scholarly article | Q13442814 |
P50 | author | Paola Arlotta | Q92550502 |
P2093 | author name string | Giulio Srubek Tomassy | |
Lori Bowe Dershowitz | |||
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Oligodendroglia metabolically support axons and contribute to neurodegeneration. | Q34032818 | ||
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Training induces changes in white-matter architecture | Q35007455 | ||
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Histone modifications affect timing of oligodendrocyte progenitor differentiation in the developing rat brain | Q36321289 | ||
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Neuregulin-1/ErbB signaling serves distinct functions in myelination of the peripheral and central nervous system. | Q37066557 | ||
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Motor neuron diversity in development and disease | Q37724333 | ||
Signals to promote myelin formation and repair | Q37734207 | ||
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Mechanisms regulating the development of oligodendrocytes and central nervous system myelin. | Q38166128 | ||
Myelination and oligodendrocyte functions in psychiatric diseases | Q38199654 | ||
MicroRNA and transcriptional crosstalk in myelinating glia | Q38224732 | ||
Neuregulin-ERBB signaling in the nervous system and neuropsychiatric diseases | Q38225912 | ||
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Glycolytic oligodendrocytes maintain myelin and long-term axonal integrity | Q39492965 | ||
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Synaptic vesicle release regulates myelin sheath number of individual oligodendrocytes in vivo. | Q40551466 | ||
NG2-positive oligodendrocyte progenitor cells in adult human brain and multiple sclerosis lesions. | Q40750602 | ||
Myelin-specific proteins and glycolipids in rat Schwann cells and oligodendrocytes in culture. | Q41265140 | ||
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Nardilysin regulates axonal maturation and myelination in the central and peripheral nervous system | Q43236405 | ||
Histone deacetylase activity is necessary for oligodendrocyte lineage progression. | Q44228541 | ||
The bHLH transcription factor Olig2 promotes oligodendrocyte differentiation in collaboration with Nkx2.2. | Q46381166 | ||
Defective oligodendrocyte development and severe hypomyelination in PDGF-A knockout mice. | Q48314738 | ||
Dynamics of oligodendrocyte generation and myelination in the human brain | Q48449442 | ||
Motor skill learning requires active central myelination. | Q48482406 | ||
White matter structure changes as adults learn a second language | Q48523218 | ||
Cellular pathology. As based upon physiological and pathological histology. Lecture XVI--Atheromatous affection of arteries. 1858. | Q48526126 | ||
DTI reveals structural differences in white matter tracts between bilingual and monolingual children | Q48751199 | ||
Biochemical subtypes of oligodendrocyte in the anterior medullary velum of the rat as revealed by the monoclonal antibody rip | Q48790068 | ||
Death of oligodendrocytes mediated by the interaction of nerve growth factor with its receptor p75. | Q48887712 | ||
Dynamic neural network reorganization associated with second language vocabulary acquisition: a multimodal imaging study. | Q49130836 | ||
The evolution of vertebrate and invertebrate myelin: a theoretical computational study. | Q50939153 | ||
Proliferation of oligodendrocyte precursor cells depends on electrical activity in axons. | Q51673282 | ||
Transcription factor co-expression patterns indicate heterogeneity of oligodendroglial subpopulations in adult spinal cord. | Q52018890 | ||
Pattern recognition in magnetic resonance imaging of white matter disorders in children and young adults. | Q52464372 | ||
The collected letters of Antoni van Leeuwenhoek; an appeal to the scientific world. | Q52515699 | ||
Target size regulates calibre and myelination of sympathetic axons | Q59068078 | ||
P433 | issue | 2 | |
P921 | main subject | myelination | Q14876135 |
P304 | page(s) | 135-147 | |
P577 | publication date | 2015-10-03 | |
P1433 | published in | Trends in Cell Biology | Q1573994 |
P1476 | title | Diversity Matters: A Revised Guide to Myelination | |
P478 | volume | 26 |
Q37149926 | A large fraction of neocortical myelin ensheathes axons of local inhibitory neurons |
Q39233765 | Axonal Regulation of Central Nervous System Myelination: Structure and Function |
Q37065276 | Brain white matter structure and COMT gene are linked to second-language learning in adults |
Q102141503 | Distinct oligodendrocyte populations have spatial preference and different responses to spinal cord injury |
Q47113795 | Embracing oligodendrocyte diversity in the context of perinatal injury |
Q39025060 | Functional diversity of astrocytes in neural circuit regulation |
Q57472852 | Glia as architects of central nervous system formation and function |
Q39781178 | Individual Neuronal Subtypes Exhibit Diversity in CNS Myelination Mediated by Synaptic Vesicle Release |
Q50061569 | Myelin plasticity and behaviour-connecting the dots |
Q42172691 | Neurons define non-myelinated axon segments by the regulation of galectin-4-containing axon membrane domains |
Q47999805 | Oligodendroglia-lineage cells in brain plasticity, homeostasis and psychiatric disorders |
Q45972266 | Platelet Endothelial Cell Adhesion Molecule-1 and Oligodendrogenesis: Significance in Alcohol Use Disorders. |
Q36380800 | Regeneration of myelin sheaths of normal length and thickness in the zebrafish CNS correlates with growth of axons in caliber |
Q58577225 | Regional growth trajectories of cortical myelination in adolescents and young adults: longitudinal validation and functional correlates |
Q34676727 | Regulation of prefrontal cortex myelination by the microbiota. |
Q59792828 | Targeting Smoothened as a New Frontier in the Functional Recovery of Central Nervous System Demyelinating Pathologies |
Q47568923 | The Microbiome-Gut-Behavior Axis: Crosstalk Between the Gut Microbiome and Oligodendrocytes Modulates Behavioral Responses |
Q38658419 | The Role of the Oligodendrocyte Lineage in Acute Brain Trauma. |
Q38820972 | The environment rules: spatiotemporal regulation of oligodendrocyte differentiation |
Q30833258 | The progeroid gene BubR1 regulates axon myelination and motor function |
Q38802467 | The promises and challenges of human brain organoids as models of neuropsychiatric disease |