Eugenio Francesco Fornasiero, Ph.D.

Affiliations: 
Europen Neuroscience Institute (ENI) Göttingen 
Area:
Presynaptic terminal, Synaptic vesicles, Brain development, Neuronal polarity, Growth cone, Super-resolution microscopy
Website:
http://rizzoli-lab.de/post-docs/#fornasiero
Google:
"Eugenio Fornasiero"
Mean distance: 13.98 (cluster 11)
 
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Publications

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Mandad S, Rahman RU, Centeno TP, et al. (2018) The codon sequences predict protein lifetimes and other parameters of the protein life cycle in the mouse brain. Scientific Reports. 8: 16913
Fornasiero EF, Mandad S, Wildhagen H, et al. (2018) Precisely measured protein lifetimes in the mouse brain reveal differences across tissues and subcellular fractions. Nature Communications. 9: 4230
Truckenbrodt S, Viplav A, Jähne S, et al. (2018) Newly produced synaptic vesicle proteins are preferentially used in synaptic transmission. The Embo Journal
Guarnieri FC, Bellani S, Yekhlef L, et al. (2017) Synapsin I deletion reduces neuronal damage and ameliorates clinical progression of experimental autoimmune encephalomyelitis. Brain, Behavior, and Immunity
Fornasiero EF, Opazo F. (2015) Super-resolution imaging for cell biologists: concepts, applications, current challenges and developments. Bioessays : News and Reviews in Molecular, Cellular and Developmental Biology. 37: 436-51
Gärtner A, Fornasiero EF, Dotti CG. (2015) Cadherins as regulators of neuronal polarity. Cell Adhesion & Migration. 9: 175-82
Gärtner A, Fornasiero EF, Valtorta F, et al. (2014) Distinct temporal hierarchies in membrane and cytoskeleton dynamics precede the morphological polarization of developing neurons. Journal of Cell Science. 127: 4409-19
Fornasiero EF, Opazo F. (2014) Cellular and Molecular Applications of Super-resolution Microscopy Fluorescence Microscopy: Super-Resolution and Other Novel Techniques. 133-152
Fornasiero EF, Rizzoli SO. (2014) Preface Neuromethods. 86: vii-xi
Fornasiero EF, Raimondi A, Guarnieri FC, et al. (2012) Synapsins contribute to the dynamic spatial organization of synaptic vesicles in an activity-dependent manner. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 12214-27
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