Optimal migration theory predicts that birds minimizing the overall time of migration should adjust stopover duration with respect to the rate of fuel accumulation. Recent theoretical developments also take into account the wind situation and predict that there is a time window (a set of days) during which birds should depart when assisted by winds but will not do so if there are head winds. There is also a final day when birds will depart irrespective of wind conditions. Hence, the wind model of optimal migration theory predicts that birds should be sensitive to winds and that there should be a correlation between departures and winds blowing towards the intended migration direction. We tested this assumption by tracking the departures of ...
A bird's ground speed is influenced by the wind conditions it encounters. Wind conditions, although ...
Many passerines migrate during the night and at high altitudes, making their migration difficult to ...
Meteorological conditions, fuel load and date in the season can affect the departure decisions among...
Departure decisions of how and when to leave a stopover site may be of critical importance for the m...
Migratory birds are predicted to adapt their departure to wind, changing their threshold of departur...
Although it is often assumed that birds strongly prefer tailwinds for their migratory flights, we pr...
Although it is often assumed that birds strongly prefer tailwinds for their migratory flights, we pr...
A migrating bird’s response to wind can impact its timing, energy expenditure, and path taken. The e...
Although it is often assumed that birds strongly prefer tailwinds for their migratory flights, we pr...
Air and water currents affect the timing and energy expenditure of many migratory animals, and there...
Air and water currents affect the timing and energy expenditure of many migratory animals, and there...
Air and water currents affect the timing and energy expenditure of many migratory animals, and there...
Recent models have worked with the assumption that birds try to minimize either time, energy or pred...
Wind speed and direction have a significant effect on a flying bird's ground speed. Migrants are the...
Songbird migrants use stopovers between flight bouts to rest and refuel for the upcoming flights. Be...
A bird's ground speed is influenced by the wind conditions it encounters. Wind conditions, although ...
Many passerines migrate during the night and at high altitudes, making their migration difficult to ...
Meteorological conditions, fuel load and date in the season can affect the departure decisions among...
Departure decisions of how and when to leave a stopover site may be of critical importance for the m...
Migratory birds are predicted to adapt their departure to wind, changing their threshold of departur...
Although it is often assumed that birds strongly prefer tailwinds for their migratory flights, we pr...
Although it is often assumed that birds strongly prefer tailwinds for their migratory flights, we pr...
A migrating bird’s response to wind can impact its timing, energy expenditure, and path taken. The e...
Although it is often assumed that birds strongly prefer tailwinds for their migratory flights, we pr...
Air and water currents affect the timing and energy expenditure of many migratory animals, and there...
Air and water currents affect the timing and energy expenditure of many migratory animals, and there...
Air and water currents affect the timing and energy expenditure of many migratory animals, and there...
Recent models have worked with the assumption that birds try to minimize either time, energy or pred...
Wind speed and direction have a significant effect on a flying bird's ground speed. Migrants are the...
Songbird migrants use stopovers between flight bouts to rest and refuel for the upcoming flights. Be...
A bird's ground speed is influenced by the wind conditions it encounters. Wind conditions, although ...
Many passerines migrate during the night and at high altitudes, making their migration difficult to ...
Meteorological conditions, fuel load and date in the season can affect the departure decisions among...