Moults characterise insect growth trajectories, typically following a consistent pattern known as Dyar's rule; proportional size increments remain constant across inter-instar moults. Empirical work suggests that oxygen limitation triggers moulting. The insect respiratory system, and its oxygen supply capacity, grows primarily at moults. It is hypothesized that the oxygen demand increases with increasing body mass, eventually meeting the oxygen supply capacity at an instar-specific critical mass where moulting is triggered. Deriving from this hypothesis, we develop a novel mathematical model for moulting and growth in insect larvae. Our mechanistic model has great success in predicting moulting sizes in four butterfly species, indirectly su...
<div><p>Body size and development time are important life history traits because they are often high...
Body size and development time are important life history traits because they are often highly corre...
Abstract 1. Juvenile growth trajectories evolve via the interplay of selective pressures on age and...
Moults characterise insect growth trajectories, typically following a consistent pattern known as Dy...
Moults characterise insect growth trajectories, typically following a consistent pattern known as Dy...
Body size is a key life history trait and knowledge of its mechanistic basis is crucial in life hist...
Body size is a key life history trait and knowledge of its mechanistic basis is crucial in life hist...
Recent data suggest that oxygen limitation may induce moulting in larval insects. This oxygen depend...
Body size is a key life history trait and knowledge of its mechanistic basis is crucial in life hist...
Recent data suggest that oxygen limitation may induce moulting in larval insects. This oxygen depend...
Abstract Body size is a key life history trait, and knowledge of its mechanistic basis is crucial in...
Abstract Recent data suggest that oxygen limitation may induce moulting in larval insects. This oxyg...
Body size and development time are important life history traits because they are often highly corre...
Body size and development time are important life history traits because they are often highly corre...
1. Juvenile growth trajectories evolve via the interplay of selective pressures on age and size at m...
<div><p>Body size and development time are important life history traits because they are often high...
Body size and development time are important life history traits because they are often highly corre...
Abstract 1. Juvenile growth trajectories evolve via the interplay of selective pressures on age and...
Moults characterise insect growth trajectories, typically following a consistent pattern known as Dy...
Moults characterise insect growth trajectories, typically following a consistent pattern known as Dy...
Body size is a key life history trait and knowledge of its mechanistic basis is crucial in life hist...
Body size is a key life history trait and knowledge of its mechanistic basis is crucial in life hist...
Recent data suggest that oxygen limitation may induce moulting in larval insects. This oxygen depend...
Body size is a key life history trait and knowledge of its mechanistic basis is crucial in life hist...
Recent data suggest that oxygen limitation may induce moulting in larval insects. This oxygen depend...
Abstract Body size is a key life history trait, and knowledge of its mechanistic basis is crucial in...
Abstract Recent data suggest that oxygen limitation may induce moulting in larval insects. This oxyg...
Body size and development time are important life history traits because they are often highly corre...
Body size and development time are important life history traits because they are often highly corre...
1. Juvenile growth trajectories evolve via the interplay of selective pressures on age and size at m...
<div><p>Body size and development time are important life history traits because they are often high...
Body size and development time are important life history traits because they are often highly corre...
Abstract 1. Juvenile growth trajectories evolve via the interplay of selective pressures on age and...