scholarly article | Q13442814 |
P2093 | author name string | V Lemmon | |
G Banker | |||
T Esch | |||
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The establishment of polarity by hippocampal neurons in culture | Q29616334 | ||
The molecular biology of axon guidance | Q29617857 | ||
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Inhibition of axonal growth by brefeldin A in hippocampal neurons in culture | Q30471240 | ||
Laminin directs growth cone navigation via two temporally and functionally distinct calcium signals. | Q32165057 | ||
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Ca2+ influx and neurite growth in response to purified N-cadherin and laminin | Q36234917 | ||
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Ankyrin binding activity shared by the neurofascin/L1/NrCAM family of nervous system cell adhesion molecules | Q42695486 | ||
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Laminin selectively enhances axonal growth and accelerates the development of polarity by hippocampal neurons in culture | Q48418962 | ||
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Protein kinase C is involved in laminin stimulation of neurite outgrowth | Q69365999 | ||
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Multiple factors govern intraretinal axon guidance: a time-lapse study | Q70950595 | ||
Laminin and fibronectin guideposts signal sustained but opposite effects to passing growth cones | Q71673889 | ||
L1, N-cadherin, and laminin induce distinct distribution patterns of cytoskeletal elements in growth cones | Q71694043 | ||
L1 and N-CAM antibodies trigger protein phosphatase activity in growth cone-enriched membranes | Q72334868 | ||
P433 | issue | 15 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 6417-6426 | |
P577 | publication date | 1999-08-01 | |
P1433 | published in | Journal of Neuroscience | Q1709864 |
P1476 | title | Local presentation of substrate molecules directs axon specification by cultured hippocampal neurons | |
P478 | volume | 19 |
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Q38284401 | Cadherins as regulators of neuronal polarity |
Q39671279 | Centrosome Motility Is Essential for Initial Axon Formation in the Neocortex |
Q30524773 | Centrosome movements in vivo correlate with specific neurite formation downstream of LIM homeodomain transcription factor activity |
Q41789797 | Computational model provides insight into the distinct responses of neurons to chemical and topographical cues |
Q34939634 | Controlling neurite outgrowth with patterned substrates. |
Q36015653 | Coordinated protein sorting, targeting and distribution in polarized cells |
Q42013125 | Cortical deficiency of laminin gamma1 impairs the AKT/GSK-3beta signaling pathway and leads to defects in neurite outgrowth and neuronal migration. |
Q28569366 | Cytoplasmic dynein and LIS1 are required for microtubule advance during growth cone remodeling and fast axonal outgrowth |
Q30489160 | Dendrites differ from axons in patterns of microtubule stability and polymerization during development |
Q35005331 | Designing Neural Networks in Culture: Experiments are described for controlled growth, of nerve cells taken from rats, in predesigned geometrical patterns on laboratory culture dishes |
Q36481861 | Disease-associated mutations in the prion protein impair laminin-induced process outgrowth and survival |
Q35944284 | Effects of ECM protein micropatterns on the migration and differentiation of adult neural stem cells |
Q28572798 | Effects of ethanol on axon outgrowth and branching in developing rat cortical neurons |
Q37463169 | Establishment of axon-dendrite polarity in developing neurons. |
Q27863665 | Evidence for the involvement of KIF4 in the anterograde transport of L1-containing vesicles |
Q28568931 | Evidence for the involvement of Tiam1 in axon formation |
Q50451909 | Extracellular Signals Induce Glycoprotein M6a Clustering of Lipid Rafts and Associated Signaling Molecules. |
Q34413038 | Extracellular matrix: functions in the nervous system |
Q34188311 | Gradients of substrate-bound laminin orient axonal specification of neurons |
Q52688878 | Grip and slip of L1-CAM on adhesive substrates direct growth cone haptotaxis. |
Q30493874 | Growth cone-like waves transport actin and promote axonogenesis and neurite branching. |
Q34094821 | Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices |
Q37746477 | Initiating and growing an axon. |
Q30561860 | Integration of topographical and biochemical cues by axons during growth on microfabricated 3-D substrates |
Q91811563 | JNK Signaling Pathway Involvement in Spinal Cord Neuron Development and Death |
Q42526841 | Kinase/phosphatase overexpression reveals pathways regulating hippocampal neuron morphology. |
Q37657189 | Label-free characterization of emerging human neuronal networks |
Q36009204 | Laminin/β1 integrin signal triggers axon formation by promoting microtubule assembly and stabilization. |
Q33728714 | Large-scale analysis of neurite growth dynamics on micropatterned substrates |
Q28583005 | Leukocyte Antigen-Related Protein Tyrosine Phosphatase Receptor: A Small Ectodomain Isoform Functions as a Homophilic Ligand and Promotes Neurite Outgrowth |
Q24674320 | Mechanical tension can specify axonal fate in hippocampal neurons |
Q47405540 | Microelectrode array-induced neuronal alignment directs neurite outgrowth: analysis using a fast Fourier transform (FFT). |
Q38603041 | Microtubules Modulate F-actin Dynamics during Neuronal Polarization |
Q92576959 | Molecular basis of the functions of the mammalian neuronal growth cone revealed using new methods |
Q35931742 | N-cadherin specifies first asymmetry in developing neurons |
Q43205970 | N-cadherin: a new player in neuronal polarity |
Q99404527 | Neuronal Signaling Involved in Neuronal Polarization and Growth: Lipid Rafts and Phosphorylation |
Q82469160 | Neuronal polarity |
Q36183127 | Neuronal polarity: demarcation, growth and commitment |
Q35313340 | Neuronal polarization in the developing cerebral cortex |
Q36428669 | New perspectives on neuronal development via microfluidic environments |
Q36452342 | Over a century of neuron culture: from the hanging drop to microfluidic devices |
Q48159656 | Patterning axonal guidance molecules using a novel strategy for microcontact printing |
Q48740938 | Plasma membrane ganglioside sialidase regulates axonal growth and regeneration in hippocampal neurons in culture. |
Q36530065 | Polarization and myelination in myelinating glia |
Q42201593 | Polarization of hippocampal neurons with competitive surface stimuli: contact guidance cues are preferred over chemical ligands |
Q33915929 | Regulation of intrinsic axon growth ability at retinal ganglion cell growth cones |
Q41596726 | Regulation of neuronal axon specification by glia-neuron gap junctions in C. elegans |
Q30520019 | Semaphorin 3A induces CaV2.3 channel-dependent conversion of axons to dendrites |
Q27309290 | Shootin1-cortactin interaction mediates signal-force transduction for axon outgrowth |
Q28512224 | Shootin1: A protein involved in the organization of an asymmetric signal for neuronal polarization |
Q36627998 | Signaling networks in neuronal polarization. |
Q27315208 | Substrate topography determines neuronal polarization and growth in vitro |
Q28580100 | The dynein light chain Tctex-1 has a dynein-independent role in actin remodeling during neurite outgrowth |
Q27305224 | The effects of hematopoietic growth factors on neurite outgrowth |
Q37684819 | The effects of proteoglycan surface patterning on neuronal pathfinding |
Q42020860 | The oriented emergence of axons from retinal ganglion cells is directed by laminin contact in vivo. |
Q36320967 | Transcytosis of NgCAM in epithelial cells reflects differential signal recognition on the endocytic and secretory pathways |
Q33825966 | Ultrasound-mediated piezoelectric differentiation of neuron-like PC12 cells on PVDF membranes |
Q49136995 | Using chips to simulate the brain as a tool to investigate brain development. |
Q36723414 | Waves of actin and microtubule polymerization drive microtubule-based transport and neurite growth before single axon formation |
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