Activation of Cortical and Cerebellar Motor Areas during Executed and Imagined Hand Movements: An fMRI Study
- 1 September 1999
- journal article
- research article
- Published by MIT Press in Journal of Cognitive Neuroscience
- Vol. 11 (5) , 491-501
- https://doi.org/10.1162/089892999563553
Abstract
Brain activation during executed (EM) and imagined movements (IM) of the right and left hand was studied in 10 healthy right-handed subjects using functional magnetic resonance imagining (fMRI). Low electromyographic (EMG) activity of the musculi flexor digitorum superficialis and high vividness of the imagined movements were trained prior to image acquisition. Regional cerebral activation was measured by fMRI during EM and IM and compared to resting conditions. Anatomically selected regions of interest (ROIs) were marked interactively over the entire brain. In each ROI activated pixels above a t value of 2.45 (p < 0.01) were counted and analyzed. In all subjects the supplementary motor area (SMA), the premotor cortex (PMC), and the primary motor cortex (M1) showed significant activation during both EM and IM; the somatosensory cortex (S1) was significantly activated only during EM. Ipsilateral cerebellar activation was decreased during IM compared to EM. In the cerebellum, IM and EM differed in their foci of maximal activation: Highest ipsilateral activation of the cerebellum was observed in the anterior lobe (Larsell lobule H IV) during EM, whereas a lower maximum was found about 2-cm dorsolateral (Larsell lobule H VII) during IM. The prefrontal and parietal regions revealed no significant changes during both conditions. The results of cortical activity support the hypothesis that motor imagery and motor performance possess similar neural substrates. The differential activation in the cerebellum during EM and IM is in accordance with the assumption that the posterior cerebellum is involved in the inhibition of movement execution during imagination.Keywords
This publication has 32 references indexed in Scilit:
- Functional MRI of the cerebellum during voluntary hand and foot movement with multislice EPINeuroImage, 1996
- AFNI: Software for Analysis and Visualization of Functional Magnetic Resonance NeuroimagesComputers and Biomedical Research, 1996
- Cerebellum Implicated in Sensory Acquisition and Discrimination Rather Than Motor ControlScience, 1996
- Mental representations of movements. Brain potentials associated with imagination of hand movementsElectroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1995
- Mapping motor representations with positron emission tomographyNature, 1994
- The representing brain: Neural correlates of motor intention and imageryBehavioral and Brain Sciences, 1994
- Functional Magnetic Resonance Imaging of Motor Cortex: Hemispheric Asymmetry and HandednessScience, 1993
- Bereitschaftspotential: is there a contribution of the supplementary motor area?Electroencephalography and Clinical Neurophysiology/Evoked Potentials Section, 1993
- The timing of mentally represented actionsBehavioural Brain Research, 1989
- Supplementary motor area structure and function: Review and hypothesesBehavioral and Brain Sciences, 1985