Neurons, Glia, Extracellular Matrix and Neurovascular Unit: A Systems Biology Approach to the Complexity of Synaptic Plasticity in Health and Disease

scientific article published on 24 February 2020

Neurons, Glia, Extracellular Matrix and Neurovascular Unit: A Systems Biology Approach to the Complexity of Synaptic Plasticity in Health and Disease is …
instance of (P31):
scholarly articleQ13442814
review articleQ7318358

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P356DOI10.3390/IJMS21041539
P932PMC publication ID7073232
P698PubMed publication ID32102370

P50authorMichele PapaQ40826545
P2093author name stringLilia Alberghina
Anna Maria Colangelo
Ciro De Luca
Assunta Virtuoso
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P275copyright licenseCreative Commons AttributionQ6905323
P6216copyright statuscopyrightedQ50423863
P433issue4
P921main subjectneurogliaQ177105
neuroplasticityQ849491
P577publication date2020-02-24
P1433published inInternational Journal of Molecular SciencesQ3153277
P1476titleNeurons, Glia, Extracellular Matrix and Neurovascular Unit: A Systems Biology Approach to the Complexity of Synaptic Plasticity in Health and Disease
P478volume21

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Q104795135Downregulation of microRNA-9-5p promotes synaptic remodeling in the chronic phase after traumatic brain injurycites workP2860

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