Quantitative knowledge about copepod life histories is of crucial importance to interpret and predict the impacts of natural and anthropogenic stressors in this taxonomic group. Dynamic Energy Budget (DEB) models are a useful tool in this context, as they quantitatively link the energy taken up by feeding to energy-demanding traits such as growth, development and reproduction. The copepod life cycle, however, has several features that require closer investigation. Firstly, they sport larval development through six naupliar stages (of which the initial stages do not feed), followed by six copepodite stages (which have a different shape from the nauplii). Furthermore, growth stops rather abruptly after the final moult to the adult stage, and ...
We present a model for the growth and development of copepods based on the simple assumption that a ...
We present a Dynamic Energy Budget (DEB) model for the quintessential keystone predator, the rocky-i...
International audienceA mathematical model of copepod population dynamics coupling individual growth...
Mechanistic models are essential tools for interpreting and predicting the consequences of a changin...
Dormancy (diapause) is a key life-history strategy of pelagic copepods that allows them to thrive in...
The degree of biological variability within a population is an important factor for its ecological s...
We present a model for the growth and development of copepods based on the simple assumption that a ...
Dynamic Energy Budget (DEB) theory is a generic and comprehensive framework for understanding bioene...
A new model ("Coltrane": Copepod Life-history Traits and Adaptation to Novel Environments) describes...
Understanding the life cycle of individual animals, and how it responds to stress, requires a model ...
The calanoid copepod Calanus finmarchicus (Gunnerus) dominates the biomass and is considered a key s...
Dynamic energy budget (DEB) theory offers a comprehensive framework for understanding the overall ph...
Late developmental stages of the marine copepods in the genus Calanus can spend extended periods in ...
Development rates, nitrogen- and carbon-specific growth rates, size, and condition were determined f...
<div><p>We present a Dynamic Energy Budget (DEB) model for the quintessential keystone predator, the...
We present a model for the growth and development of copepods based on the simple assumption that a ...
We present a Dynamic Energy Budget (DEB) model for the quintessential keystone predator, the rocky-i...
International audienceA mathematical model of copepod population dynamics coupling individual growth...
Mechanistic models are essential tools for interpreting and predicting the consequences of a changin...
Dormancy (diapause) is a key life-history strategy of pelagic copepods that allows them to thrive in...
The degree of biological variability within a population is an important factor for its ecological s...
We present a model for the growth and development of copepods based on the simple assumption that a ...
Dynamic Energy Budget (DEB) theory is a generic and comprehensive framework for understanding bioene...
A new model ("Coltrane": Copepod Life-history Traits and Adaptation to Novel Environments) describes...
Understanding the life cycle of individual animals, and how it responds to stress, requires a model ...
The calanoid copepod Calanus finmarchicus (Gunnerus) dominates the biomass and is considered a key s...
Dynamic energy budget (DEB) theory offers a comprehensive framework for understanding the overall ph...
Late developmental stages of the marine copepods in the genus Calanus can spend extended periods in ...
Development rates, nitrogen- and carbon-specific growth rates, size, and condition were determined f...
<div><p>We present a Dynamic Energy Budget (DEB) model for the quintessential keystone predator, the...
We present a model for the growth and development of copepods based on the simple assumption that a ...
We present a Dynamic Energy Budget (DEB) model for the quintessential keystone predator, the rocky-i...
International audienceA mathematical model of copepod population dynamics coupling individual growth...