408 results on '"Rhoades, Robert W."'
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2. Systematic reviews of assessment measures and pharmacologic treatments for agitation
3. Lesion-Induced Reorganization in the Brainstem is not Completely Expressed in Somatosensory Cortex
4. Serotonin 1B Receptors in the Developing Somatosensory and Visual Cortices are Located on Thalamocortical Axons
5. Directional Selectivity in Hamster Superior Colliculus Is Modified by Strobe-Rearing But Not by Dark-Rearing
6. Cryolipolysis for Noninvasive Fat Cell Destruction: Initial Results from a Pig Model
7. Neonatal damage to the rat's infraorbital nerve upregulates both galanin and neuropeptide Y in individual vibrissae-related primary afferent axons
8. Synaptic organization of damaged infraorbital nerve axons in perinatal rats: demonstration by galanin immunocytochemistry
9. The formation of a cortical somatotopic map
10. Prevention of galanin upregulation following neonatal infraorbital nerve transection or attenuation of axoplasmic transport does not rescue central vibrissae-related patterns in the rat
11. Chapter 6 Determinants of axonal and dendritic structure in the superior colliculus
12. Effects of elevated serotonin levels on patterns of GAP-43 expression during barrel development in rat somatosensory cortex
13. Neither peripheral nerve input nor cortical NMDA receptor activity are necessary for recovery of a disrupted barrel pattern in rat somatosensory cortex
14. The cortical vibrissae representation is normal in transgenic mice lacking the 5-HT 1B receptor
15. Effects of Neonatal Attenuation of Axoplasmic Flow or Transection of the Rat's Infraorbital Nerve on the Morphology of Individual Trigeminal Primary Afferent Terminals in the Brainstem
16. Effects of ambient lighting and the albino gene on the developing visual evoked potential of the mouse
17. Treatment of relapsing-remitting multiple sclerosis
18. New treatments and treatment goals for patients with relapsing-remitting multiple sclerosis
19. Individualizing treatment goals and interventions for people with MS
20. Relation of albinism and drugs to the visual evoked potential of the mouse
21. THE MANIPULATION OF INFORMATIONAL FEEDBACK AND ITS EFFECTS UPON PRISM ADAPTATION
22. Boundary-limited serotonergic influences on pattern organization in rat sensory cortex
23. Reducing Contralateral SI Activity Reveals Hindlimb Receptive Fields in the SI Forelimb-Stump Representation of Neonatally Amputated Rats
24. Local GABA Receptor Blockade Reveals Hindlimb Responses in the SI Forelimb-Stump Representation of Neonatally Amputated Rats
25. Comparison of reorganization of the somatosensory system in rats that sustained forelimb removal as neonates and as adults
26. Role of Development in Reorganization of the SI Forelimb-Stump Representation in Fetally, Neonatally, and Adult Amputated Rats
27. Effects of alterations of the vibrissae-related organization of thalamocortical axons upon the organization and outgrowth of intracortical connections in the barrelfield of the rat
28. Neonatally elevated serotonin levels alter terminal arbors of individual retinal ganglion cells in superior colliculus of hamsters
29. Intracortical Pathway Involving Dysgranular Cortex Conveys Hindlimb Inputs to S-I Forelimb-Stump Representation of Neonatally Amputated Rats
30. Suppression of Hindlimb Inputs to S-I Forelimb-Stump Representation of Rats With Neonatal Forelimb Removal: GABA Receptor Blockade and Single-Cell Responses
31. The cortical vibrissae representation is normal in transgenic mice lacking the 5-HT1B receptor
32. Selective facilitation of the serotonin1B receptor causes disorganization of thalamic afferents and barrels in somatosensory cortex of rat
33. Clorgyline treatment elevates cortical serotonin and temporarily disrupts the vibrissae-related pattern in rat somatosensory cortex
34. Organization of the corticotectal projection in hamsters with neonatally elevated levels of serotonin in the superior colliculus
35. Effects of norepinephrine upon superficial layer neurons in the superior colliculus of the hamster: In vitro studies
36. Effects of norepinephrine on the activity of visual neurons in the superior colliculus of the hamster
37. Source of Inappropriate Receptive Fields in Cortical Somatotopic Maps From Rats That Sustained Neonatal Forelimb Removal
38. Differential expression of acetylcholinesterase in the brainstem, ventrobasal thalamus and primary somatosensory cortex of perinatal rats, mice, and hamsters
39. Increased serotonin in the developing superior colliculus affects receptive-field size of retinotectal afferents but not that of postsynaptic neurons
40. Effect of activity blockade on changes in vibrissae-related patterns in the rat's primary somatosensory cortex induced by serotonin depletion
41. Thalamocortical and intracortical projections to the forelimb-stump SI representation of rats that sustained neonatal forelimb removal
42. Augmentation of serotonin in the developing superior colliculus alters the normal development of the uncrossed retinotectal projection
43. Sensitive period for lesion-induced reorganization of intracortical projections within the vibrissae representation of rat's primary somatosensory cortex
44. Long-term effects of neonatal axoplasmic transport attenuation on the organization of the rat's trigeminal system
45. Blockade of GABAergic Inhibition Reveals Reordered Cortical Somatotopic Maps in Rats That Sustained Neonatal Forelimb Removal
46. Projection status of calbindin- and parvalbumin-immunoreactive neurons in the superficial layers of the rat's superior colliculus
47. Contributions of raphe-cortical and thalamocortical axons to the transient somatotopic pattern of serotonin immunoreactivity in rat cortex
48. Differential age-dependent effects of retinal deafferentation upon calbindinand parvalbumin-immunoreactive neurons in the superficial layers of the rat's superior colliculus
49. Thalamocortical afferents in rat transiently express high-affinity serotonin uptake sites
50. Effect of Neonatal Axoplasmic Transport Attenuation in the Infraorbital Nerve on Vibrissae-related Patterns in the Rat's Brainstem, Thalamus and Cortex
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