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10.1016/j.brainres.2014.11.033

http://scihub22266oqcxt.onion/10.1016/j.brainres.2014.11.033
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C4532652!4532652!25482663
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suck abstract from ncbi


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pmid25482663      Brain+Res 2015 ; 1621 (ä): 73-81
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  • Multiple cellular cascades participate in long-term potentiation and in hippocampus-dependent learning #MMPMID25482663
  • Baudry M; Zhu G; Liu Y; Wang Y; Briz V; Bi X
  • Brain Res 2015[Sep]; 1621 (ä): 73-81 PMID25482663show ga
  • Since its discovery by Bliss and Lomo, the phenomenon of long-term potentiation (LTP) has been extensively studied, as it was viewed as a potential cellular mechanism of learning and memory. Over the years, many signaling cascades have been implicated in its induction, consolidation and maintenance, raising questions regarding its real significance. Here, we review several of the most commonly studies signaling cascades and discuss how they converge on a common set of mechanisms likely to be involved in the maintenance of LTP. We further argue that the existence of cross-talks between these different signaling cascades can not only account for several discrepancies in the literature, but also account for the existence of different forms of LTP, which can be engaged by different types of stimulus parameters under different experimental conditions. Finally, we discuss how the understanding of the diversity of LTP mechanisms can help us understand the diversity of the types of learning and memory.
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