Showing results (21-30 of 38) with videos related to
Sort By:
Pageof 4
Biorxiv : the Preprint Server for Biology|March 10, 2025
Activity of human-specific Interlaminar Astrocytes in a Chimeric Mouse Model of Fragile X SyndromeAlexandria Anding, Baiyan Ren, Ragunathan Padmashri, et al.Neuron Glia Biology|November 4, 2010
Bergmann glial ensheathment of dendritic spines regulates synapse number without affecting spine motilityJocelyn J Lippman Bell, Tamar Lordkipanidze, Natalie Cobb, et al.International Journal of Molecular Sciences|July 12, 2025
Activity of Human-Specific Interlaminar Astrocytes in a Chimeric Mouse Model of Fragile X SyndromeAlexandria Anding, Baiyan Ren, Ragunathan Padmashri, et al.Frontiers in Immunology|June 17, 2024
C1q is elevated during chronic Staphylococcus epidermidis central nervous system catheter infectionMatthew Beaver, Lara Bergdolt, Anna Dunaevsky, et al.Neuron|June 12, 2003
Bidirectional regulation of hippocampal mossy fiber filopodial motility by kainate receptors: a two-step model of synaptogenesisAyumu Tashiro, Anna Dunaevsky, Richard Blazeski, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 17, 2013
Altered structural and functional synaptic plasticity with motor skill learning in a mouse model of fragile X syndromeRagunathan Padmashri, Benjamin C Reiner, Anand Suresh, et al.The Journal of Comparative Neurology|July 9, 2020
Modeling human-specific interlaminar astrocytes in the mouse cerebral cortexRagunathan Padmashri, Baiyan Ren, Braden Oldham, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 30, 2008
Transient spine expansion and learning-induced plasticity in layer 1 primary motor cortexKimberly J Harms, Mengia S Rioult-Pedotti, D Rosy Carter, et al.Glia|July 11, 2008
Morphogenesis and regulation of Bergmann glial processes during Purkinje cell dendritic spine ensheathment and synaptogenesisJocelyn J Lippman, Tamar Lordkipanidze, Margaret E Buell, et al.Molecular and Cellular Neurosciences|September 12, 2006
Amyloid beta peptide adversely affects spine number and motility in hippocampal neuronsBrikha R Shrestha, Ottavio V Vitolo, Powrnima Joshi, et al.Pageof 4