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The effect of age on the relationshi...
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DeLorey, Darren S.
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The effect of age on the relationship between pulmonary oxygen uptake and muscle deoxygenation at the onset of exercise.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
The effect of age on the relationship between pulmonary oxygen uptake and muscle deoxygenation at the onset of exercise./
作者:
DeLorey, Darren S.
面頁冊數:
216 p.
附註:
Source: Dissertation Abstracts International, Volume: 66-02, Section: B, page: 0643.
Contained By:
Dissertation Abstracts International66-02B.
標題:
Biology, Animal Physiology. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=NR00325
ISBN:
0494003251
The effect of age on the relationship between pulmonary oxygen uptake and muscle deoxygenation at the onset of exercise.
DeLorey, Darren S.
The effect of age on the relationship between pulmonary oxygen uptake and muscle deoxygenation at the onset of exercise.
- 216 p.
Source: Dissertation Abstracts International, Volume: 66-02, Section: B, page: 0643.
Thesis (Ph.D.)--The University of Western Ontario (Canada), 2004.
To investigate the control of V˙O2p kinetics, the adaptation of V˙O2p (reflecting the change in muscle O2 consumption during exercise) and near-infrared spectroscopy-derived measurements of muscle deoxygenation (HHb) (reflecting the balance between local muscle O2 delivery and O2 utilization) were examined during the exercise on-and off-transient in young and older adults.
ISBN: 0494003251Subjects--Topical Terms:
1017835
Biology, Animal Physiology.
The effect of age on the relationship between pulmonary oxygen uptake and muscle deoxygenation at the onset of exercise.
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Source: Dissertation Abstracts International, Volume: 66-02, Section: B, page: 0643.
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Adviser: Donald H. Paterson.
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Thesis (Ph.D.)--The University of Western Ontario (Canada), 2004.
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To investigate the control of V˙O2p kinetics, the adaptation of V˙O2p (reflecting the change in muscle O2 consumption during exercise) and near-infrared spectroscopy-derived measurements of muscle deoxygenation (HHb) (reflecting the balance between local muscle O2 delivery and O2 utilization) were examined during the exercise on-and off-transient in young and older adults.
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In healthy young adults HHb adapted at a faster rate than phase 2 V˙O 2p kinetics during moderate- and heavy-intensity exercise, suggesting that an increase in muscle O2 consumption was accompanied by a rapid increase in O2 extraction. Additionally, a time delay (∼12 s) prior to an increase in HHb was observed following the onset of moderate- and heavy-intensity exercise suggesting that local muscle oxygenation status was unchanged following the onset of exercise when presumably muscle O 2 consumption was increasing.
520
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Phase 2 V˙O2p and HR kinetics were slowed in older compared to younger adults during moderate- and heavy-intensity cycling exercise. The slowed V˙O2p kinetics in older adults were accompanied by a greater increase and faster adaptation of HHb compared to young adults during moderate- and heavy-intensity exercise, respectively.
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Following heavy-intensity warm-up exercise, V˙O2p kinetics were accelerated and the adaptation of HHb was slowed at the onset of a subsequent moderate-intensity exercise bout compared to the no-warm-up condition in older adults. The adaptation of V˙O2p and HHb were not affected by warm-up in young adults, despite a similar elevation of local muscle oxygenation in young and older adults, suggesting that the speeding of V˙O2p kinetics in older adults was due to an improvement in muscle O 2 delivery.
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However, during the moderate- and heavy-intensity exercise off-transient, despite an elevated ratio of muscle O2 delivery to muscle O2 demand, V˙O2p kinetics were slower in older compared to younger adults.
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Collectively, these results suggest that in older adults, on-transient V˙O 2p kinetics may be limited by the adaptation of local muscle blood flow and O2 delivery. However, the fundamental control of muscle O 2 consumption may be related to factors other than muscle O2 delivery (i.e. intramuscular factors) in both young and older adults.
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