Year |
Citation |
Score |
2012 |
Vitek JL, Zhang J, Hashimoto T, Russo GS, Baker KB. External pallidal stimulation improves parkinsonian motor signs and modulates neuronal activity throughout the basal ganglia thalamic network. Experimental Neurology. 233: 581-6. PMID 22001773 DOI: 10.1016/j.expneurol.2011.09.031 |
0.401 |
|
2010 |
Baker KB, Lee JY, Mavinkurve G, Russo GS, Walter B, DeLong MR, Bakay RA, Vitek JL. Somatotopic organization in the internal segment of the globus pallidus in Parkinson's disease. Experimental Neurology. 222: 219-25. PMID 20059997 DOI: 10.1016/J.Expneurol.2009.12.030 |
0.6 |
|
2008 |
Xu W, Russo GS, Hashimoto T, Zhang J, Vitek JL. Subthalamic nucleus stimulation modulates thalamic neuronal activity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 28: 11916-24. PMID 19005057 DOI: 10.1523/JNEUROSCI.2027-08.2008 |
0.466 |
|
2008 |
Dorval AD, Russo GS, Hashimoto T, Xu W, Grill WM, Vitek JL. Deep brain stimulation reduces neuronal entropy in the MPTP-primate model of Parkinson's disease. Journal of Neurophysiology. 100: 2807-18. PMID 18784271 DOI: 10.1152/jn.90763.2008 |
0.439 |
|
2008 |
Hahn PJ, Russo GS, Hashimoto T, Miocinovic S, Xu W, McIntyre CC, Vitek JL. Pallidal burst activity during therapeutic deep brain stimulation. Experimental Neurology. 211: 243-51. PMID 18355810 DOI: 10.1016/J.Expneurol.2008.01.032 |
0.355 |
|
2006 |
Zhang J, Russo GS, Mewes K, Rye DB, Vitek JL. Lesions in monkey globus pallidus externus exacerbate parkinsonian symptoms. Experimental Neurology. 199: 446-53. PMID 16487515 DOI: 10.1016/J.Expneurol.2006.01.006 |
0.396 |
|
2005 |
Desmurget M, Turner RS, Prablanc C, Russo GS, Alexander GE, Grafton ST. Updating target location at the end of an orienting saccade affects the characteristics of simple point-to-point movements. Journal of Experimental Psychology. Human Perception and Performance. 31: 1510-36. PMID 16366805 DOI: 10.1037/0096-1523.31.6.1510 |
0.452 |
|
2004 |
Crutcher MD, Russo GS, Ye S, Backus DA. Target-, limb-, and context-dependent neural activity in the cingulate and supplementary motor areas of the monkey. Experimental Brain Research. 158: 278-88. PMID 15365665 DOI: 10.1007/s00221-004-1895-0 |
0.714 |
|
2002 |
Russo GS, Backus DA, Ye S, Crutcher MD. Neural activity in monkey dorsal and ventral cingulate motor areas: comparison with the supplementary motor area. Journal of Neurophysiology. 88: 2612-29. PMID 12424298 DOI: 10.1152/jn.00306.2002 |
0.706 |
|
2001 |
Backus DA, Ye S, Russo GS, Crutcher MD. Neural activity correlated with the preparation and execution of visually guided arm movements in the cingulate motor area of the monkey. Experimental Brain Research. 140: 182-9. PMID 11521150 DOI: 10.1007/s002210100807 |
0.717 |
|
2000 |
Russo GS, Bruce CJ. Supplementary eye field: representation of saccades and relationship between neural response fields and elicited eye movements. Journal of Neurophysiology. 84: 2605-21. PMID 11068002 DOI: 10.1152/JN.2000.84.5.2605 |
0.658 |
|
1996 |
Russo GS, Bruce CJ. Neurons in the supplementary eye field of rhesus monkeys code visual targets and saccadic eye movements in an oculocentric coordinate system. Journal of Neurophysiology. 76: 825-48. PMID 8871203 DOI: 10.1152/JN.1996.76.2.825 |
0.756 |
|
1994 |
Russo GS, Bruce CJ. Frontal eye field activity preceding aurally guided saccades. Journal of Neurophysiology. 71: 1250-3. PMID 8201415 DOI: 10.1152/JN.1994.71.3.1250 |
0.703 |
|
1993 |
Russo GS, Bruce CJ. Effect of eye position within the orbit on electrically elicited saccadic eye movements: a comparison of the macaque monkey's frontal and supplementary eye fields. Journal of Neurophysiology. 69: 800-18. PMID 8385196 DOI: 10.1152/JN.1993.69.3.800 |
0.606 |
|
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