NeuroPlaNe Lab
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Kazunobu Sawamoto
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Neuronal migration depends on blood flow in the adult mammalian brain
Transformation of radial glia into postnatal neural stem cells depends on birth
Cellular Organization and Migration Pathways of the Ventricular-Subventricular Zone in the Juvenile Swine Brain (*Sus scrofa domesticus*)
Neuraminidase inhibition promotes the collective migration of neurons and recovery of brain function
Identification of the growth cone as a probe and driver of neuronal migration in the injured brain
Amphiphilic peptide-tagged N-cadherin forms radial glial-like fibers that enhance neuronal migration in injured brain and promote sensorimotor recovery
Dynamic changes in the neurogenic potential in the ventricular-subventricular zone of common marmoset during postnatal brain development
Dynamic changes in ultrastructure of the primary cilium in migrating neuroblasts in the postnatal brain
Detachment of chain-forming neuroblasts by Fyn-mediated control of cell-cell adhesion in the postnatal brain
Radial glial fibers promote neuronal migration and functional recovery after neonatal brain injury
Unique organization of the nuclear envelope in the post-natal quiescent neural stem cells
Characterization of multiciliated ependymal cells that emerge in the neurogenic niche of the aged zebrafish brain: Emerged ependymal cells in aged zebrafish brain
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