Nervous System Function during Exercise in Hypoxia
被引:82
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作者:
Amann, Markus
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机构:
Univ Utah, Dept Internal Med, Salt Lake City, UT 84148 USA
Univ Zurich, Inst Physiol, Zurich, Switzerland
ETH, Zurich, SwitzerlandUniv Utah, Dept Internal Med, Salt Lake City, UT 84148 USA
Amann, Markus
[1
,2
,3
]
Kayser, Bengt
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机构:
Univ Geneva, Inst Movement Sci & Sports Med, Geneva, SwitzerlandUniv Utah, Dept Internal Med, Salt Lake City, UT 84148 USA
Kayser, Bengt
[4
]
机构:
[1] Univ Utah, Dept Internal Med, Salt Lake City, UT 84148 USA
performance;
muscle afferents;
neural drive;
autonomic nervous system;
brain;
IV MUSCLE AFFERENTS;
CHRONIC HYPOBARIC HYPOXIA;
MOTONEURON FIRING RATES;
HUMAN SKELETAL-MUSCLE;
CENTRAL MOTOR DRIVE;
PEAK HEART-RATE;
GROUP-III;
MAXIMAL EXERCISE;
ACUTE HYPOXEMIA;
CARDIAC-OUTPUT;
D O I:
10.1089/ham.2008.1105
中图分类号:
Q6 [生物物理学];
学科分类号:
071011 ;
摘要:
Amann, Markus, and Bengt Kayser. Nervous system function during exercise in hypoxia. High Alt. Med. Biol. 10: 149-164, 2009.-Aerobic exercise capacity decreases with exposure to hypoxia. This article focuses on the effects of hypoxia on nervous system function and the potential consequences for the exercising human. Emphasis is put on somatosensory muscle afferents due to their crucial role in the reflex inhibition of muscle activation and in cardiorespiratory reflex control during exercise. We review the evidence of hypoxia influences on muscle afferents and discuss important consequences for exercise performance. Efferent (motor) nerves are less affected at altitude and are thought to stay fairly functional even in severe levels of arterial hypoxemia. Altitude also alters autonomic nervous system functions, which are thought to play an important role in the regulation of cardiac output and ventilation. Finally, the consequences of hypoxia-induced cortical adaptations and dysfunctions are evaluated in terms of neurotransmitter turnover, brain electrical activity, and cortical excitability. Even though the cessation of exercise or the reduction of exercise intensity, when reaching maximum performance, implies reduced motor recruitment by the nervous system, the mechanisms that lead to the derecruitment of active muscle are still not well understood. In moderate hypoxia, muscle afferents appear to play an important role, whereas in severe hypoxia brain oxygenation may play a more important role.
机构:
Univ Yamanashi, Integrated Grad Sch Dept Med Engn & Agr Sci, Kofu, Yamanashi, JapanUniv Yamanashi, Integrated Grad Sch Dept Med Engn & Agr Sci, Kofu, Yamanashi, Japan
Dobashi, Shohei
Horiuchi, Masahiro
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机构:
Mt Fuji Res Inst, Div Human Environm Sci, Fujiyoshida, Yamanashi, JapanUniv Yamanashi, Integrated Grad Sch Dept Med Engn & Agr Sci, Kofu, Yamanashi, Japan
Horiuchi, Masahiro
Endo, Junko
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机构:
Mt Fuji Res Inst, Div Human Environm Sci, Fujiyoshida, Yamanashi, JapanUniv Yamanashi, Integrated Grad Sch Dept Med Engn & Agr Sci, Kofu, Yamanashi, Japan
Endo, Junko
Kiuchi, Masataka
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机构:
Univ Yamanashi, Grad Sch Dept Educ, Kofu, Yamanashi, JapanUniv Yamanashi, Integrated Grad Sch Dept Med Engn & Agr Sci, Kofu, Yamanashi, Japan
Kiuchi, Masataka
Koyama, Katsuhiro
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机构:
Univ Yamanashi, Grad Sch Dept Interdisciplinary Res, 4-4-37 Takeda, Kofu, Yamanashi 4008510, JapanUniv Yamanashi, Integrated Grad Sch Dept Med Engn & Agr Sci, Kofu, Yamanashi, Japan
机构:
Northumbria Univ, Fac Hlth & Life Sci, Newcastle Upon Tyne, Tyne & Wear, EnglandNorthumbria Univ, Fac Hlth & Life Sci, Newcastle Upon Tyne, Tyne & Wear, England
Goodall, Stuart
Twomey, Rosie
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机构:
Univ Brighton, Sch Sport & Serv Management, Eastbourne, Eastbourne, EnglandNorthumbria Univ, Fac Hlth & Life Sci, Newcastle Upon Tyne, Tyne & Wear, England
Twomey, Rosie
Amann, Markus
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机构:
Univ Utah, Dept Med, Salt Lake City, UT USANorthumbria Univ, Fac Hlth & Life Sci, Newcastle Upon Tyne, Tyne & Wear, England
机构:
Hop Avicenne, AP HP, Serv Physiol Explorat Fonct & Med Sport, F-93009 Bobigny, FranceUniv Paris 13, Lab Reponses Cellulaires & Fonct Hypoxie, EA 2363, F-93017 Bobigny, France
Letournel, Murielle
Beaudry, Michele
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机构:
Univ Paris 13, Lab Reponses Cellulaires & Fonct Hypoxie, EA 2363, F-93017 Bobigny, FranceUniv Paris 13, Lab Reponses Cellulaires & Fonct Hypoxie, EA 2363, F-93017 Bobigny, France
Beaudry, Michele
Richalet, Jean-Paul
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机构:
Univ Paris 13, Lab Reponses Cellulaires & Fonct Hypoxie, EA 2363, F-93017 Bobigny, FranceUniv Paris 13, Lab Reponses Cellulaires & Fonct Hypoxie, EA 2363, F-93017 Bobigny, France