374 results on '"Tessier-Lavigne M"'
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2. Axonal Pathfinding: Guidance Activities of Sonic Hedgehog (Shh)
3. Axonal Pathfinding: Netrins
4. UNC5C is required for spinal accessory motor neuron development
5. Embryonic limb draws a crowd
6. Axonal Pathfinding in the Developing Spinal Cord: Involvement of the Floor Plate in Chemotropic and Contact Guidance
7. Lipid-mediated interactions between intrinsic molecules in bilayer membranes.
8. The Logic and Mechanisms of Axon Guidance
9. A Gene Trap Screen for Axon Guidance Receptors in Mice
10. FLTR3 Is a Robo1-interacting protein that determines Netrin-1 attraction in developing axons
11. Development
12. Spontaneous activity regulates Robo1 transcription to mediate a switch thalamocortical axon growth
13. Neuropilin-2 regulates the development of selective cranial and sensory nerves and hippocampal mossy fiber projections
14. Live Imaging of Calcium Dynamics during Axon Degeneration Reveals Two Functionally Distinct Phases of Calcium Influx
15. A Death Receptor 6-Amyloid Precursor Protein Pathway Regulates Synapse Density in the Mature CNS But Does Not Contribute to Alzheimer's Disease-Related Pathophysiology in Murine Models
16. Genetic Analysis Reveals that Amyloid Precursor Protein and Death Receptor 6 Function in the Same Pathway to Control Axonal Pruning Independent of -Secretase
17. Genetic dissection of the function of hindbrain axonal commissures
18. Genetic dissection of the function of hindbrain axonal commissures.
19. Genetic Dissection of the Function of Hindbrain Axonal Commissures
20. Death Receptor 6 Regulates Adult Experience-Dependent Cortical Plasticity
21. In Defense of Basic Science Funding: Today's Scientific Discovery Is Tomorrow's Medical Advance
22. Phenotype of mice lacking functional Deleted in colorectal cancer (Dcc) gene
23. A Caspase Cascade Regulating Developmental Axon Degeneration
24. Mechanisms and Molecules of Neuronal Wiring: A Primer
25. Collaborative and Specialized Functions of Robo1 and Robo2 in Spinal Commissural Axon Guidance
26. Robo-2 Controls the Segregation of a Portion of Basal Vomeronasal Sensory Neuron Axons to the Posterior Region of the Accessory Olfactory Bulb
27. Reassessment of Corticospinal Tract Regeneration in Nogo-Deficient Mice
28. Axotomy-Induced Smad1 Activation Promotes Axonal Growth in Adult Sensory Neurons
29. [P2.24]: Semaphorin3a promotes neuronal apoptosis in a plexina3‐dependent manner during dorsal root ganglia development
30. Regenerative Growth of Corticospinal Tract Axons via the Ventral Column after Spinal Cord Injury in Mice
31. Molecular Mechanisms Controlling Midline Crossing by Precerebellar Neurons
32. Squeezing axons out of the gray matter: a role for slit and semaphorin proteins from midline and ventral spinal cord.
33. Polarity and Patterning in the Neural Tube: The Origin and Function of the Floor Plate
34. Dual Branch-Promoting and Branch-Repelling Actions of Slit/Robo Signaling on Peripheral and Central Branches of Developing Sensory Axons
35. Netrin-1/DCC Signaling in Commissural Axon Guidance Requires Cell-Autonomous Expression of Heparan Sulfate
36. Robo1 and Robo2 Cooperate to Control the Guidance of Major Axonal Tracts in the Mammalian Forebrain
37. [S41]: Netrin1 act as an attractive and a repulsive cue to specify the topography of thalamocortical projections in the ventral telencephalon
38. Aberrant development of hippocampal circuits and altered neural activity in netrin 1-deficient mice
39. Attraction et répulsion sont les deux moteurs du guidage axonal.
40. Semaphorins III and IV repel hippocampal axons via two distinct receptors
41. A role for netrin-1 in the guidance of cortical efferents
42. The Role of the Floor Plate in Axon Guidance
43. Orientation of commissural axons in vitro in response to a floor plate-derived chemoattractant
44. Guidance of Developing Axons by Diffusible Chemoattractants
45. Mesodermal control of neural cell identity: Floor plate induction by the notochord.
46. Biochemical characterization of netrin-synergizing activity.
47. Neurotransmitter‐induced currents in retinal bipolar cells of the axolotl, Ambystoma mexicanum.
48. Noise analysis predicts at least four states for channels closed by glutamate
49. Two murine homologs of the Drosophila single-minded protein that interact with the mouse aryl hydrocarbon receptor nuclear translocator protein.
50. Membrane currents in retinal bipolar cells of the axolotl.
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