Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavior has been shown to influence dispersal, but how to incorporate behavior effectively within dispersal models remains a challenge. Mechanisms of behavior are often derived from laboratory-based studies and therefore, may not reflect behavior in situ. Here, using state-of-the-art models, we explore the movements that larvae must undertake to achieve the vertical distribution patterns observed in nature. Results suggest that behaviors are not consistent with those described under the tidally synchronized vertical migration (TVM) hypothesis. Instead, we show (i) a need for swimming speed and direction to vary over the tidal cycle and (ii) that, i...
A size-structured, time and vertically-dependent model was used to investigate the effects of water ...
Larval transport in the ocean can be affected by their vertical position in the water column. In bio...
Larval transport in the ocean can be affected by their vertical position in the water column. In bio...
Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavio...
Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavio...
Predicting dispersal and quantifying ecological connectivity are increasingly referenced as fundamen...
Ecosystem connectivity is an essential consideration for marine spatial planning of competing intere...
Ecosystem connectivity is an essential consideration for marine spatial planning of competing intere...
Highly resolved general circulation models (GCMs) now generate realistic flow fields, and have revea...
Ecosystem connectivity is an essential consideration for marine spatial planning of competing intere...
ABSTRACT: Highly resolved general circulation models (GCMs) now generate realistic flow fields, and ...
Recent advances in high-resolution ocean circulationmodels, coupled with a greater understanding of ...
Dispersal emerges as a consequence of how an individual’s phenotype interacts withthe environment. N...
Dispersal emerges as a consequence of how an individual’s phenotype interacts withthe environment. N...
A size-structured, time and vertically-dependent model was used to investigate the effects of water ...
A size-structured, time and vertically-dependent model was used to investigate the effects of water ...
Larval transport in the ocean can be affected by their vertical position in the water column. In bio...
Larval transport in the ocean can be affected by their vertical position in the water column. In bio...
Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavio...
Biophysical models are well-used tools for predicting the dispersal of marine larvae. Larval behavio...
Predicting dispersal and quantifying ecological connectivity are increasingly referenced as fundamen...
Ecosystem connectivity is an essential consideration for marine spatial planning of competing intere...
Ecosystem connectivity is an essential consideration for marine spatial planning of competing intere...
Highly resolved general circulation models (GCMs) now generate realistic flow fields, and have revea...
Ecosystem connectivity is an essential consideration for marine spatial planning of competing intere...
ABSTRACT: Highly resolved general circulation models (GCMs) now generate realistic flow fields, and ...
Recent advances in high-resolution ocean circulationmodels, coupled with a greater understanding of ...
Dispersal emerges as a consequence of how an individual’s phenotype interacts withthe environment. N...
Dispersal emerges as a consequence of how an individual’s phenotype interacts withthe environment. N...
A size-structured, time and vertically-dependent model was used to investigate the effects of water ...
A size-structured, time and vertically-dependent model was used to investigate the effects of water ...
Larval transport in the ocean can be affected by their vertical position in the water column. In bio...
Larval transport in the ocean can be affected by their vertical position in the water column. In bio...