Dendritic spine formation and synapse maturation in transcription

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Last updated 24 abril 2025
Dendritic spine formation and synapse maturation in transcription
Synaptic maturation is reportedly limited in human induced pluripotent stem cell (iPSC)-derived neurons. Notably, their ability to reach postnatal-lik…
Dendritic spine formation and synapse maturation in transcription
Dendritic spine pathology in neuropsychiatric disorders
Dendritic spine formation and synapse maturation in transcription
Spikar, a novel drebrin‐binding protein, regulates the formation and stabilization of dendritic spines - Yamazaki - 2014 - Journal of Neurochemistry - Wiley Online Library
Dendritic spine formation and synapse maturation in transcription
Frontiers Dendritic Spine Plasticity: Function and Mechanisms
Dendritic spine formation and synapse maturation in transcription
Dendritic spine formation and stabilization - ScienceDirect
Dendritic spine formation and synapse maturation in transcription
Frontiers Filopodia: A Rapid Structural Plasticity Substrate for Fast Learning
Dendritic spine formation and synapse maturation in transcription
Dendritic Spine Elimination: Molecular Mechanisms and Implications - Ivar S. Stein, Karen Zito, 2019
Dendritic spine formation and synapse maturation in transcription
What is the difference between Class I, II, and III dendritic spines? - Quora
Dendritic spine formation and synapse maturation in transcription
Dendritic Spines in Depression: What We Learned from Animal Models
Dendritic spine formation and synapse maturation in transcription
Dendritic spine formation and synapse maturation in transcription factor-induced human iPSC-derived neurons - ScienceDirect
Dendritic spine formation and synapse maturation in transcription
Sculpting Dendritic Spines during Initiation and Maintenance of Neuropathic Pain
Dendritic spine formation and synapse maturation in transcription
Stem cell models of human synapse development and degeneration
Dendritic spine formation and synapse maturation in transcription
C4 overexpression led to dendritic spine alterations in apical arbors

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