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Stable Ensemble Performance with Single-Neuron Variability during Reaching Movements in Primates

Jose M. Carmena, Mikhail A. Lebedev, Craig S. Henriquez and Miguel A. L. Nicolelis
Journal of Neuroscience 16 November 2005, 25 (46) 10712-10716; https://doi.org/10.1523/JNEUROSCI.2772-05.2005
Jose M. Carmena
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Mikhail A. Lebedev
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Craig S. Henriquez
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Miguel A. L. Nicolelis
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Abstract

Significant variability in firing properties of individual neurons was observed while two monkeys, chronically implanted with multielectrode arrays in frontal and parietal cortical areas, performed a continuous arm movement task. Although the degree of correlation between the firing of single neurons and movement parameters was nonstationary, stable predictions of arm movements could be obtained from the activity of neuronal ensembles. This result adds support to the idea that movement parameters are redundantly encoded in the motor cortex, such that brain networks can achieve the same behavioral goals through different patterns and relative contribution of individual neuron activity. This has important implications for neural prosthetics, suggesting that accurate operation of a brain-machine interface requires recording from large neuronal ensembles to minimize the effect of variability and ensuring stable performance over long periods of time.

  • variability
  • neuronal ensemble
  • reaching
  • brain-machine interface
  • monkey
  • motor cortex
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The Journal of Neuroscience: 25 (46)
Journal of Neuroscience
Vol. 25, Issue 46
16 Nov 2005
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Stable Ensemble Performance with Single-Neuron Variability during Reaching Movements in Primates
Jose M. Carmena, Mikhail A. Lebedev, Craig S. Henriquez, Miguel A. L. Nicolelis
Journal of Neuroscience 16 November 2005, 25 (46) 10712-10716; DOI: 10.1523/JNEUROSCI.2772-05.2005

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Stable Ensemble Performance with Single-Neuron Variability during Reaching Movements in Primates
Jose M. Carmena, Mikhail A. Lebedev, Craig S. Henriquez, Miguel A. L. Nicolelis
Journal of Neuroscience 16 November 2005, 25 (46) 10712-10716; DOI: 10.1523/JNEUROSCI.2772-05.2005
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