<div><p>High altitude flight in rarefied, extremely cold and hypoxic air is a very challenging activity. Only a few species of birds can achieve it. Hitherto, the structure of the lungs of such birds has not been studied. This is because of the rarity of such species and the challenges of preparing well-fixed lung tissue. Here, it was posited that in addition to the now proven physiological adaptations, high altitude flying birds will also have acquired pulmonary structural adaptations that enable them to obtain the large amounts of oxygen (O<sub>2</sub>) needed for flight at high elevation, an environment where O<sub>2</sub> levels are very low. The Andean goose (<i>Chloephaga melanoptera</i>) normally resides at altitudes above 3000 meter...
The bar-headed goose is famed for migratory flight at extreme altitude. To better understand the phy...
Many birds fly at high altitude, either during long-distance flights or by virtue of residence in hi...
We examined the control of breathing and respiratory gas exchange in six species of high-altitude du...
High altitude flight in rarefied, extremely cold and hypoxic air is a very challenging activity. Onl...
Bar-headed geese migrate over the Himalayas at up to 9000m elevation where they must sustain the hig...
Bar-headed geese migrate over the Himalayas at up to 9000m elevation where they must sustain the hig...
<p>BM, body mass; τ<sub>ht</sub>, harmonic mean thickness of the blood-gas (tissue) barrier; VL.BM<s...
Birds living at high altitude (>3,000 meters) are not only able to cope with reduced oxygen availabi...
Many high-altitude vertebrates have evolved increased capacities in their oxygen transport cascade (...
Many high-altitude vertebrates have evolved increased capacities in their oxygen transport cascade (...
This is the final version. Available on open access from eLife Sciences Publications via the DOI in ...
The metabolic cost of breathing at rest has never been successfully measured in birds, but has been ...
High-altitude (HA) life is challenging due to the reduced partial pressure of oxygen (hypoxia). Henc...
The metabolic cost of breathing at rest has never been successfully measured in birds, but has been ...
High-altitude (HA) life is challenging due to the reduced partial pressure of oxygen (hypoxia). Henc...
The bar-headed goose is famed for migratory flight at extreme altitude. To better understand the phy...
Many birds fly at high altitude, either during long-distance flights or by virtue of residence in hi...
We examined the control of breathing and respiratory gas exchange in six species of high-altitude du...
High altitude flight in rarefied, extremely cold and hypoxic air is a very challenging activity. Onl...
Bar-headed geese migrate over the Himalayas at up to 9000m elevation where they must sustain the hig...
Bar-headed geese migrate over the Himalayas at up to 9000m elevation where they must sustain the hig...
<p>BM, body mass; τ<sub>ht</sub>, harmonic mean thickness of the blood-gas (tissue) barrier; VL.BM<s...
Birds living at high altitude (>3,000 meters) are not only able to cope with reduced oxygen availabi...
Many high-altitude vertebrates have evolved increased capacities in their oxygen transport cascade (...
Many high-altitude vertebrates have evolved increased capacities in their oxygen transport cascade (...
This is the final version. Available on open access from eLife Sciences Publications via the DOI in ...
The metabolic cost of breathing at rest has never been successfully measured in birds, but has been ...
High-altitude (HA) life is challenging due to the reduced partial pressure of oxygen (hypoxia). Henc...
The metabolic cost of breathing at rest has never been successfully measured in birds, but has been ...
High-altitude (HA) life is challenging due to the reduced partial pressure of oxygen (hypoxia). Henc...
The bar-headed goose is famed for migratory flight at extreme altitude. To better understand the phy...
Many birds fly at high altitude, either during long-distance flights or by virtue of residence in hi...
We examined the control of breathing and respiratory gas exchange in six species of high-altitude du...