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72 results on '"McNeill TH"'

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1. Polyphenols from green tea prevent antineuritogenic action of Nogo-A via 67-kDa laminin receptor and hydrogen peroxide.

2. Green tea catechins potentiate the neuritogenic action of brain-derived neurotrophic factor: role of 67-kDa laminin receptor and hydrogen peroxide.

3. Unilateral skill acquisition induces bilateral NMDA receptor subunit composition shifts in the rat sensorimotor striatum.

4. Methods for studying oxidative regulation of protein kinase C.

5. Green tea polyphenols precondition against cell death induced by oxygen-glucose deprivation via stimulation of laminin receptor, generation of reactive oxygen species, and activation of protein kinase Cε.

6. Green tea polyphenols potentiate the action of nerve growth factor to induce neuritogenesis: possible role of reactive oxygen species.

7. Variation in Galr1 expression determines susceptibility to exocitotoxin-induced cell death in mice.

8. A direct redox regulation of protein kinase C isoenzymes mediates oxidant-induced neuritogenesis in PC12 cells.

9. Intrastriatal dopamine D1 antagonism dampens neural plasticity in response to motor cortex lesion.

10. Differential regulation of the growth-associated proteins GAP-43 and superior cervical ganglion 10 in response to lesions of the cortex and substantia nigra in the adult rat.

11. Synapse replacement in the striatum of the adult rat following unilateral cortex ablation.

12. Alterations in rat striatal glutamate synapses following a lesion of the cortico- and/or nigrostriatal pathway.

13. Differential regulation of the growth-associated proteins, GAP-43 and SCG-10, in response to unilateral cortical ablation in adult rats.

14. Lesion-induced axon sprouting in the deafferented striatum of adult rat.

15. The messenger RNA encoding VGF, a neuronal peptide precursor, is rapidly regulated in the rat central nervous system by neuronal activity, seizure and lesion.

16. Differential regulation of astrocytic mRNAs in the rat striatum after lesions of the cortex or substantia nigra.

17. Upregulation of stathmin (p19) gene expression in adult rat brain during injury-induced synapse formation.

18. Differential spine loss and regrowth of striatal neurons following multiple forms of deafferentation: a Golgi study.

19. Age-related change in short-term synaptic plasticity intrinsic to excitatory striatal synapses.

20. Effect of buthionine sulfoximine, a synthesis inhibitor of the antioxidant glutathione, on the murine nigrostriatal neurons.

21. Decreased duration of Ca(2+)-mediated plateau potentials in striatal neurons from aged rats.

22. Dendritic remodeling of dentate granule cells following a combined entorhinal cortex/fimbria fornix lesion.

23. Comparison of RPTP zeta/beta, phosphacan, and trkB mRNA expression in the developing and adult rat nervous system and induction of RPTP zeta/beta and phosphacan mRNA following brain injury.

24. Lesion-induced sprouting of commissural/associational axons and induction of GAP-43 mRNA in hilar and CA3 pyramidal neurons in the hippocampus are diminished in aged rats.

25. Enhanced but delayed axonal sprouting of the commissural/associational pathway following a combined entorhinal cortex/fimbria fornix lesion.

26. Glial fibrillary acidic protein mRNA increases at proestrus in the arcuate nucleus of mice.

27. Increases of glial fibrillary acidic protein in the aging female mouse brain.

28. Response of striatal astrocytes to neuronal deafferentation: an immunocytochemical and ultrastructural study.

29. Differential localization of SCG10 and p19/stathmin messenger RNAs in adult rat brain indicates distinct roles for these growth-associated proteins.

30. Induction of noncatalytic TrkB neurotrophin receptors during axonal sprouting in the adult hippocampus.

31. Gonadal steroids regulate the expression of glial fibrillary acidic protein in the adult male rat hippocampus.

32. Astrocytic messenger RNA responses to striatal deafferentation in male rat.

33. Chronic estradiol administration did not cause loss of hypothalamic LHRH or TIDA neurons in young or middle-aged C57BL/6J mice.

34. Striatal responses to decortication. I. Dopaminergic and astrocytic activities.

35. Sulfated glycoprotein-2 is increased in rat hippocampus following entorhinal cortex lesioning.

36. The amygdala in Alzheimer's disease: neuropathology and Alz 50 immunoreactivity.

37. Effect of chronic adrenalectomy on neuron loss and distribution of sulfated glycoprotein-2 in the dentate gyrus of prepubertal rats.

38. Molecular and morphological correlates following neuronal deafferentation: a cortico-striatal model.

39. Castration enhances expression of glial fibrillary acidic protein and sulfated glycoprotein-2 in the intact and lesion-altered hippocampus of the adult male rat.

40. Quantitative analysis of age-related dendritic changes in medium spiny I (MSI) striatal neurons of C57BL/6N mice.

41. Differential effects of advancing age on neurotransmitter cell loss in the substantia nigra and striatum of C57BL/6N mice.

42. Neurodegenerative disorders and aging. Alzheimer's disease and Parkinson's disease--common ground.

43. Age-correlated changes in dopaminergic nigrostriatal perikarya of the C57BL/6NNia mouse.

44. Simultaneous monoamine histofluorescence and neuropeptide immunocytochemistry: V. A methodology for examining correlative monoamine-neuropeptide neuroanatomy.

45. Atrophy of medium spiny I striatal dendrites in advanced Parkinson's disease.

46. Immunocytochemical, Golgi and electron microscopic characterization of putative dendrites in the ventral glial lamina of the rat supraoptic nucleus.

47. Neuropeptides and neuropathology in the amygdala in Alzheimer's disease: relationship between somatostatin, neuropeptide Y and subregional distribution of neuritic plaques.

48. Nitroimidazole neurotoxicity: are mouse studies predictive?

49. Subnuclei in the rat hypothalamic paraventricular nucleus: a cytoarchitectural, horseradish peroxidase and immunocytochemical analysis.

50. Correlative fluorescence-immunocytochemical technique for the localization of monoamines and neurophysin (NP).

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