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1. Potentiation of cerebellar Purkinje cells facilitates whisker reflex adaptation through increased simple spike activity.

2. Cerebellar control of gait and interlimb coordination.

3. Cerebellar modules operate at different frequencies.

4. Cerebellar potentiation and learning a whisker-based object localization task with a time response window.

5. The effect of an mGluR5 inhibitor on procedural memory and avoidance discrimination impairments in Fmr1 KO mice.

6. Anatomical pathways involved in generating and sensing rhythmic whisker movements.

7. Spatiotemporal firing patterns in the cerebellum.

8. Encoding of whisker input by cerebellar Purkinje cells.

9. GABAergic inhibition shapes frequency adaptation of cortical activity in a frequency-dependent manner.

10. Activity-dependent plasticity of developing climbing fiber-Purkinje cell synapses.

11. Homosynaptic long-term synaptic potentiation of the "winner" climbing fiber synapse in developing Purkinje cells.

12. Requirement of TrkB for synapse elimination in developing cerebellar Purkinje cells.

13. Mice lacking the major adult GABAA receptor subtype have normal number of synapses, but retain juvenile IPSC kinetics until adulthood.

14. GABAA receptor maturation in relation to eye opening in the rat visual cortex.

15. Somatodendritic secretion in oxytocin neurons is upregulated during the female reproductive cycle.

16. Neonatal development of the rat visual cortex: synaptic function of GABAA receptor alpha subunits.

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