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6. Focal clusters of peri-synaptic matrix contribute to activity-dependent plasticity and memory in mice.

11. Chapter 11 - Neural ECM and epilepsy

14. Golgi satellites are essential for polysialylation of NCAM and expression of LTP at distal synapses.

15. Synaptic Remodeling Depends on Signaling between Serotonin Receptors and the Extracellular Matrix.

16. Preface

17. Molecular signals of plasticity at the tetrapartite synapse

18. Compartmentalization from the outside: the extracellular matrix and functional microdomains in the brain

22. Targeting the neural extracellular matrix in neurological disorders.

23. PSA–NCAM: Synaptic functions mediated by its interactions with proteoglycans and glutamate receptors

24. Mice deficient for the extracellular matrix glycoprotein tenascin-r show physiological and structural hallmarks of increased hippocampal excitability, but no increased susceptibility to seizures in the pilocarpine model of epilepsy

25. Extracellular matrix alterations in the ketamine model of schizophrenia.

26. SHANK3 Gene Mutations Associated with Autism Facilitate Ligand Binding to the Shank3 Ankyrin Repeat Region.

27. Importance of Shank3 Protein in Regulating Metabotropic Glutamate Receptor 5 (mGluR5) Expression and Signaling at Synapses.

28. Functional Consequences of the Interactions among the Neural Cell Adhesion Molecule NCAM, the Receptor Tyrosine Kinase TrkB, and the Inwardly Rectifying K+ Channel KIR3.3.

29. The Insulin Receptor Substrate of 53 kDa (IRSp53) Limits Hippocampal Synaptic PIasticity.

30. Neural Cell Adhesion Molecule-associated Polysialic Acid Inhibits NR2B-containing N-Methyl-D-aspartate Receptors and Prevents Glutamate-induced Cell Death.

31. Neural Cell Adhesion Molecule-associated Polysialic Acid Potentiates a-Amino-3-hydroxy-5 -methyli soxazole-4-propionic Acid Receptor Currents.

32. Sialyltransferase ST8Sia-II Assembles a Subset of Polysialic Acid That Directs Hippocampal Axonal Targeting and Promotes Fear Behavior.

33. Amelioration of Tau pathology and memory deficits by targeting 5-HT7 receptor.

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