Neuronal Activity in Motor Cortical Areas Reflects the Sequential Context of Movement
- 1 April 2004
- journal article
- research article
- Published by American Physiological Society in Journal of Neurophysiology
- Vol. 91 (4) , 1748-1762
- https://doi.org/10.1152/jn.00957.2003
Abstract
Natural actions can be described as chains of simple elements, whereas individual motion elements are readily concatenated to generate countless movement sequences. Sequence-specific neurons have been described extensively, suggesting that the motor system may implement temporally complex motions by using such neurons to recruit lower-level movement neurons modularly. Here, we set out to investigate whether activity of movement-related neurons is independent of the sequential context of the motion. Two monkeys were trained to perform linear arm movements either individually or as components of double-segment motions. However, comparison of neuronal activity between these conditions is delicate because subtle kinematic variations generally occur within different contexts. We therefore used extensive procedures to identify the contribution of variations in motor execution to differences in neuronal activity. Yet, even after application of these procedures we find that neuronal activity in the motor cortex (PMd and M1) associated with a given motion segment differs between the two contexts. These differences appear during preparation and become even more prominent during motion execution. Interestingly, despite context-related differences on the single-neuron level, the population as a whole still allows a reliable readout of movement direction regardless of the sequential context. Thus the direction of a movement and the sequential context in which it is embedded may be simultaneously and reliably encoded by neurons in the motor cortex.Keywords
This publication has 40 references indexed in Scilit:
- Drawing Sequences of Segments in 3D: Kinetic Influences on Arm ConfigurationJournal of Neurophysiology, 2003
- Motor learning through the combination of primitivesPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2000
- Motor Cortical Encoding of Serial Order in a Context-Recall TaskScience, 1999
- Control of remembered reaching sequences in monkeyExperimental Brain Research, 1996
- Differential relation of discharge in primary motor cortex and premotor cortex to movements versus actively maintained postures during a reaching taskExperimental Brain Research, 1996
- Minimum-jerk, two-thirds power law, and isochrony: converging approaches to movement planning.Journal of Experimental Psychology: Human Perception and Performance, 1995
- Movement Parameters and Neural Activity in Motor Cortex and Area 5Cerebral Cortex, 1994
- Encoding of motor parameters by corticomotoneuronal (CM) and rubromotoneuronal (RM) cells producing postspike facilitation of forelimb muscles in the behaving monkeyBehavioural Brain Research, 1988
- Neuronal Population Coding of Movement DirectionScience, 1986
- Segmentation and coupling in complex movements.Journal of Experimental Psychology: Human Perception and Performance, 1985