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1. Insulin receptor sensitization restores neocortical excitation/inhibition balance in a mouse model of autism

2. Altered Forebrain Functional Connectivity and Neurotransmission in a Kinase-Inactive Mouse Model of Autism

3. Insulin receptor sensitization restores neocortical excitation/inhibition balance in a mouse model of autism

4. Altered Forebrain Functional Connectivity and Neurotransmission in a Kinase-Inactive Mouse Model of Autism

5. Enhancement of postsynaptic GABAA and extrasynaptic NMDA receptor-mediated responses in the barrel cortex of Mecp2-null mice

6. Thalamic NMDA Receptor Function Is Necessary for Patterning of the Thalamocortical Somatosensory Map and for Sensorimotor Behaviors

7. Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recovery

8. Functional significance of cortical NMDA receptors in somatosensory information processing

9. Insulin-Independent GABAA Receptor-Mediated Response in the Barrel Cortex of Mice with Impaired Met Activity

10. Sensory Activity-Dependent and Sensory Activity-Independent Properties of the Developing Rodent Trigeminal Principal Nucleus

11. LTD and LTP at the Developing Retinogeniculate Synapse

12. Neonatal sensory nerve injury-induced synaptic plasticity in the trigeminal principal sensory nucleus

13. Properties of LTD and LTP of retinocollicular synaptic transmission in the developing rat superior colliculus

14. Synaptic Mechanisms Regulating the Activation of a Ca2+-Mediated Plateau Potential in Developing Relay Cells of the LGN

15. Synaptic plasticity in the trigeminal principal nucleus during the period of barrelette formation and consolidation

16. Neonatal Deafferentation Does Not Alter Membrane Properties of Trigeminal Nucleus Principalis Neurons

17. Nitric oxide, impulse activity, and neurotrophins in visual system development11Published on the World Wide Web on 16 August 2000

18. Recurrent inhibitory circuitry in the deep layers of the rabbit superior colliculus

19. Retinal Input Induces Three Firing Patterns in Neurons of the Superficial Superior Colliculus of Neonatal Rats

20. Functional connectivity in the rodent trigeminal pathway grown in vitro

21. Astrocytes promote peripheral nerve injury-induced reactive synaptogenesis in the neonatal CNS

22. Peripheral nerve damage does not alter release properties of developing central trigeminal afferents

23. Conversion of functional synapses into silent synapses in the trigeminal brainstem after neonatal peripheral nerve transection

24. Structural and functional composition of the developing retinogeniculate pathway in the mouse

25. NMDA receptor-dependent regulation of axonal and dendritic branching

26. Nature of inhibitory postsynaptic activity in developing relay cells of the lateral geniculate nucleus

27. L-Type Calcium Channel-Mediated Plateau Potentials in Barrelette Cells During Structural Plasticity

28. Electrophysiological properties and synaptic responses of cells in the trigeminal principal sensory nucleus of postnatal rats

29. Three GABA receptor-mediated postsynaptic potentials in interneurons in the rat lateral geniculate nucleus

30. Control of recurrent inhibition of the lateral posterior-pulvinar complex by afferents from the deep layers of the superior colliculus of the rabbit

31. Physiological properties of neurons in the optic layer of the rat's superior colliculus

32. Recurrent inhibitory interneurons of the Rabbit's lateral posterior-pulvinar complex

33. Enhancement of postsynaptic GABAA and extrasynaptic NMDA receptor-mediated responses in the barrel cortex of Mecp2-null mice.

34. An in vitro model of the kitten retinogeniculate pathway

35. Neonatal infraorbital nerve crush-induced CNS synaptic plasticity and functional recovery.

36. Functional significance of cortical NMDA receptors in somatosensory information processing.

37. Synaptic Regulation of L-Type Ca2+Channel Activity and Long-Term Depression during Refinement of the Retinocollicular Pathway in Developing Rodent Superior Colliculus

38. Astrocytes promote peripheral nerve injury-induced reactive synaptogenesis in the neonatal CNS.

39. LTD and LTP at the Developing Retinogeniculate Synapse.

47. Projection of brain stem neurons to the perigeniculate nucleus and the lateral geniculate nucleus in the cat

48. Synaptic organization of the lateral geniculate nucleus of the rabbit: lack of feed-forward inhibition

49. Both fast and slow relay cells in lateral geniculate nucleus of rabbits receive recurrent inhibition

50. Dependence of Retinogeniculate Transmission on Membrane Voltage in the Cat. Differences between X and Y cells

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