Long-term asynchronous decoding of arm motion using electrocorticographic signals in monkey
Top Cited Papers
Open Access
- 1 January 2010
- journal article
- research article
- Published by Frontiers Media SA in Frontiers in Neuroengineering
- Vol. 3, 1189
- https://doi.org/10.3389/fneng.2010.00003
Abstract
Brain–machine interfaces (BMIs) employ the electrical activity generated by cortical neurons directly for controlling external devices and have been conceived as a means for restoring human cognitive or sensory-motor functions. The dominant approach in BMI research has been to decode motor variables based on single-unit activity (SUA). Unfortunately, this approach suffers from poor long-term stability and daily recalibration is normally required to maintain reliable performance. A possible alternative is BMIs based on electrocorticograms (ECoGs), which measure population activity and can provide more durable and stable recording. However, the level of long-term stability that ECoG-based decoding can offer remains unclear. Here we propose a novel ECoG-based decoding paradigm and show that we have successfully decoded hand positions and arm joint angles during an asynchronous food-reaching task in monkeys when explicit cues prompting the onset of movement were not required. Performance using our ECoG-based decoder was comparable to existing SUA-based systems while evincing far superior stability and durability. In addition, the same decoder could be used for months without any drift in accuracy or recalibration. These results were achieved by incorporating the spatio-spectro-temporal integration of activity across multiple cortical areas to compensate for the lower fidelity of ECoG signals. These results show the feasibility of high-performance, chronic and versatile ECoG-based neuroprosthetic devices for real-life applications. This new method provides a stable platform for investigating cortical correlates for understanding motor control, sensory perception, and high-level cognitive processes.Keywords
This publication has 47 references indexed in Scilit:
- Differential representation of arm movement direction in relation to cortical anatomy and functionJournal of Neural Engineering, 2009
- Movement related activity in the high gamma range of the human EEGNeuroImage, 2008
- Single-Neuron Stability during Repeated Reaching in Macaque Premotor CortexJournal of Neuroscience, 2007
- Identification of arm movements using correlation of electrocorticographic spectral components and kinematic recordingsJournal of Neural Engineering, 2007
- Computational model of a primate arm: from hand position to joint angles, joint torques and muscle forcesJournal of Neural Engineering, 2006
- Effects of insertion conditions on tissue strain and vascular damage during neuroprosthetic device insertionJournal of Neural Engineering, 2006
- Learning to Control a Brain–Machine Interface for Reaching and Grasping by PrimatesPLoS Biology, 2003
- Connecting cortex to machines: recent advances in brain interfacesNature Neuroscience, 2002
- Rhythmicity, synchronization and binding in human and primate motor systemsThe Journal of Physiology, 1998
- Evaluation of Electrode Array Material for Neural ProsthesesNeurosurgery, 1979