Responses of somatosensory area 2 neurons to actively and passively generated limb movements.
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[1] R. Nelson. Activity of monkey primary somatosensory cortical neurons changes prior to active movement , 1987, Brain Research.
[2] Webster West,et al. Continuous-time estimation of A change-point in a poisson process , 1997 .
[3] A. M. Smith,et al. Primary motor cortical responses to perturbations of prehension in the monkey. , 1992, Journal of neurophysiology.
[4] Nicholas G Hatsopoulos,et al. Incorporating Feedback from Multiple Sensory Modalities Enhances Brain–Machine Interface Control , 2010, The Journal of Neuroscience.
[5] J. Kaas,et al. Double representation of the body surface within cytoarchitectonic area 3b and 1 in “SI” in the owl monkey (aotus trivirgatus) , 1978, The Journal of comparative neurology.
[6] M. Sommer,et al. Corollary discharge across the animal kingdom , 2008, Nature Reviews Neuroscience.
[7] C. Bell,et al. The generation and subtraction of sensory expectations within cerebellum-like structures. , 1997, Brain, behavior and evolution.
[8] D. J. Weber,et al. Limb-State Information Encoded by Peripheral and Central Somatosensory Neurons: Implications for an Afferent Interface , 2011, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[9] J. Andrew Pruszynski,et al. Primary motor cortex underlies multi-joint integration for fast feedback control , 2011, Nature.
[10] Lee E Miller,et al. Prediction of upper limb muscle activity from motor cortical discharge during reaching , 2007, Journal of neural engineering.
[11] Xiaoqin Wang,et al. Sensory-motor interaction in the primate auditory cortex during self-initiated vocalizations. , 2003, Journal of neurophysiology.
[12] L Krubitzer,et al. Area 3a: topographic organization and cortical connections in marmoset monkeys. , 2001, Cerebral cortex.
[13] M. Sommer,et al. Corollary discharge circuits in the primate brain , 2008, Current Opinion in Neurobiology.
[14] Richard A Andersen,et al. Forward estimation of movement state in posterior parietal cortex , 2008, Proceedings of the National Academy of Sciences.
[15] 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.
[16] D. Wolpert,et al. Attenuation of Self-Generated Tactile Sensations Is Predictive, not Postdictive , 2006, PLoS biology.
[17] A. P. Georgopoulos,et al. Movement parameters and neural activity in motor cortex and area 5. , 1994, Cerebral cortex.
[18] Marc W Slutzky,et al. Statistical assessment of the stability of neural movement representations. , 2011, Journal of neurophysiology.
[19] Kazuhiko Seki,et al. Gating of Sensory Input at Spinal and Cortical Levels during Preparation and Execution of Voluntary Movement , 2012, The Journal of Neuroscience.
[20] Esther P. Gardner,et al. Properties of kinesthetic neurons in somatosensory cortex of awake monkeys , 1981, Brain Research.
[21] L. Krubitzer. 6.10 – The Evolution of Parietal Areas Involved in Hand Use in Primates , 2008 .
[22] P. Rudomin,et al. Selective cortical control of information flow through different intraspinal collaterals of the same muscle afferent fiber , 1994, Brain Research.
[23] J. Kaas,et al. The somatotopic organization of area 2 in macaque monkeys , 1985, The Journal of comparative neurology.
[24] J. Kalaska,et al. Tactile activity in primate primary somatosensory cortex during active arm movements: correlation with receptive field properties. , 1994, Journal of neurophysiology.
[25] K. Cullen. Sensory signals during active versus passive movement , 2004, Current Opinion in Neurobiology.
[26] Michael I. Jordan,et al. An internal model for sensorimotor integration. , 1995, Science.
[27] A. P. Georgopoulos,et al. Cortical mechanisms related to the direction of two-dimensional arm movements: relations in parietal area 5 and comparison with motor cortex , 1983, Experimental Brain Research.
[28] J. Kalaska,et al. Proprioceptive activity in primate primary somatosensory cortex during active arm reaching movements. , 1994, Journal of neurophysiology.
[29] Jos J. Adam,et al. Reaction time latencies of eye and hand movements in single- and dual-task conditions , 2004, Experimental Brain Research.
[30] C E Chapman,et al. Active versus passive touch: factors influencing the transmission of somatosensory signals to primary somatosensory cortex. , 1994, Canadian journal of physiology and pharmacology.
[31] Michael D. Huffman. An Improved Approximate Two‐Sample Poisson Test , 1984 .
[32] W. McIlroy,et al. Task‐relevant selective modulation of somatosensory afferent paths from the lower limb , 2000, Neuroreport.
[33] Woolsey,et al. Cortical Sensory Organization , 1981, Cortical Sensory Organization.
[34] E. Fetz,et al. Responses of identified cells in postcentral cortex of awake monkeys during comparable active and passive joint movements. , 1980, Journal of neurophysiology.
[35] 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.
[36] A. Vallbo,et al. Response profiles of human muscle afferents during active finger movements. , 1990, Brain : a journal of neurology.
[37] A. Toga,et al. The Rhesus Monkey Brain in Stereotaxic Coordinates , 1999 .
[38] E. Batschelet. Circular statistics in biology , 1981 .
[39] J. Houk,et al. Sampling of total muscle force by tendon organs. , 1982, Journal of neurophysiology.
[40] A B Vallbo,et al. Directional tuning of human forearm muscle afferents during voluntary wrist movements , 2001, The Journal of physiology.