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1) Alexander GE, Crutcher MD. Functional architecture of basal ganglia circuits: neural substrates of parallel processing. Trends Neurosci. 1990; 7: 266-71
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2) DeLong MR. Primate models of movement disorders of basal ganglia origin. Trend Neurosci. 1990; 13: 281-5
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3) Raz A, Vaadia E, Bergman H. Firing patterns and correlations of spontaneous discharge of pallidal neurons in the normal and the tremulous 1-methyl-4 phenyl-1, 2, 3, 6-tetrahydropyridine vervet model of parkinsonism. J Neurosci. 2000; 20: 8559-71
PubMed
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4) Wichmann T, Bergman H, Starr PA, et al. Comparison of MPTP-induced changes in spontaneous neuronal discharge in the internal pallidal segment and in the substantia nigra pars reticulata in primates. Exp Brain Res. 1999; 125: 397-409
PubMed CrossRef
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5) Hashimoto T, Elder CM, Okun M, et al. Stimulation of the subthalamic nucleus changes the firing pattern of pallidal neurons. J Neurosci. 2003; 23: 1916-23
PubMed
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6) Bergman H, Wichmann T, Karmon B, et al. The primate subthalamic nucleus. II. Neuronal activity in the MPTP model of parkinsonism. J Neurophysiol. 1994; 72: 507-20
PubMed
医中誌リンクサービス
7) Miller WC, DeLong MR. Altered tonic activity of neurons in the globus pallidus and subthalamic nucleus in the primate MPTP model of parkinsonism. In: Carpenter MB, Jayaraman A, editors. The basal ganglia II. New York: Plenum; 1987. p. 415-27
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8) Filion M, Tremblay L. Abnormal spontaneous activity of globus pallidus neurons with MPTP-induced parkinsonism. Brain Res. 1991; 547: 142-51
PubMed
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9) Raz A, Vaadia E, Bergman H. Firing patterns and correlations of spontaneous discharge of pallidal neurons in the normal and the tremulous 1-methyl-4phenyl-1, 2, 3, 6-tetrahydropyridine vervet model of parkinsonism. J Neurosci. 2000; 20: 8559-71
PubMed
医中誌リンクサービス
10) Nini A, Feingold A, Slovin H, et al. Neurons in the globus pallidus do not show correlated activity in the normal monkey, but phase-locked oscillations appear in the MPTP model of parkinsonism. J Neurophysiol. 1995; 74: 1800-5
PubMed
医中誌リンクサービス
11) Levy R, Hutchison WD, Lozano AM, et al. High-frequency synchronization of neuronal activity in the subthalamic nucleus of parkinsonian patients with limb tremor. J Neurosci. 2000; 20: 7766-75
PubMed
医中誌リンクサービス
12) Levy R, Hutchison WD, Lozano AM, et al. Synchronized neuronal discharge in the basal ganglia of parkinsonian patients is limited to oscillatory activity. J Neurosci. 2002; 22: 2855-61
PubMed
医中誌リンクサービス
13) Raz A, Frechter-Mazar V, Feingold A, et al. Activity of pallidal and striatal tonically active neurons is correlated in MPTP-treated monkeys but not in normal monkeys. J Neurosci. 2001; 21: RC128(1-5)
PubMed
医中誌リンクサービス
14) Filion M, Tremblay L, Bedard P. Abnormal influences of passive limb movement on the activity of globus pallidus neurons in parkinsonian monkeys. Brain Res. 1988; 444: 165-76
PubMed CrossRef
医中誌リンクサービス
15) Boraud T, Bezard E, Bioulac B, et al. Ratio of inhibited-to-activated pallidal neurons dicreases dramatically during passive limb movement in the MPTP-treated monkey. J Neurophysiol. 2000; 83: 1760-3
PubMed
医中誌リンクサービス
16) Kuhn AA, Trottenberg T, Kivi A, et al. The relationship between local field potential and neuronal discharge in the subthalamic nucleus of patients with Parkinson's disease. Exp Neurol. 2005; 194: 212-20
PubMed CrossRef
医中誌リンクサービス
17) Marsden JF, Limousin-Dowsey P, Ashby P, et al. Subthalamic nucleus, sensorimotor cortex and muscle interrelationships in Parkinson's disease. Brain. 2001; 124: 378-88
PubMed CrossRef
医中誌リンクサービス
18) Willilams D, Tijssen M, van Bruggen G, et al. Dopamine-dependent changes in the functional connectivity between basal ganglia and cerebral cortex in humans. Brain. 2002; 125: 1558-69
PubMed CrossRef
医中誌リンクサービス
19) Brown P, Oliviero A, Mazzone P, et al. Dopamine dependency of oscillations between subthalamic nucleus and pallidum in Parkinson's disease. J Neurosci. 2001; 21: 1033-8
PubMed
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20) Cossidy M, Mazzone P, Oliviero A, et al. Movement-related changes in synchronization in the human basal ganglia. Brain. 2002; 125: 1235-46
PubMed CrossRef
医中誌リンクサービス
21) Levy R, Ashby P, Hutchson WD, et al. Dependency of subthalamic nucleus oscillation on movement and dopamine in Parkinson's disease. Brain. 2002; 125: 1196-209
PubMed CrossRef
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22) Brown P. Oscillatory nature of human basal ganglia activity: relationship to the pathophysiology of Parkinson's disease. Mov Disord. 2003; 18: 357-63
PubMed CrossRef
医中誌リンクサービス
23) Levy R, Dostrovsky JO, Lang AE, et al. Effects of apomorphine on subthalamic nucleus and globus pallidus internus neurons in patients with Parkinson's disease. J Neurophysiol. 2001; 86: 249-60
PubMed
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24) Moro E, Esselink RJA, Xie J, et al. The impact on Parkinson's disease of electrical parameter settings in STN stimulation. Neurology. 2002; 59: 706-13
PubMed
医中誌リンクサービス
25) Eusebio A, Chen CC, Lu CS, et al. Effects of low-frequency stimulation of the subthalamic nucleus on movement in Parkinson's disease. Exp Neurol. 2008; 209: 125-30
PubMed CrossRef
医中誌リンクサービス
26) Hutchison WD, Dostrovsky J, Walters JR, et al. Neuronal oscillations in the basal ganglia and movement disorders: evidence from whole animal and human recordings. J Neurosci. 2004; 24: 9240-3
PubMed CrossRef
医中誌リンクサービス
27) Williams D, Kuhn AA, Kupsch A, et al. Behavioral cues are associated with modulations of synchronous oscillations in the human subthalamic nucleus. Brain. 2003; 126: 1975-85
PubMed CrossRef
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28) Kuhn AA, Williams D, Kupsch A, et al. Event-related beta desynchronization in human subthalamic nucleus correlates with motor performance. Brain. 2004; 127: 735-46
PubMed CrossRef
医中誌リンクサービス
29) Williams D, Kuhn AA, Kupsch A, et al. The relationship between oscillatory activity and motor reaction time in the parkinsonian subthalamic nucleus. Eur J Neurosci. 2005; 21: 249-58
PubMed CrossRef
医中誌リンクサービス
30) Doyle LMF, Kuhn AA, Hariz M, et al. Levodopa-induced modulation of subthalamic beta oscillations during self-paced movements in patients with Parkinson's disease. Eur J Neurosci. 2005; 21: 1403-12
PubMed CrossRef
医中誌リンクサービス
31) Leblois A, Meissner W, Bioulac B, et al. Late emergence of synchronized oscillatory activity in the pallidum during progressive parkinsonism. Eur J Neurosci. 2007; 26: 1701-13
PubMed CrossRef
医中誌リンクサービス
32) Lozano AM, Kumar R, Gross RE, et al. Globus pallidus internus pallidotomy for generalized dystonia. Mov Disord. 1997; 12: 865-70
PubMed CrossRef
医中誌リンクサービス
33) Lenz FA, Suarez JI, Metman LV, et al. Pallidal activity during dystonia: somatosensory reorganization and changes with severity. J Neurol Neurosurg Psychiat. 1998; 65: 767-70
医中誌リンクサービス
34) Vitek JL, Vitek JL, Chockkan V, et al. Neuronal activity in the basal ganglia in patients with generalized dystonia and hemiballism. Ann Neurol. 1999; 46: 22-35
PubMed CrossRef
医中誌リンクサービス
35) Kumar R, Daher A, Hutchson WD, et al. Globus pallidus deep brain stimulation for generalized dystonia: Clinical and PET investigation. Neurology. 1999; 53: 871-4
PubMed
医中誌リンクサービス
36) Hashimoto T, Tada T, Nakazato F, et al. Abnormal activity in the globus pallidus in off-period dystonia. Ann Neurol. 2001; 49: 242-5
PubMed CrossRef
医中誌リンクサービス
37) Zhuang P, Yongjie L, Hallett M. Neuronal activity in the basal ganglia and thalamus in patients with dystonia. Clin Neurophysiol. 2004; 115: 2542-57
PubMed CrossRef
医中誌リンクサービス
38) Silberstein P, Kuhn AA, Kupsch A, et al. Patterning of globus pallidus local field potentials differs between Parkinson's disease and dystonia. Brain. 2003; 126: 2597-608
PubMed CrossRef
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39) Chen CC, Kuhn AA, Hoffmann KT, et al. Oscillatory pallidal local field potential activity correlates with involuntary EMG in dystonia. Neurology. 2006; 66: 418-20
PubMed CrossRef
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40) Chen CC, Kuhn AA, Trottenberg T, et al. Neuronal activity in globus pallidus interna can be synchronized to local firld potential activity over 3-12 Hz in patients with dystonia. Exp Neurol. 2006; 202: 480-6
PubMed CrossRef
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