Genetic and demographic connectivity for PLD of 40 days (left panel) and 130 days (right panel). Line width represents larval transport intensity. Blue and red lines correspond to potential genetic (p ≤ 0.001) and demographic (p > 0.001) connectivity, respectively. All maps were made by using the GSHHS coastline database [51].</p
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Understanding patterns of connectivity among populations of marine organisms is essential for the de...
Strong components for PLD of 40 days (left panel) and 130 days (right panel). Line width stands for ...
Larval transport pathways for PLD of 40 days (left panel) and 130 days (right panel). Line width den...
Number of larvae exchanged for PLD of 40 days (left panel) and 130 days (right panel). Green bars = ...
Connectivity matrices for PLD of 40 days (left panel) and 130 days (right panel). Solid lines separa...
There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacif...
There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacif...
Aim: To identify connectivity patterns among coral reefs of the Indo-West Pacific. Projecting connec...
Coral reefs of the North Indo-West Pacific provide important ecosystem services to the region but ar...
This dissertation examines aspects of the relationship between connectivity and the development of g...
The global center of marine biodiversity is located in the western tropical Pacific in a region know...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Long-distance dispersal is believed to strongly influence coral reef population dynamics across the ...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Understanding patterns of connectivity among populations of marine organisms is essential for the de...
Strong components for PLD of 40 days (left panel) and 130 days (right panel). Line width stands for ...
Larval transport pathways for PLD of 40 days (left panel) and 130 days (right panel). Line width den...
Number of larvae exchanged for PLD of 40 days (left panel) and 130 days (right panel). Green bars = ...
Connectivity matrices for PLD of 40 days (left panel) and 130 days (right panel). Solid lines separa...
There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacif...
There are many marine protected areas (MPAs) containing coral reef aggregations in the eastern Pacif...
Aim: To identify connectivity patterns among coral reefs of the Indo-West Pacific. Projecting connec...
Coral reefs of the North Indo-West Pacific provide important ecosystem services to the region but ar...
This dissertation examines aspects of the relationship between connectivity and the development of g...
The global center of marine biodiversity is located in the western tropical Pacific in a region know...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Long-distance dispersal is believed to strongly influence coral reef population dynamics across the ...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Information on connectivity is becoming increasingly in demand as marine protected areas are being d...
Understanding patterns of connectivity among populations of marine organisms is essential for the de...