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Thomas Di meglio Ph.D.

时间:2008-07-08 10:48来源:bioguider 作者:bioguider 点击: 127次
Thomas Di meglio

02-18-1982

UMR7102 - ParisVI university

thomasdimeglio@yahoo.fr

 

Academic :

 

¸                                Sep-2004/Nov-2007 : Doctorate in developmental biology, directed by Alain Chédotal  (UMR 7102- PARIS VI university)

 

" « Function of Slits/Robos molecules during development of commissural system in vertebrate’s brain »

 

¸                                2003/2004 : Master of molecular and cellular biology (speciality : developmental biology) - PARIS VI university, Logique du vivant

 

 

¸                                2001/2004 : Magistere of biochemistery (speciality : molecular genetic) – Ecole Normale Supérieure de Paris

 

 

¸                                1999/2001 : License of <science of life> - PARIS VI university

 

Scientific publications :

 

Published :

 

 

Lopez-Bendito G, Flames N, Ma L, Fouquet C, Di Meglio T, Chedotal A, Tessier-Lavigne M, Marin O.

Robo1 and Robo2 cooperate to control the guidance of major axonal tracts in the mammalian forebrain

J Neurosci. 2007 Mar 28;27(13):3395-407

PMID: 17392456

 

Fouquet C, Di Meglio T, Ma L, Kawasaki T, Long H, Hirata T, Tessier-Lavigne M, Chedotal A, Nguyen-Ba-Charvet KT.

Robo1 and robo2 control the development of the lateral olfactory tract

J Neurosci. 2007 Mar 14;27(11):3037-45

PMID: 17360927

 

Failli V, di Meglio T, Chedotal A.

Related Articles, Links

[Axon guidance at the midline gets more complex]

Med Sci (Paris). 2004 Oct;20(10):852-4. French. No abstract available

PMID: 15461958

 

Submitted :

 

Thomas DiMeglio, Kim Nguyen-Ba-Charvet, Marc Tessier-Lavigne, Constantino

Sotelo and Alain Chédotal

Molecular Mechanism controlling midline crossing by precerebellar neurons

Submitted and reviewed at Journal of neuroscience

 

Marc J. Geisen*,Thomas Di Meglio*,Massimo Pasqualetti, Sebastien Ducret, Jean-

François Brunet, Alain Chedotal, and Filippo M. Rijli

* These authors have equally contributed to this work

Hox paralogue group 2 genes control the migration of mouse pontine neurons

through Slit-Robo signaling

Submitted and reviewed at PLOS

 

 

Kim T. Nguyen-Ba-Charvet, Thomas Di Meglio, Coralie Fouquet, and Alain

Chédotal

Robos and Slits control the pathfinding and targeting of mouse olfactory sensory

Axons

 

 

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