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Nature Neuroscience|April 30, 2013
Oligodendrocyte progenitors balance growth with self-repulsion to achieve homeostasis in the adult brainEthan G Hughes, Shin H Kang, Masahiro Fukaya, et al.Cell Reports|November 17, 2022
Developmental spontaneous activity promotes formation of sensory domains, frequency tuning and proper gain in central auditory circuitsCalvin J Kersbergen, Travis A Babola, Jason Rock, et al.Purinergic Signalling|September 1, 2010
ATP-induced morphological changes in supporting cells of the developing cochleaNicolas X Tritsch, Ying-Xin Zhang, Graham Ellis-Davies, et al.Frontiers in Cellular Neuroscience|April 29, 2021
Automated in vivo Tracking of Cortical OligodendrocytesYu Kang T Xu, Cody L Call, Jeremias Sulam, et al.Plos Biology|June 27, 2023
Preservation of developmental spontaneous activity enables early auditory system maturation in deaf miceCalvin J Kersbergen, Travis A Babola, Patrick O Kanold, et al.Nature Neuroscience|February 13, 2007
Vesicular release of glutamate from unmyelinated axons in white matterJennifer L Ziskin, Akiko Nishiyama, Maria Rubio, et al.Nature|November 2, 2007
The origin of spontaneous activity in the developing auditory systemNicolas X Tritsch, Eunyoung Yi, Jonathan E Gale, et al.Biorxiv : the Preprint Server for Biology|April 25, 2024
Conservation of neuron-astrocyte coordinated activity among sensory processing centers of the developing brainVered Kellner, Patrick Parker, Xuelong Mi, et al.Nature Neuroscience|March 21, 2018
Myelin remodeling through experience-dependent oligodendrogenesis in the adult somatosensory cortexEthan G Hughes, Jennifer L Orthmann-Murphy, Abraham J Langseth, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 28, 2010
Zones of enhanced glutamate release from climbing fibers in the mammalian cerebellumMartin Paukert, Yanhua H Huang, Kohichi Tanaka, et al.Pageof 13