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DETERMINANTS OF MUSCLE MAXIMAL O2 UPTAKE AND PERFORMANCE

DETERMINANTS OF MUSCLE MAXIMAL O2 UPTAKE AND PERFORMANCE
肌肉最大摄氧量和表现的决定因素
批准号:
2079871
负责人:
MICHAEL C HOGAN
金额:
$11.84万
依托单位国家:
美国
项目类别:
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-09-30 至 1996-08-31

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中文摘要
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英文摘要
DESCRIPTION: (Adapted from applicant's abstract): The objective of this study is to elucidate the factors that limit maximal 02 consumption (V02max) and performance in working skeletal muscle. 1) The hypothesis that V02 max can be limited by the capacity for 02 diffusion in the peripheral tissue will be tested using an isolated, in situ canine gastrocnemius model, and the isolated knee extensor muscle model in humans. A mathematical model incorporating diffusion limitation has been developed from a combination of Fick's law of diffusion and the Fick principle. A. This model will be used to predict the outcome of various experiments in which 02 delivery is altered through lowered arterial P02, anemia, and ischemia. Special experiments in which the )2 delivery (muscle blood flow X arterial 02 content) will be kept equal between varied conditions of hypoxemia, anemia, and muscle blood flow will be used in both the animal and human studies in an attempt to separate perfusion limitation from diffusion limitation. B. Because muscle blood flow to V02 heterogeneity can mimic 02 diffusion limitation, the problem of tissue heterogeneity will also be investigated in the canine gastrocnemius model using step changes in inert gas and 02 levels of arterial blood and following the muscle venous responses, using methodology developed investigating for pulmonary heterogeneity. 2) Several factors that determine muscle function and performance during high-intensity work will also be investigated. A. The NAD redox state during progressive work will be measured to determine tissue oxygenation and its control of metabolism. B. The role of glycolysis during intense work and the impact of increased activation-relaxation cycles on contractile function and fatigue will be investigated. These experiments will also provide information concerning the amount of ATP produced by glycolysis that is used for membrane functions. C. In all of the experiments in which 02 delivery is manipulated, the development of fatigue will be studied along with changes in blood and muscle acid-base balance. D) Finally, the potential role of granulocyte plugging of muscle microcirculatin after surgery in reducing in situ maximal blood flow will also be investigated.
期刊论文(62)
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会议论文
Effect of physiological levels of caffeine on Ca2+ handling and fatigue development in Xenopus isolated single myofibers.
咖啡因生理水平对非洲爪蟾分离单肌纤维 Ca2 处理和疲劳发展的影响。
DOI: 10.1152/ajpregu.90901.2008
发表时间: 2009
期刊: American journal of physiology. Regulatory, integrative and comparative physiology
影响因子: --
作者: [Rosser,JoelleI, Walsh,Brandon, Hogan,MichaelC]
通讯作者: Hogan,MichaelC
NAD(P)H fluorescence imaging of mitochondrial metabolism in contracting Xenopus skeletal muscle fibers: effect of oxygen availability.
非洲爪蟾骨骼肌纤维收缩过程中线粒体代谢的 NAD(P)H 荧光成像:氧利用率的影响。
DOI: 10.1152/japplphysiol.00849.2004
发表时间: 2005
期刊: Journal of applied physiology (Bethesda, Md. : 1985)
影响因子: --
作者: [Hogan,MichaelC, Stary,CreedM, Balaban,RobertS, Combs,ChristianA]
通讯作者: Combs,ChristianA
Effect of contractile duration on intracellular PO2 kinetics in Xenopus single skeletal myocytes.
收缩持续时间对非洲爪蟾单骨骼肌细胞内 PO2 动力学的影响。
DOI: 10.1152/japplphysiol.00874.2004
发表时间: 2005
期刊: Journal of applied physiology (Bethesda, Md. : 1985)
影响因子: --
作者: [Kindig,CaseyA, Howlett,RichardA, Hogan,MichaelC]
通讯作者: Hogan,MichaelC
Effects of nitric oxide synthase inhibition by L-NAME on oxygen uptake kinetics in isolated canine muscle in situ.
L-NAME 抑制一氧化氮合酶对离体犬肌肉原位吸氧动力学的影响。
DOI: 10.1113/jphysiol.2005.090068
发表时间: 2005
期刊: The Journal of physiology.
影响因子: --
作者: [Grassi,Bruno, Hogan,MichaelC, Kelley,KevinM, Howlett,RichardA, Gladden,LBruce]
通讯作者: Gladden,LBruce
28
    Assessing and Alleviating Skeletal Muscle Ca2+ Handling Dysfunction in Sarcopenia
    Assessing and Alleviating Ca2+ Handling Dysfunction in Sarcopenia
    O2 dependence of oxidative stress in contracting myofibers
    Tissue Imaging, Biochemistry and Morphology
    海外基金