[HTML][HTML] Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift

N Barbour, H Bailey, WF Fagan, W Mustin, V Baboolal… - Animals, 2023 - mdpi.com
Simple Summary Tracking juvenile animals is often difficult due to their small body sizes. We
put miniature satellite tags on 40 captive-raised (“head-started”) green sea turtles (Chelonia …

Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift.

N Barbour, H Bailey, WF Fagan, W Mustin… - Animals (2076 …, 2023 - search.ebscohost.com
Abstract Simple Summary: Tracking juvenile animals is often difficult due to their small body
sizes. We put miniature satellite tags on 40 captive-raised (" head-started") green sea turtles …

Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift

N Barbour, H Bailey, WF Fagan… - Animals: an open …, 2023 - pubmed.ncbi.nlm.nih.gov
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

Satellite tracking of head-started juvenile green turtles (Chelonia mydas) reveals release effects and an ontogenetic shift.

N Barbour, H Bailey, WF Fagan, W Mustin, V Baboolal… - 2023 - cabidigitallibrary.org
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

[HTML][HTML] Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift

N Barbour, H Bailey, WF Fagan, W Mustin… - Animals: an Open …, 2023 - ncbi.nlm.nih.gov
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift

N Barbour, H Bailey, WF Fagan, W Mustin, V Baboolal… - Animals, 2023 - par.nsf.gov
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

[PDF][PDF] Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift. Animals 2023, 13, 1218

N Barbour, H Bailey, WF Fagan, W Mustin, V Baboolal… - 2023 - researchgate.net
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

[PDF][PDF] Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift. Animals 2023, 13, 1218

N Barbour, H Bailey, WF Fagan, W Mustin, V Baboolal… - 2023 - georgehbalazs.com
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

[PDF][PDF] Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift. Animals 2023, 13, 1218

N Barbour, H Bailey, WF Fagan, W Mustin, V Baboolal… - 2023 - academia.edu
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …

Satellite Tracking of Head-Started Juvenile Green Turtles (Chelonia mydas) Reveals Release Effects and an Ontogenetic Shift

N Barbour, H Bailey, WF Fagan, W Mustin… - Animals, 2023 - research.monash.edu
Juveniles of marine species, such as sea turtles, are often understudied in movement
ecology. To determine dispersal patterns and release effects, we released 40 satellite …