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- W2079883068 abstract "In mammalian brain, the cellular and molecular events occurring in both synapse formation and plasticity are difficult to study due to the large number of factors involved in these processes and because the contribution of each component is not well defined. Invertebrates, such as Drosophila, Aplysia, Helix, Lymnaea, and Helisoma, have proven to be useful models for studying synaptic assembly and elementary forms of learning. Simple nervous system, cellular accessibility, and genetic simplicity are some examples of the invertebrate advantages that allowed to improve our knowledge about evolutionary neuronal conserved mechanisms. In this paper, we present an overview of progresses that elucidates cellular and molecular mechanisms underlying synaptogenesis and synapse plasticity in invertebrate varicosities and their validation in vertebrates. In particular, the role of invertebrate synapsin in the formation of presynaptic terminals and the cell-to-cell interactions that induce specific structural and functional changes in their respective targets will be analyzed." @default.
- W2079883068 created "2016-06-24" @default.
- W2079883068 creator A5049349107 @default.
- W2079883068 creator A5066547068 @default.
- W2079883068 creator A5087274167 @default.
- W2079883068 date "2012-01-01" @default.
- W2079883068 modified "2023-09-25" @default.
- W2079883068 title "Synaptic Functions of Invertebrate Varicosities: What Molecular Mechanisms Lie Beneath" @default.
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