Although more massive flight muscles along with larger wings, higher wingbeat frequencies and greater stroke amplitudes enhance force and power production in flapping flight, the extent to which these parameters may be correlated with other morphological features relevant to flight physiology and biomechanics remains unclear. Intraspecifically, we hypothesized that greater vertical load-lifting capacity would correlate with higher wingbeat frequencies and relatively more massive flight muscles, along with relatively bigger hearts, lungs, and stomachs to enhance metabolic capacity and energy supply, but also with smaller body size given the overall negative allometric dependence of maximum flight performance in volant taxa. To explore intras...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Avian flight performance decreases with body size in birds, but previous work has been unable to def...
Avian flight performance decreases with body size in birds, but previous work has been unable to def...
SYNOPSIS. Body size, pectoralis composition, aspect ratio of the wing, and for-ward speed affect the...
For flying animals aerodynamic theory predicts that mechanical power required to fly scales as P pro...
Flexible metabolic phenotypes allow animals to adjust physiology to better fit ecological or environ...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Environmental changes are responsible for the evolution of £exible physiology and the extent of phen...
Flexible metabolic phenotypes allow animals to adjust physiology to better fit ecological or environ...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Avian flight performance decreases with body size in birds, but previous work has been unable to def...
Avian flight performance decreases with body size in birds, but previous work has been unable to def...
SYNOPSIS. Body size, pectoralis composition, aspect ratio of the wing, and for-ward speed affect the...
For flying animals aerodynamic theory predicts that mechanical power required to fly scales as P pro...
Flexible metabolic phenotypes allow animals to adjust physiology to better fit ecological or environ...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Environmental changes are responsible for the evolution of £exible physiology and the extent of phen...
Flexible metabolic phenotypes allow animals to adjust physiology to better fit ecological or environ...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...
Flight capacity is one of the most important innovations in animal evolution; it only evolved in ins...