M1 Genomics, Informatics and Mathematics for Health and Environment
With the advent of high-speed data processing technology (genome sequencing, RNA and protein expression, metabolomics), different fields in life sciences (pharmaceutical industry, hospitals, biotechnologies, agro-industry, environment and fundamental research) need researchers and engineers with sound knowledge in biology and the ability to treat and analyse large quantities of heterogeneous data. This master's program, with a Biocomputing specialization, is a multidisciplinary program that satisfies this demand by enabling students to:
understand biology's complex and diverse issues in order to respond to current needs in research and innovation in academic research, the biotechnology industry, pharma and health;
deal with new challenges brought about by the evolution and rapid development of high-speed data production technologies;
master techniques associated with the analysis and modelling of biomedical data;
be autonomous when managing application development projects in a variety of programming languages, to propose innovative IT solutions and to carry out the analyses and necessary developments to test new methods and hypotheses for the living.
* Students who have acquired knowledge and skills in both Biology and Informatics during their course (for example: Joint honours in Life Sciences-Informatics, Paris-Saclay undergraduate degree in selective Life Sciences-Info, Life Sciences undergraduate degree in Bioinformatics, undergraduate computing degree in Bioinformatics, Engineering school, etc.) . * Students who have completed a course in Biology but have an interest in Informatics and have acquired complementary knowledge and skills in this field.
Understand the fundamental concepts behind the analysis of genomic sequences and modeling in Biology.
Design an algorithm, computer program or database in order to model and/or analyse genomic data.
Determine the statistical methods to be implemented for the analysis of genomic data.
Write and orally present a project and scientific results in English.
At the end of GENIOMHE M1, students will have acquired a first level of skills in:
Genomics and human genetics
Analysis of genomic data and bioinformatics and phylogeny tools
Relational Databases and Advanced Databases (XML, noSQL, etc.)
Algorithmics (in particular sequence analysis), Data structures, Graphs
Imperative and object-oriented programming with different languages
Statistical learning, Modeling of Biological Systems
Multivariate statistics and Planning of experiments
The course is generally followed up by a GENIOMHE M2, which is the classical continuation of study for the students who have completed the GENIOMHE M1, but
students may also go on more generally to an M2 in Bioinformatics.
Genoscope - DRF/JACOB
Institut des Sciences des Plantes de Paris-Saclay
Institut Génomique - DRF/JACOB
Laboratoire de Mathématiques et Modélisation d'Evry
Laboratoire Européen de Recherche pour la Polyarthrite rhumatoïde
Informatique, Biologie Intégrative & Systèmes Complexes
Approches génétiques intégrées et découvertes thérapeutiques pour les maladies rares
Vectorologie et thérapeutiques anticancéreuses.
Détail du S1: Le S1 est constitué d'une UE de Remise à niveau et d'UEs obligatoires.
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
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Génétique des pathologies complexes : outils méthodologiques | 2.5 | 16 | 9 | |||||||
Génomique structurale | 2.5 | 12 | 12 | |||||||
Méthodologie de traitement de données NGS | 2.5 | 24 | ||||||||
Outils de la bioinformatique | 3 | 12 | 12 | |||||||
Séquençage de génomes, application à la santé et aux maladies | 2.5 | 16 | 9 | |||||||
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
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Anglais 1 | 2.5 | 9 | ||||||||
Masteriales | 2.5 | 15 | ||||||||
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
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Algorithmique de séquences | 3 | 12 | 12 | |||||||
Apprentissage et fouille de données | 3 | 12 | 12 | |||||||
Programmation orientée objet 1 | 3 | 12 | 12 | |||||||
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
---|---|---|---|---|---|---|---|---|---|---|
Statistiques multivariées pour la génomique | 3 | 12 | 12 | |||||||
Détail du S2 : Le S2 est constitué d'UEs obligatoires et d'un stage obligatoire.
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
---|---|---|---|---|---|---|---|---|---|---|
Les génomes procaryotes | 3 | 12 | 12 | |||||||
Méthodes pour la Phylogénie | 3 | 12 | 12 | |||||||
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
---|---|---|---|---|---|---|---|---|---|---|
Planification d'expériences - UEVE | 3 | 6 | 6 | 0 | 12 | |||||
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
---|---|---|---|---|---|---|---|---|---|---|
Anglais 2 | 2 | 9 | ||||||||
Projet Scientifique | 1 | 2 | 10 | |||||||
Stage | 10 | 30 | ||||||||
Subjects | ECTS | Lecture | directed study | practical class | Lecture/directed study | Lecture/practical class | directed study/practical class | distance-learning course | Project | Supervised studies |
---|---|---|---|---|---|---|---|---|---|---|
Bases de données avancées | 3 | 12 | 18 | |||||||
Modélisation et simulation des systèmes biologiques | 3 | 15 | 18 | |||||||
Programmation Orientée Objet 2 | 2 | 18 | ||||||||
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Motivation letter.
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All transcripts of the years / semesters validated since the high school diploma at the date of application.
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Curriculum Vitae.
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Detailed description and hourly volume of courses taken since the beginning of the university program.
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Certificate of English level (compulsory for non-English speakers).
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VAP file (obligatory for all persons requesting a valuation of the assets to enter the diploma).
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Supporting documents :
- Residence permit stating the country of residence of the first country
- Or receipt of request stating the country of first asylum
- Or document from the UNHCR granting refugee status
- Or receipt of refugee status request delivered in France
- Or residence permit stating the refugee status delivered in France
- Or document stating subsidiary protection in France or abroad
- Or document stating temporary protection in France or abroad.