Control of muscle synergies by cortical ensembles.
暂无分享,去创建一个
[1] David M. Santucci,et al. Learning to Control a Brain–Machine Interface for Reaching and Grasping by Primates , 2003, PLoS biology.
[2] P. Cheney,et al. Correlations between corticomotoneuronal (CM) cell postspike effects and cell-target muscle covariation. , 2000, Journal of neurophysiology.
[3] A. P. Georgopoulos,et al. Primate motor cortex and free arm movements to visual targets in three- dimensional space. I. Relations between single cell discharge and direction of movement , 1988, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[4] A. Georgopoulos. Current issues in directional motor control , 1995, Trends in Neurosciences.
[5] P. D. Cheney,et al. Corticomotoneuronal connections of precentral cells detected by post-spike averages of EMG activity in behaving monkeys , 1976, Brain Research.
[6] P. Cheney,et al. Corticomotoneuronal postspike effects in shoulder, elbow, wrist, digit, and intrinsic hand muscles during a reach and prehension task. , 1998, Journal of neurophysiology.
[7] Emilio Bizzi,et al. Shared and specific muscle synergies in natural motor behaviors. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[8] A P Georgopoulos,et al. On the relations between the direction of two-dimensional arm movements and cell discharge in primate motor cortex , 1982, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[9] T J Ebner,et al. Encoding of target direction and speed during visual instruction and arm tracking in dorsal premotor and primary motor cortical neurons , 1999, The European journal of neuroscience.
[10] G. Pfurtscheller,et al. Conversion of EEG activity into cursor movement by a brain-computer interface (BCI) , 2004, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[11] A. Schwartz,et al. Motor cortical activity during drawing movements: population representation during lemniscate tracing. , 1999 .
[12] E Bizzi,et al. Motor learning through the combination of primitives. , 2000, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[13] S. Scott,et al. Neural activity in primary motor cortex related to mechanical loads applied to the shoulder and elbow during a postural task. , 2001, Journal of neurophysiology.
[14] J. Yokota,et al. Divergent projection of individual corticospinal axons to motoneurons of multiple muscles in the monkey , 1981, Neuroscience Letters.
[15] J. Armand,et al. The origin, course and terminations of corticospinal fibers in various mammals. , 1982, Progress in brain research.
[16] L. Miller,et al. Primary motor cortical neurons encode functional muscle synergies , 2002, Experimental Brain Research.
[17] Emilio Bizzi,et al. Modular organization of motor behavior in the frog's spinal cord , 1995, Trends in Neurosciences.
[18] P. Kennedy,et al. Restoration of neural output from a paralyzed patient by a direct brain connection , 1998, Neuroreport.
[19] J. F. Soechting,et al. Relationships between sensory input, motor output and unit activity in interpositus and red nuclei during intentional movement , 1978, Brain Research.
[20] W. T. Thach. Correlation of neural discharge with pattern and force of muscular activity, joint position, and direction of intended next movement in motor cortex and cerebellum. , 1978, Journal of neurophysiology.
[21] G. E. Alexander,et al. Neural correlates of a spatial sensory-to-motor transformation in primary motor cortex. , 1997, Journal of neurophysiology.
[22] S. Scott,et al. Reaching movements with similar hand paths but different arm orientations. I. Activity of individual cells in motor cortex. , 1997, Journal of neurophysiology.
[23] Jerald D. Kralik,et al. Real-time prediction of hand trajectory by ensembles of cortical neurons in primates , 2000, Nature.
[24] E. Bizzi,et al. Muscle synergies encoded within the spinal cord: evidence from focal intraspinal NMDA iontophoresis in the frog. , 2001, Journal of neurophysiology.
[25] Y. Shinoda,et al. Multiple axon collaterals of single corticospinal axons in the cat spinal cord. , 1986, Journal of neurophysiology.
[26] Nicholas G. Hatsopoulos,et al. Brain-machine interface: Instant neural control of a movement signal , 2002, Nature.
[27] D. Hoffman,et al. Muscle and movement representations in the primary motor cortex. , 1999, Science.
[28] T Sinkjaer,et al. Correlation of primate red nucleus discharge with muscle activity during free‐form arm movements. , 1993, The Journal of physiology.
[29] J. Kalaska,et al. A comparison of movement direction-related versus load direction- related activity in primate motor cortex, using a two-dimensional reaching task , 1989, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[30] Marc H Schieber,et al. Multiple fragment statistical analysis of post-spike effects in spike-triggered averages of rectified EMG , 1998, Journal of Neuroscience Methods.
[31] E. Evarts,et al. Relation of pyramidal tract activity to force exerted during voluntary movement. , 1968, Journal of neurophysiology.
[32] Jon A. Mukand,et al. Neuronal ensemble control of prosthetic devices by a human with tetraplegia , 2006, Nature.
[33] L. Paninski,et al. Spatiotemporal tuning of motor cortical neurons for hand position and velocity. , 2004, Journal of neurophysiology.
[34] S. Baker,et al. Computer simulation of post-spike facilitation in spike-triggered averages of rectified EMG. , 1998, Journal of neurophysiology.
[35] D. Hoffman,et al. Direction of action is represented in the ventral premotor cortex , 2001, Nature Neuroscience.
[36] M. J. Korenberg,et al. The identification of nonlinear biological systems: Wiener and Hammerstein cascade models , 1986, Biological Cybernetics.
[37] T. Sinkjaer,et al. Primate red nucleus discharge encodes the dynamics of limb muscle activity. , 1998, Journal of neurophysiology.
[38] A. Georgopoulos. Neural integration of movement: role of motor cortex in reaching , 1988, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[39] A B Schwartz,et al. Motor cortical representation of speed and direction during reaching. , 1999, Journal of neurophysiology.
[40] A. P. Georgopoulos,et al. Movement parameters and neural activity in motor cortex and area 5. , 1994, Cerebral cortex.
[41] Paul B. Johnson,et al. Making arm movements within different parts of space: dynamic aspects in the primate motor cortex , 1990, The Journal of neuroscience : the official journal of the Society for Neuroscience.
[42] David T. Westwick,et al. Identification of Multiple-Input Systems with Highly Coupled Inputs: Application to EMG Prediction from Multiple Intracortical Electrodes , 2006, Neural Computation.
[43] A. P. Georgopoulos,et al. Neuronal population coding of movement direction. , 1986, Science.
[44] E. Fetz,et al. Postspike facilitation of forelimb muscle activity by primate corticomotoneuronal cells. , 1980, Journal of neurophysiology.
[45] E. Bizzi,et al. Responses to spinal microstimulation in the chronically spinalized rat and their relationship to spinal systems activated by low threshold cutaneous stimulation , 1999, Experimental Brain Research.
[46] Wei Wu,et al. Bayesian Population Decoding of Motor Cortical Activity Using a Kalman Filter , 2006, Neural Computation.
[47] Y Lamarre,et al. Patterns of muscular and motor cortical activity during a simple arm movement in the monkey. , 1981, Canadian journal of physiology and pharmacology.
[48] Miguel A. L. Nicolelis,et al. Real-time control of a robot arm using simultaneously recorded neurons in the motor cortex , 1999, Nature Neuroscience.
[49] Jonathan R Wolpaw,et al. Control of a two-dimensional movement signal by a noninvasive brain-computer interface in humans. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[50] A. Barto,et al. Cortical involvement in the recruitment of wrist muscles. , 2004, Journal of neurophysiology.
[51] E. Bizzi,et al. Neuronal Correlates of Motor Performance and Motor Learning in the Primary Motor Cortex of Monkeys Adapting to an External Force Field , 2001, Neuron.
[52] L. Jami,et al. Muscle afferents and spinal control of movement , 1992 .