Motor control in basal ganglia circuits using fMRI and brain atlas approaches
Open Access
- 27 April 2005
- journal article
- clinical trial
- Published by Oxford University Press (OUP) in Cerebral Cortex
- Vol. 16 (2) , 149-161
- https://doi.org/10.1093/cercor/bhi089
Abstract
In this study, we examined how the motor, premotor and associative basal ganglia territories process movement parameters such as the complexity and the frequency of movement. Twelve right-handed volunteers were studied using EPI BOLD contrast (3 T) while performing audio-paced finger tapping tasks designed to differentiate basal ganglia territories. Tasks varied movement complexity (repetitive index tapping, simple sequence of finger movements and complex sequence of 10 moves) and frequency (from 0.5 to 3 Hz). Activation maps were coregistered onto a 3-D brain atlas derived from post-mortem brains. Three main patterns of activation were observed. In the posterior putamen and the sensorimotor cortex, signal increased with movement frequency but not with movement complexity. In premotor areas, the anterior putamen and the ventral posterolateral thalamus, signal increased regularly with increasing movement frequency and complexity. In rostral frontal areas, the caudate nucleus, the subthalamic nucleus and the ventral anterior/ventrolateral thalamus, signal increased mainly during the complex task and the high frequency task (3 Hz). These data show the different roles of motor, premotor and associative basal ganglia circuits in the processing of motor-related operations and suggest that activation can be precisely located within the entire circuitry of the basal ganglia.Keywords
This publication has 80 references indexed in Scilit:
- How Self-Initiated Memorized Movements Become Automatic: A Functional MRI StudyJournal of Neurophysiology, 2004
- Reward-Predicting Activity of Dopamine and Caudate Neurons—A Possible Mechanism of Motivational Control of Saccadic Eye MovementJournal of Neurophysiology, 2004
- Three‐dimensional cartography of functional territories in the human striatopallidal complex by using calbindin immunoreactivityJournal of Comparative Neurology, 2002
- The role of lateral premotor–cerebellar–parietal circuits in motor sequence control: a parametric fMRI studyCognitive Brain Research, 2002
- Basal ganglia and cerebellar loops: motor and cognitive circuitsPublished by Elsevier ,2000
- The Time Course of Changes during Motor Sequence Learning: A Whole-Brain fMRI StudyNeuroImage, 1998
- THE BASAL GANGLIA: FOCUSED SELECTION AND INHIBITION OF COMPETING MOTOR PROGRAMSProgress in Neurobiology, 1996
- Relationship between Finger Movement Rate and Functional Magnetic Resonance Signal Change in Human Primary Motor CortexJournal of Cerebral Blood Flow & Metabolism, 1996
- Topographical projections from the thalamus, subthalamic nucleus and pedunculopontine tegmental nucleus to the striatum in the Japanese monkey, Macaca fuscataBrain Research, 1990
- Efferent projections of the subthalamic nucleus: An autoradiographic study in monkey and catJournal of Comparative Neurology, 1978