Intra-specific variability in movement behaviour occurs in all major taxonomic groups. Despite its common occurrence and ecological consequences, individual variability is often overlooked. As a result, there is a persistent gap in knowledge about drivers of intra-specific variability in movement and its role in fulfilling life history requirements. We apply a context-focused approach to bull sharks (Carcharhinus leucas), a highly mobile marine predator, incorporating intra-specific variability to understand how variable movement patterns arise and how they might be altered under future change scenarios. Spatial analysis of sharks, acoustically tagged both at their distributional limit and the centre of distribution in southern Africa, was ...
Long-distance movements of animals are an important driver of population spatial dynamics and determ...
Bull sharks (Carcharhinus leucas) are globally distributed top predators that play an important ecol...
The ability to predict animal movement based on environmental change is essential for understanding ...
Intra-specific variability in movement behaviour occurs in all major taxonomic groups. Despite its c...
Abstract Despite its consequences for ecological processes and population dynamics, intra‐specific v...
Bull sharks (Carcharhinus leucas) are globally distributed top predators that play an important ecol...
Animals follow specific movement patterns and search strategies to maximize encounters with essentia...
Long-distance movements of animals are an important driver of population spatial dynamics and determ...
Globally, marine animal distributions are shifting in response to a changing climate. These shifts a...
The ability to predict animal movement based on environmental change is essential for understanding ...
Animal movement and habitat selection are in part a response to landscape heterogeneity. Many studie...
Understanding animal movement decisions that involve migration is critical for evaluating population...
The movements of predators are inherently connected to their prey and environment. Yet, quantifying ...
To maximize fitness within heterogeneous landscapes, animals are predicted to attempt to maximize ti...
Few studies have considered linkages of mobile predators across large spatial scales despite their s...
Long-distance movements of animals are an important driver of population spatial dynamics and determ...
Bull sharks (Carcharhinus leucas) are globally distributed top predators that play an important ecol...
The ability to predict animal movement based on environmental change is essential for understanding ...
Intra-specific variability in movement behaviour occurs in all major taxonomic groups. Despite its c...
Abstract Despite its consequences for ecological processes and population dynamics, intra‐specific v...
Bull sharks (Carcharhinus leucas) are globally distributed top predators that play an important ecol...
Animals follow specific movement patterns and search strategies to maximize encounters with essentia...
Long-distance movements of animals are an important driver of population spatial dynamics and determ...
Globally, marine animal distributions are shifting in response to a changing climate. These shifts a...
The ability to predict animal movement based on environmental change is essential for understanding ...
Animal movement and habitat selection are in part a response to landscape heterogeneity. Many studie...
Understanding animal movement decisions that involve migration is critical for evaluating population...
The movements of predators are inherently connected to their prey and environment. Yet, quantifying ...
To maximize fitness within heterogeneous landscapes, animals are predicted to attempt to maximize ti...
Few studies have considered linkages of mobile predators across large spatial scales despite their s...
Long-distance movements of animals are an important driver of population spatial dynamics and determ...
Bull sharks (Carcharhinus leucas) are globally distributed top predators that play an important ecol...
The ability to predict animal movement based on environmental change is essential for understanding ...