m (P < 0.0001), to 59.4 (SD 2.6) at 4,750 m (P < 0.0001), and to 58.0 (SD 3.0) at 5,260 m (P < 0.0001). Cerebrovascular resistance tended to fall during submaximal exercise (P = not significant) and rise at .VO2(max), following the changes in arterial oxygen saturation and end-tidal CO(2). Cerebral oxygen delivery was maintained during submaximal exercise at 150 m with a nonsignificant fall at .VO2(max), but at high altitude peaked at 30% of .VO2(max) and then fell progressively at higher levels of exercise. The fall in rSO2 and oxygen delivery during exercise may limit exercise at altitude and is likely to contribute to the problems of acute mountain sickness and high-altitude cerebral edema.

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Year:  2005        PMID: 15920097     DOI: 10.1152/japplphysiol.00973.2004

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  23 in total

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6.  [Exercise and the detection of severe acute mountain sickness].

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Review 7.  Evaluating the methods used for measuring cerebral blood flow at rest and during exercise in humans.

Authors:  Michael M Tymko; Philip N Ainslie; Kurt J Smith
Journal:  Eur J Appl Physiol       Date:  2018-05-16       Impact factor: 3.078

8.  Effects of intermittent hypoxia on SaO(2), cerebral and muscle oxygenation during maximal exercise in athletes with exercise-induced hypoxemia.

Authors:  Helen C Marshall; Michael J Hamlin; John Hellemans; Carissa Murrell; Nik Beattie; Ien Hellemans; Tracy Perry; Aimee Burns; Philip N Ainslie
Journal:  Eur J Appl Physiol       Date:  2007-11-21       Impact factor: 3.078

9.  Cerebral hemodynamic and ventilatory responses to hypoxia, hypercapnia, and hypocapnia during 5 days at 4,350 m.

Authors:  Thomas Rupp; François Esteve; Pierre Bouzat; Carsten Lundby; Stéphane Perrey; Patrick Levy; Paul Robach; Samuel Verges
Journal:  J Cereb Blood Flow Metab       Date:  2013-09-25       Impact factor: 6.200

10.  Mortality on Mount Everest, 1921-2006: descriptive study.

Authors:  Paul G Firth; Hui Zheng; Jeremy S Windsor; Andrew I Sutherland; Christopher H Imray; G W K Moore; John L Semple; Robert C Roach; Richard A Salisbury
Journal:  BMJ       Date:  2008-12-11
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