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1. Redundancy and multifunctionality among spinal locomotor networks

2. Spinal neuronal activation during locomotor-like activity enabled by epidural stimulation and 5-hydroxytryptamine agonists in spinal rats

3. Feed-Forwardness of Spinal Networks in Posture and Locomotion

4. Identification of interneurons activated at different inclines during treadmill locomotion in adult rats

5. Treadmill training stimulates brain-derived neurotrophic factor mRNA expression in motor neurons of the lumbar spinal cord in spinally transected rats

6. Functional recovery of stepping in rats after a complete neonatal spinal cord transection is not due to regrowth across the lesion site

7. Spinal learning in the adult mouse using the Horridge paradigm

8. Distribution and Localization of 5-HT1AReceptors in the Rat Lumbar Spinal Cord after Transection and Deafferentation

9. Acute implantation of an avulsed lumbosacral ventral root into the rat conus medullaris promotes neuroprotection and graft reinnervation by autonomic and motor neurons

10. Differential localization of two glutamic acid decarboxylases (GAD65 and GAD67) in adult monkey visual cortex

11. Cerebellar Purkinje cell loss in aging Hu-Bcl-2 transgenic mice

12. Distribution and colocalisation of glutamate decarboxylase isoforms in the rat spinal cord

13. Cyclic AMP Decreases the Expression of a Neuronal Marker (GAD67) and Increases the Expression of an Astroglial Marker (GFAP) in C6 Cells

14. Chronic Intermittent Ethanol Treatment in Rats Increases GABAA Receptor α4-Subunit Expression: Possible Relevance to Alcohol Dependence

15. Retraining the injured spinal cord

16. Increased expression of glutamate decarboxylase (GAD67) in feline lumbar spinal cord after complete thoracic spinal cord transection

17. Alterations in GABAAReceptor α1 and α4 Subunit mRNA Levels in Thalamic Relay Nuclei Following Absence-like Seizures in Rats

18. Use of quadrupedal step training to re-engage spinal interneuronal networks and improve locomotor function after spinal cord injury

19. Effects of diet and/or exercise in enhancing spinal cord sensorimotor learning

20. Comparative localization of two forms of glutamic acid decarboxylase and their mRNAs in rat brain supports the concept of functional differences between the forms

21. Transgenic mice with enhanced neuronal major histocompatibility complex class I expression recover locomotor function better after spinal cord injury

23. Expression of GABAA receptor polypeptides in clonal rat cell lines

24. Two human glutamate decarboxylases, 65-kDa GAD and 67-kDa GAD, are each encoded by a single gene

25. Glutamate Decarboxylases in Nonneural Cells of Rat Testis and Oviduct: Differential Expression of GAD65and GAD67

26. Changes in GABAA receptor subunit gamma2 in extensor and flexor motoneurons and astrocytes after spinal cord transection and motor training

27. Two genes encode distinct glutamate decarboxylases

28. Sequence and Regional Distribution of the mRNA Encoding the ?2Polypeptide of Rat ?-Aminobutyric AcidAReceptors

29. Independent cellular and ontogenetic expression of mRNAS encoding three α polypeptides of the rat GABAA receptor

30. Training locomotor networks

31. Parallel increases in striatal glutamic acid decarboxylase activity and mRNA levels in rats with lesions of the nigrostriatal pathway

32. Two chronic motor training paradigms differentially influe nce acute instrume ntal learning in spinally transected rats

33. Use of c-fos to identify activity-dependent spinal neurons after stepping in intact adult rats

34. Plasticity of the spinal neural circuitry after injury

35. Locomotor Recovery Potential after Spinal Cord Injury

36. Autonomic and motor neuron death is progressive and parallel in a lumbosacral ventral root avulsion model of cauda equina injury

37. Use-dependent modulation of inhibitory capacity in the feline lumbar spinal cord

38. gamma-Aminobutyric acid (GABA) metabolism in mammalian neural and nonneural tissues

39. A rat brain cDNA encodes enzymatically active GABA transaminase and provides a molecular probe for GABA-catabolizing cells

40. Transient increase in expression of a glutamate decarboxylase (GAD) mRNA during the postnatal development of the rat striatum

41. Postnatal expression of glutamate decarboxylases in developing rat cerebellum

42. Structural, Developmental and Functional Heterogeneity of Rat GABAA Receptors

43. Expression of mRNAs that encode D2 dopamine receptor subtypes: Anatomical, developmental, and pharmacological studies

45. In Situ Detection of GAD mRNA in Mouse Brain

46. Glutamic acid decarboxylase mRNA in rat brain: regional distribution and effects of intrastriatal kainic acid

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