Continued divergence in VO2max of rats artificially selected for running endurance is mediated by greater convective blood O2 delivery.
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Aerobic metabolism underlies complexity and capacityBrain activation patterns at exhaustion in rats that differ in inherent exercise capacity.Artificial selection for whole animal low intrinsic aerobic capacity co-segregates with hypoxia-induced cardiac pump failure.Rat strains bred for low and high aerobic running capacity do not differ in their survival time to hemorrhage.Metabolomics of aerobic metabolism in mice selected for increased maximal metabolic rate.Phenotypic and evolutionary plasticity of body composition in rats selectively bred for high endurance capacity.Lower oxidative DNA damage despite greater ROS production in muscles from rats selectively bred for high running capacity.Determination of minimum alveolar concentration for isoflurane and sevoflurane in a rodent model of human metabolic syndrome.Intrinsic aerobic capacity correlates with greater inherent mitochondrial oxidative and H2O2 emission capacities without major shifts in myosin heavy chain isoformDeterminants of intra-specific variation in basal metabolic rate.Vascularity of myocardium and gastrocnemius muscle in rats selectively bred for endurance running capacity.Dysfunction of inflammation-resolving pathways is associated with exaggerated postoperative cognitive decline in a rat model of the metabolic syndrome.Basic concepts about genes, inactivity and aging.Gene expression profiling of skeletal muscle in exercise-trained and sedentary rats with inborn high and low VO2max.Peripheral oxygen transport and utilization in rats following continued selective breeding for endurance running capacity.Continued artificial selection for running endurance in rats is associated with improved lung functionDevelopment of animal models to test the fundamental basis of gene-environment interactions.Genomics and genetics in the biology of adaptation to exercise.A comparative meta-analysis of maximal aerobic metabolism of vertebrates: implications for respiratory and cardiovascular limits to gas exchange.Ventilation and respiratory mechanics.Aerobic capacity-dependent differences in cardiac gene expression.Intracellular oxygen tension limits muscle contraction-induced change in muscle oxygen consumption under hypoxic conditions during Hb-free perfusion.Selective breeding as a tool to probe skeletal response to high voluntary locomotor activity in mice.Reductions in prolonged swimming capacity following freshwater colonization in multiple threespine stickleback populations.Theoretical and Biological Evaluation of the Link between Low Exercise Capacity and Disease Risk.
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P2860
Continued divergence in VO2max of rats artificially selected for running endurance is mediated by greater convective blood O2 delivery.
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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name
Continued divergence in VO2max ...... convective blood O2 delivery.
@en
Continued divergence in VO2max ...... convective blood O2 delivery.
@nl
type
label
Continued divergence in VO2max ...... convective blood O2 delivery.
@en
Continued divergence in VO2max ...... convective blood O2 delivery.
@nl
prefLabel
Continued divergence in VO2max ...... convective blood O2 delivery.
@en
Continued divergence in VO2max ...... convective blood O2 delivery.
@nl
P2093
P2860
P1476
Continued divergence in VO2max ...... convective blood O2 delivery.
@en
P2093
Harrieth E Wagner
Lauren G Koch
Norberto C Gonzalez
Peter D Wagner
Richard A Howlett
Scott D Kirkton
Steven L Britton
P2860
P304
P356
10.1152/JAPPLPHYSIOL.01527.2005
P407
P577
2006-06-15T00:00:00Z