IMPORTANT : PLEASE DISREGARD VERSION 1 OF THIS UPLOAD SINCE IT INCLUDES ERRONEOUS INFORMATION. This excel file (DOI: 10.5281/zenodo.3433224) provides physiological parameters and their inter-individual variability (mean, coefficient of variation, sample size) for three farm animal species: cattle (Bos taurus), sheep (Ovis aries), and swine (Sus scrofa domesticus). These physiological parameters were estimated based on the results of extensive literature searches and specific experimental data described in Lautz et al., (2020). This file is associated with R codes (DOI: 10.5281/zenodo.3432796) for generic PBK models, partition coefficient Quantitative Structure Activity Relationship (QSAR) models for each farm animal species and parameteris...
Dataset of basal metabolic rate (BMR, in ml O2/hour) with experimental animal body mass (in grams) f...
The excel tool calculates the maximum and median intake (dietary burden) (in milligrams per kilogra...
The aim of the study was to investigate whether a pig growth model is suitable to be modified and ad...
IMPORTANT : PLEASE DISREGARD VERSION 1 OF THIS UPLOAD SINCE IT INCLUDES ERRONEOUS INFORMATION. This ...
IMPORTANT : PLEASE DISREGARD VERSION 1 OF THIS UPLOAD SINCE IT INCLUDES ERRONEOUS INFORMATION. The ...
Contains fulltext : 224919.pdf (publisher's version ) (Open Access
Physiologically based pharmacokinetic (PBPK) models for chemicals in food animals are a useful tool ...
This excel file (DOI: 10.5281/zenodo.1414332) provides physiological parameters and their inter-indi...
This excel file provides physiological parameters and their inter-individual variability (mean, coef...
INTRODUCTION: Physiological approaches to pharmacokinetic analysis require data on organ sizes and o...
This excel file and mode code (DOI:10.5281/zenodo.3603114) provides: 1. Physiological parameters an...
These files contain the ODE model, called PhenoBR, to characterize ewes’ BCS variations through four...
These files contain the preprint of the manuscript, ODE model, called PhenoBR, to characterize ewes’...
Abstract: Availability of easily accessible methods and apparatus for establishing the essential par...
International audienceIn situations of negative energy balance (NEB) due to feed scarcity or high ph...
Dataset of basal metabolic rate (BMR, in ml O2/hour) with experimental animal body mass (in grams) f...
The excel tool calculates the maximum and median intake (dietary burden) (in milligrams per kilogra...
The aim of the study was to investigate whether a pig growth model is suitable to be modified and ad...
IMPORTANT : PLEASE DISREGARD VERSION 1 OF THIS UPLOAD SINCE IT INCLUDES ERRONEOUS INFORMATION. This ...
IMPORTANT : PLEASE DISREGARD VERSION 1 OF THIS UPLOAD SINCE IT INCLUDES ERRONEOUS INFORMATION. The ...
Contains fulltext : 224919.pdf (publisher's version ) (Open Access
Physiologically based pharmacokinetic (PBPK) models for chemicals in food animals are a useful tool ...
This excel file (DOI: 10.5281/zenodo.1414332) provides physiological parameters and their inter-indi...
This excel file provides physiological parameters and their inter-individual variability (mean, coef...
INTRODUCTION: Physiological approaches to pharmacokinetic analysis require data on organ sizes and o...
This excel file and mode code (DOI:10.5281/zenodo.3603114) provides: 1. Physiological parameters an...
These files contain the ODE model, called PhenoBR, to characterize ewes’ BCS variations through four...
These files contain the preprint of the manuscript, ODE model, called PhenoBR, to characterize ewes’...
Abstract: Availability of easily accessible methods and apparatus for establishing the essential par...
International audienceIn situations of negative energy balance (NEB) due to feed scarcity or high ph...
Dataset of basal metabolic rate (BMR, in ml O2/hour) with experimental animal body mass (in grams) f...
The excel tool calculates the maximum and median intake (dietary burden) (in milligrams per kilogra...
The aim of the study was to investigate whether a pig growth model is suitable to be modified and ad...