Related Experiment Video
Updated: Oct 29, 2025

A Modified Mirror Test as a Visual Guide for the Self-awareness Trait in Wild Antarctica Penguins, Pygoscelis adeliae
Published on: July 8, 2025
Movement patterns and activity levels are shaped by the neonatal environment in Antarctic fur seal pups
Rebecca Nagel1, Sina Mews2, Timo Adam2,3
1Department of Animal Behaviour, Bielefeld University, 33501, Bielefeld, Germany. rebecca.nagel@uni-bielefeld.de.
Insights
Antarctic fur seal pups
Area of Science:
- Marine Biology
- Animal Behavior
- Ecology
Background:
- Juvenile tracking studies are scarce, limiting understanding of early-life activity drivers.
- Antarctic fur seal pups face critical developmental stages with unknown influencing factors.
Purpose of the Study:
- Investigate individual and environmental factors affecting Antarctic fur seal pup activity.
- Determine how colony density influences pup movement and behavior.
Main Methods:
- Utilized hourly GPS data from 66 Antarctic fur seal pups from birth to moult.
- Employed a two-state hidden Markov model to classify movement into 'active' and 'inactive' states.
- Sampled pups from high- and low-density colonies over two years.
Main Results:
- Pup movement characterized by central place exploration (away and return).
- Activity levels were not significantly influenced by sex, body condition, or temperature.
- Low-density colony pups exhibited higher activity, increased activity with age, and earlier use of protective tussock grass.
Conclusions:
- Extrinsic factors, particularly colony of birth, significantly shape early-life activity patterns in Antarctic fur seal pups.
- Pup activity and movement demonstrate adaptive potential in response to environmental conditions.
- Understanding juvenile behavior is crucial for conservation and management strategies.
Abstract:
Tracking studies of juveniles are rare compared to those of adults, and consequently little is known about the influence of intrinsic and extrinsic factors on activity during this critical life stage. We used hourly GPS data, collected from 66 Antarctic fur seal pups from birth until moulting, to investigate the explanatory power of multiple individual-based and environmental variables on activity levels. Pups were sampled from two nearby breeding colonies of contrasting density during two subsequent years, and a two-state hidden Markov model was used to identify modalities in their movement behaviour, specifically 'active' and 'inactive' states. We found that movement was typified by central place exploration, with active movement away from and subsequent return to a location of inactivity. The probability of such directed exploration was unaffected by several factors known to influence marine mammal movement including sex, body condition, and temperature. Compared to pups born at the high-density colony, pups at low-density were more active, increased their activity with age, and transitioned earlier into the tussock grass, which offers protection from predators and extreme weather. Our study illustrates the importance of extrinsic factors, such as colony of birth, to early-life activity patterns and highlights the adaptive potential of movement.
Related Concept Videos
Imprinting
Parental Care
Socioemotional Development during Infancy
Primary Temperament Types
Fixed Action Patterns

