# Difference between revisions of "Animations & Videos"

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== Introduction to the population approach == | == Introduction to the population approach == | ||

− | The | + | The goal of this animation is to show that the population approach is relevant to many fields of application (biology, agronomy, toxicology, pharmacology, etc.) and to present a PK modeling application in a bit more detail. |

{{ShowVideo_NoCaption|image=IntroductionPA.png|size=500px|video=http://team.inria.fr/popix/files/2012/01/Populations.swf}} | {{ShowVideo_NoCaption|image=IntroductionPA.png|size=500px|video=http://team.inria.fr/popix/files/2012/01/Populations.swf}} | ||

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− | Examples | + | Examples of PK modeling using $\mlxplore$ can be visualized [[Introduction_to_PK_modeling_using_MLXPlore_-_Part_I|here]]. |

<br><br> | <br><br> | ||

== The SAEM algorithm in practice == | == The SAEM algorithm in practice == | ||

− | This video shows | + | This video shows how the SAEM algorithm works, as described in [[The SAEM algorithm for estimating population parameters]] section. |

− | {{ShowVideo_NoCaption|image=saem5b.png | + | {{ShowVideo_NoCaption|image=saem5b.png|video=http://popix.lixoft.net/images/2/20/saem.mp4}} |

## Latest revision as of 14:44, 5 June 2013

## Introduction to the population approach

The goal of this animation is to show that the population approach is relevant to many fields of application (biology, agronomy, toxicology, pharmacology, etc.) and to present a PK modeling application in a bit more detail.

## Introduction to PK modeling

This animation describes how complex biological phenomena can be approximated by simplified models represented by mathematical equations.

Examples of PK modeling using $\mlxplore$ can be visualized here.

## The SAEM algorithm in practice

This video shows how the SAEM algorithm works, as described in The SAEM algorithm for estimating population parameters section.