Comparing brain activation associated with isolated upper and lower limb movement across corresponding joints
- 4 September 2002
- journal article
- research article
- Published by Wiley in Human Brain Mapping
- Vol. 17 (2) , 131-140
- https://doi.org/10.1002/hbm.10058
Abstract
It was shown recently that functional activation across brain motor areas during locomotion and foot movements are similar but differ substantially from activation related to upper extremity movement (Miyai [2001]: Neuroimage 14:1186–1192). The activation pattern may be a function of the behavioral context of the movement rather than of its mechanical properties. We compare motor system activation patterns associated with isolated single‐joint movement of corresponding joints in arm and leg carried out in equal frequency and range. Eleven healthy volunteers underwent BOLD‐weighted fMRI while performing repetitive elbow or knee extension/flexion. To relate elbow and knee activation to the well‐described patterns of finger movement, serial finger‐to‐thumb opposition was assessed in addition. After identifying task‐related voxels using statistical parametric mapping, activation was measured in five regions of interest (ROI; primary motor [M1] and somatosensory cortex [S1], premotor cortex, supplementary motor area [SMA] divided into preSMA and SMA‐proper, and cerebellum). Differences in the degree of activation across ROIs were found between elbow and knee movement. SMA‐proper activation was prominent for knee, but almost absent for elbow movement (P < 0.05); finger movement produced small but constant SMA‐proper activation. Ipsilateral M1 activation was detected during knee and finger movement, but was absent for the elbow task (P < 0.05). Knee movement showed less lateralization in M1 and S1 than other tasks (P < 0.05). The data demonstrate that central motor structures contribute differently to isolated elbow and knee movement. Activation during knee movement shows similarities to gait‐related activation patterns. Hum. Brain Mapping 17:131–140, 2002.Keywords
This publication has 54 references indexed in Scilit:
- Multiple tactile maps in the human cerebellumNeuroReport, 2001
- Attention versus Intention in the Primate Premotor CortexNeuroImage, 2001
- Finger Somatotopy in Human Motor CortexNeuroImage, 2001
- Bilateral neuromagnetic activation of human primary sensorimotor cortex in preparation and execution of unilateral voluntary finger movementsBrain Research, 1999
- Effects of movement predictability on cortical motor activationNeuroscience Research, 1998
- Role of the Ipsilateral Motor Cortex in Voluntary MovementCanadian Journal of Neurological Sciences, 1997
- Force and the motor cortexBehavioural Brain Research, 1997
- Do imagined and executed actions share the same neural substrate?Cognitive Brain Research, 1996
- Spatial patterns of functional activation of the cerebellum investigated using high field (4 T) MRINMR in Biomedicine, 1994
- Cortical areas and the selection of movement: a study with positron emission tomographyExperimental Brain Research, 1991