Thalamic relay nuclei of the basal ganglia form both reciprocal and nonreciprocal cortical connections, linking multiple frontal cortical areas.
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Conditional routing of information to the cortex: a model of the basal ganglia's role in cognitive coordinationAbulia following penetrating brain injury during endoscopic sinus surgery with disruption of the anterior cingulate circuit: case report.Striatal Circuits as a Common Node for Autism PathophysiologyFrontal-thalamic circuits associated with languageInteroceptive predictions in the brainComparative Overview of Visuospatial Working Memory in Monkeys and RatsMotor thalamus integration of cortical, cerebellar and basal ganglia information: implications for normal and parkinsonian conditionsBasal ganglia output to the thalamus: still a paradoxIntegration of cortical and pallidal inputs in the basal ganglia-recipient thalamus of singing birdsA cortical motor nucleus drives the basal ganglia-recipient thalamus in singing birdsThe reward circuit: linking primate anatomy and human imagingA comprehensive excitatory input map of the striatum reveals novel functional organization.Altered functional connectivity in persistent developmental stuttering.Excitatory amplification through divergent-convergent circuits: the role of the midline thalamus in limbic seizures.Withdrawal from extended-access cocaine self-administration results in dysregulated functional activity and altered locomotor activity in rats.Decision-making in the ventral premotor cortex harbinger of action.Neural encoding of auditory discrimination in ventral premotor cortex.Invasive circuitry-based neurotherapeutics: stereotactic ablation and deep brain stimulation for OCDNeuromodulatory adaptive combination of correlation-based learning in cerebellum and reward-based learning in basal ganglia for goal-directed behavior control.Parallel driving and modulatory pathways link the prefrontal cortex and thalamusFunctional interaction of medial mediodorsal thalamic nucleus but not nucleus accumbens with amygdala and orbital prefrontal cortex is essential for adaptive response selection after reinforcer devaluation.Specialized pathways from the primate amygdala to posterior orbitofrontal cortex.AMPA/kainate, NMDA, and dopamine D1 receptor function in the nucleus accumbens core: a context-limited role in the encoding and consolidation of instrumental memory.Topography of connections between human prefrontal cortex and mediodorsal thalamus studied with diffusion tractography.Aging with HIV-1 Infection: Motor Functions, Cognition, and Attention--A Comparison with Parkinson's DiseaseHigh field FMRI reveals thalamocortical integration of segregated cognitive and emotional processing in mediodorsal and intralaminar thalamic nucleiArea 4 has layer IV in adult primates.Localized disruption of Narp in medial prefrontal cortex blocks reinforcer devaluation performanceComputational models of basal-ganglia pathway functions: focus on functional neuroanatomy.Head direction cell representations maintain internal coherence during conflicting proximal and distal cue rotations: comparison with hippocampal place cells.Advances in understanding mechanisms of thalamic relays in cognition and behaviorThalamofrontal neurodevelopment in new-onset pediatric idiopathic generalized epilepsy.Morphological abnormalities of the thalamus in youths with attention deficit hyperactivity disorder.Enlargement of thalamic nuclei in Tourette syndrome.Cognitive consilience: primate non-primary neuroanatomical circuits underlying cognition.Aberrant brain activation during gaze processing in boys with fragile X syndrome.Dissociating the role of prefrontal and premotor cortices in controlling inhibitory mechanisms during motor preparation.Pathways for Emotions: Specializations in the Amygdalar, Mediodorsal Thalamic, and Posterior Orbitofrontal Network.Signaling patterns of globus pallidus internal segment neurons during forearm rotation.The primate thalamostriatal systems: Anatomical organization, functional roles and possible involvement in Parkinson's disease.
P2860
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P2860
Thalamic relay nuclei of the basal ganglia form both reciprocal and nonreciprocal cortical connections, linking multiple frontal cortical areas.
description
2002 nî lūn-bûn
@nan
2002年の論文
@ja
2002年学术文章
@wuu
2002年学术文章
@zh-cn
2002年学术文章
@zh-hans
2002年学术文章
@zh-my
2002年学术文章
@zh-sg
2002年學術文章
@yue
2002年學術文章
@zh
2002年學術文章
@zh-hant
name
Thalamic relay nuclei of the b ...... ltiple frontal cortical areas.
@en
Thalamic relay nuclei of the b ...... ltiple frontal cortical areas.
@nl
type
label
Thalamic relay nuclei of the b ...... ltiple frontal cortical areas.
@en
Thalamic relay nuclei of the b ...... ltiple frontal cortical areas.
@nl
prefLabel
Thalamic relay nuclei of the b ...... ltiple frontal cortical areas.
@en
Thalamic relay nuclei of the b ...... ltiple frontal cortical areas.
@nl
P1476
Thalamic relay nuclei of the b ...... ultiple frontal cortical areas
@en
P2093
Nikolaus R McFarland
Suzanne N Haber
P304
P356
10.1523/JNEUROSCI.22-18-08117.2002
P407
P577
2002-09-01T00:00:00Z