Short communicationThe distribution of the globus pallidus neurons with input from various cortical areas in the monkeys
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Cited by (85)
Neurophysiological monitoring during neurosurgery for movement disorders
2020, Neurophysiology in Neurosurgery: A Modern ApproachThe effects of zonisamide on L-DOPA–induced dyskinesia in Parkinson's disease model mice
2019, Neurochemistry InternationalBlockade of synaptic activity in the neostriatum and activation of striatal efferent pathways produce opposite effects on panic attack-like defensive behaviours evoked by GABAergic disinhibition in the deep layers of the superior colliculus
2018, Physiology and BehaviorCitation Excerpt :Microinjections of cobalt chloride (CoCl2) into the CPu caused an anti-aversive effect, while the activation of the CPu neuronal perikarya through local administration of an NMDA receptor agonist facilitated panic attack-like defensive behaviour elicited by the dlSC GABAA receptor blockade with bicuculline. The basal nuclei provide an interface between motor centres and telencephalic areas related to higher brain function [43, 44]. The main output from the basal nuclei is to the globus pallidus, a structure known to be connected to the dorsal thalamus, subthalamic nucleus and SNpr in laboratory animals [24, 44–48].
Organization of the Globus Pallidus
2016, Handbook of Behavioral NeuroscienceCitation Excerpt :Fig. 13.1D shows that neurons in the two motor-related territories in primate putamen form multiple motor territories in the GPe and GPi. A rough body representation, with the head at the ventral and the foot at the dorsal regions, can be found in each territory (Kaneda et al., 2002; Yoshida et al., 1993). The GPe and GPi receive major excitatory inputs from the STN (Fig. 13.3) (see chapter: The Subthalamic Nucleus), which receives major excitatory inputs mainly from the frontal cortex and the intralaminar thalamic nuclei (Bevan and Bolam, 1995; Kita et al., 2014).
Deep brain stimulation. how does it work?
2013, Handbook of Clinical Neurology
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The authors with to thank Prof. K. Sasaki for critical reading of the manuscript and constant encouragement, and Dr. Y. Yamagata for help with the English language.
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Present address: Department of Integrative Physiology, National Institute for Physiological Sciences, Okazaki 444, Japan.