» Articles » PMID: 12067746

Functional Significance of the Cortico-subthalamo-pallidal 'hyperdirect' Pathway

Overview
Journal Neurosci Res
Publisher Elsevier
Specialty Neurology
Date 2002 Jun 18
PMID 12067746
Citations 541
Authors
Affiliations
Soon will be listed here.
Abstract

How the motor-related cortical areas modulate the activity of the output nuclei of the basal ganglia is an important issue for understanding the mechanisms of motor control by the basal ganglia. The cortico-subthalamo-pallidal 'hyperdirect' pathway conveys powerful excitatory effects from the motor-related cortical areas to the globus pallidus, bypassing the striatum, with shorter conduction time than effects conveyed through the striatum. We emphasize the functional significance of the 'hyperdirect' pathway and propose a dynamic 'center-surround model' of basal ganglia function in the control of voluntary limb movements. When a voluntary movement is about to be initiated by cortical mechanisms, a corollary signal conveyed through the cortico-subthalamo-pallidal 'hyperdirect' pathway first inhibits large areas of the thalamus and cerebral cortex that are related to both the selected motor program and other competing programs. Then, another corollary signal through the cortico-striato-pallidal 'direct' pathway disinhibits their targets and releases only the selected motor program. Finally, the third corollary signal possibly through the cortico-striato-external pallido-subthalamo-internal pallidal 'indirect' pathway inhibits their targets extensively. Through this sequential information processing, only the selected motor program is initiated, executed and terminated at the selected timing, whereas other competing programs are canceled.

Citing Articles

Emergent Aspects of the Integration of Sensory and Motor Functions.

Florio T Brain Sci. 2025; 15(2).

PMID: 40002495 PMC: 11853489. DOI: 10.3390/brainsci15020162.


Pallidal prototypic neuron and astrocyte activities regulate flexible reward-seeking behaviors.

Kang S, Yang M, Bennett A, Kang S, Lee S, Choi D bioRxiv. 2025; .

PMID: 39990452 PMC: 11844423. DOI: 10.1101/2025.02.10.637554.


Navigating neural pathways: how stimulation polarity shapes deep brain stimulation efficacy.

Asadi A, Koirala N, Muthuraman M Brain Commun. 2025; 7(1):fcaf061.

PMID: 39980738 PMC: 11839837. DOI: 10.1093/braincomms/fcaf061.


Complex striate-frontal projection and specific frontal gyrus dysfunctions concern with the delusional misidentification syndrome: A case report and literature review.

Matsuzono K, Onuki Y, Otsuka K, Hiki H, Anan Y, Mashiko T Sci Prog. 2025; 108(1):368504251322083.

PMID: 39973080 PMC: 11840838. DOI: 10.1177/00368504251322083.


Motor cortex stimulation ameliorates parkinsonian locomotor deficits: effectual and mechanistic differences from subthalamic modulation.

Lee L, Ngan C, Yang C, Wang R, Lai H, Chen C NPJ Parkinsons Dis. 2025; 11(1):32.

PMID: 39971974 PMC: 11840011. DOI: 10.1038/s41531-025-00879-3.