Spanish genetic admixture is associated with larger V(O2) max decrement from sea level to 4338 m in Peruvian Quechua.
about
Identifying signatures of natural selection in Tibetan and Andean populations using dense genome scan dataTwo routes to functional adaptation: Tibetan and Andean high-altitude nativesGenetic factors associated with exercise performance in atmospheric hypoxiaEvolutionary adaptation to high altitude: a view from in uteroDevelopment of a Panel of Genome-Wide Ancestry Informative Markers to Study Admixture Throughout the AmericasIdentifying positive selection candidate loci for high-altitude adaptation in Andean populations.Developmental and genetic components explain enhanced pulmonary volumes of female Peruvian Quechua.Physical fitness, activity, and insulin dynamics in early pubertal childrenMeasuring and using admixture to study the genetics of complex diseasesTrade-offs in relative limb length among Peruvian children: extending the thrifty phenotype hypothesis to limb proportionsMGEA5-14 polymorphism and type 2 diabetes in Mexico City.Genomic analysis of high altitude adaptation: innovations and implications.Angiotensin-converting enzyme genotype and arterial oxygen saturation at high altitude in Peruvian Quechua.A genomewide admixture mapping panel for Hispanic/Latino populations.Altitude Adaptation: A Glimpse Through Various Lenses.Do high-altitude natives have enhanced exercise performance at altitude?Responses of Han migrants compared to Tibetans at high altitude.Measuring high-altitude adaptation.Is there an elephant in the room? Addressing rival approaches to the interpretation of growth perturbations and small size.Why Are High-Altitude Natives So Strong at Altitude? Maximal Oxygen Transport to the Muscle Cell in Altitude Natives.Why Are High Altitude Natives So Strong at High Altitude? Nature vs. Nurture: Genetic Factors vs. Growth and Development.Lessons in hypoxic adaptation from high-altitude populations.Ancestry explains the blunted ventilatory response to sustained hypoxia and lower exercise ventilation of Quechua altitude natives.Pulmonary gas exchange at maximal exercise in Danish lowlanders during 8 wk of acclimatization to 4,100 m and in high-altitude Aymara natives.Aerobic capacity of Peruvian Quechua: a test of the developmental adaptation hypothesis.Maternal oxygen delivery is not related to altitude- and ancestry-associated differences in human fetal growth
P2860
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P2860
Spanish genetic admixture is associated with larger V(O2) max decrement from sea level to 4338 m in Peruvian Quechua.
description
2003 nî lūn-bûn
@nan
2003年の論文
@ja
2003年学术文章
@wuu
2003年学术文章
@zh
2003年学术文章
@zh-cn
2003年学术文章
@zh-hans
2003年学术文章
@zh-my
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name
Spanish genetic admixture is associated with larger V
@nl
Spanish genetic admixture is a ...... to 4338 m in Peruvian Quechua.
@en
type
label
Spanish genetic admixture is associated with larger V
@nl
Spanish genetic admixture is a ...... to 4338 m in Peruvian Quechua.
@en
prefLabel
Spanish genetic admixture is associated with larger V
@nl
Spanish genetic admixture is a ...... to 4338 m in Peruvian Quechua.
@en
P2093
P2860
P1476
Spanish genetic admixture is a ...... to 4338 m in Peruvian Quechua.
@en
P2093
Alfredo Gamboa
Esteban J Parra
Fabiola León-Velarde
Ivette Rodriguez
Jose-Antonio Palacios
Maria Rivera
Mark D Shriver
Tom D Brutsaert
P2860
P304
P356
10.1152/JAPPLPHYSIOL.01088.2002
P407
P577
2003-04-11T00:00:00Z