A general model is proposed for predicting the effects of subdinical pathogen challenges of different doses and virulence on the relative feed intake (RFI) of animals. The RFI is defined as the feed intake (FI, kg/d) of the animal challenged by a pathogen divided by its Fl in the same state had it not been challenged. Actual FI can be predicted from the RFI and the animal's state. The RFI was assumed to be affected only when animals were naive to a particular pathogen (i.e., had not previously experienced it) and when the challenge dose was above a predetermined threshold. The model is for the period from recognition of a pathogen through acquisition and subsequent expression of immunity. The way in which RFI changes with time is described ...
Improving robustness for farm animals is seen as a new breeding target. However, robustness is a com...
Background: Both host genetic potentials for growth and disease resistance, as well as nutrition are...
Understanding the population dynamics of an infectious disease requires linking within-host dynamics...
Both host genetic potentials for growth and disease resistance, as well as nutrition are known to af...
Sub-clinical disease can have large effects on animal production with significant economic...
Background: Both host genetic potentials for growth and disease resistance, as well as nutrition are...
This paper describes sensitivity analyses and expectations obtained from a mathematical model develo...
This paper describes sensitivity analyses and expectations obtained from a mathematical model develo...
A deterministic, dynamic simulation model is developed to account for the interactions between gastr...
A deterministic, dynamic simulation model is developed to account for the interactions between gastr...
In recent decades, theory addressing the processes that underlie the dynamics of infectious diseases...
<div><p>We present a method to measure the relative transmissibility (“transmission fitness”) of one...
This article presents a model describing the relationship between level of disease resistance and pr...
An upset or disruption in animal health negatively affects voluntary feed intake and growth. The aim...
Phenotypic selection for production traits causes changes in the underlying genetics of the animal. ...
Improving robustness for farm animals is seen as a new breeding target. However, robustness is a com...
Background: Both host genetic potentials for growth and disease resistance, as well as nutrition are...
Understanding the population dynamics of an infectious disease requires linking within-host dynamics...
Both host genetic potentials for growth and disease resistance, as well as nutrition are known to af...
Sub-clinical disease can have large effects on animal production with significant economic...
Background: Both host genetic potentials for growth and disease resistance, as well as nutrition are...
This paper describes sensitivity analyses and expectations obtained from a mathematical model develo...
This paper describes sensitivity analyses and expectations obtained from a mathematical model develo...
A deterministic, dynamic simulation model is developed to account for the interactions between gastr...
A deterministic, dynamic simulation model is developed to account for the interactions between gastr...
In recent decades, theory addressing the processes that underlie the dynamics of infectious diseases...
<div><p>We present a method to measure the relative transmissibility (“transmission fitness”) of one...
This article presents a model describing the relationship between level of disease resistance and pr...
An upset or disruption in animal health negatively affects voluntary feed intake and growth. The aim...
Phenotypic selection for production traits causes changes in the underlying genetics of the animal. ...
Improving robustness for farm animals is seen as a new breeding target. However, robustness is a com...
Background: Both host genetic potentials for growth and disease resistance, as well as nutrition are...
Understanding the population dynamics of an infectious disease requires linking within-host dynamics...