[1]
Allen, G. et al. 1997. Attentional Activation of the Cerebellum Independent of Motor Involvement. Science. 275, 5308 (1997), 1940–1943.
[2]
Alvarez-Buylla, A. 2002. Neurogenesis in Adult Subventricular Zone. Journal of Neuroscience. 22, 3 (2002), 629–634.
[3]
Andres, R.H. et al. 2011. Human Neural Stem Cells Enhance Structural Plasticity and Axonal Transport in the Ischaemic Brain. Brain. 134, 6 (2011), 1777–1789. DOI:https://doi.org/10.1093/brain/awr094.
[4]
Arai, Y. 2002. Spatial Orientation of Caloric Nystagmus in Semicircular Canal-Plugged Monkeys. Journal of Neurophysiology. 88, 2 (2002), 914–928.
[5]
Balsters, J.H. 2011. Cerebellar Plasticity and the Automation of First-Order Rules. Journal of Neuroscience. 31, 6 (2011), 2305–2312.
[6]
Balsters, J.H. et al. 2013. Cerebellum and Cognition: Evidence for the Encoding of Higher Order Rules. Cerebral Cortex. 23, 6 (2013), 1433–1443. DOI:https://doi.org/10.1093/cercor/bhs127.
[7]
Balsters, J.H. et al. 2010. Evolution of the Cerebellar Cortex: The Selective Expansion of Prefrontal-Projecting Cerebellar Lobules. NeuroImage. 49, 3 (2010), 2045–2052. DOI:https://doi.org/10.1016/j.neuroimage.2009.10.045.
[8]
Balsters, J.H. and Ramnani, N. 2008. Symbolic Representations of Action in the Human Cerebellum. NeuroImage. 43, 2 (2008), 388–398. DOI:https://doi.org/10.1016/j.neuroimage.2008.07.010.
[9]
Baron, J.C. et al. 1981. Crossed Cerebellar Diaschisis: A Remote Functional Suppression Secondary to Supratentorial Infarction in Man. Journal of Cerebral Bloodflow Medicine. 1, (1981).
[10]
Bergman, H. et al. 1990. Reversal of Experimental Parkinsonism by Lesions of the Subthalamic Nucleus. Science. 249, 4975 (1990), 1436–1438.
[11]
Bezard, E. and Przedborski, S. 2011. A Tale on Animal Models of Parkinson’s Disease. Movement Disorders. 26, 6 (2011), 993–1002. DOI:https://doi.org/10.1002/mds.23696.
[12]
Biernaskie, J. et al. 2004. Efficacy of Rehabilitative Experience Declines With Time After Focal Ischemic Brain Injury. Journal Of Neuroscience : The Official Journal Of The Society For Neuroscience. 24, 5 (2004), 1245–1254.
[13]
Björklund, L.M. et al. 2002. Embryonic Stem Cells Develop Into Functional Dopaminergic Neurons After Transplantation in a Parkinson Rat Model. Proceedings of the National Academy of Sciences of the United States of America. 99, 4 (2002), 2344–2349.
[14]
Blandini, F. et al. 2008. The 6-Hydroxydopamine Model: News from the Past. Parkinsonism & Related Disorders. 14, (2008), S124–S129. DOI:https://doi.org/10.1016/j.parkreldis.2008.04.015.
[15]
Bliss, T. et al. 2007. Cell Transplantation Therapy for Stroke. Stroke. 38, 2 (2007), 817–826. DOI:https://doi.org/10.1161/01.STR.0000247888.25985.62.
[16]
Breedlove, S.M. 2013. The Chemistry of Behavior. Biological psychology: an introduction to behavioral, cognitive, and clinical neuroscience. Sinauer Associates.
[17]
Breedlove, S.M. and Watson, N.V. 2013. General Principles of Sensory Processing, Touch, and Pain. Biological Psychology: An Introduction to Behavioral, Cognitive, and Clinical Neuroscience. Sinauer Associates.
[18]
Brindley, G.S. and Lewin, W.S. 1968. The Sensations Produced by Electrical Stimulation of the Visual Cortex. The Journal of Physiology. 196, 2 (1968), 479–493. DOI:https://doi.org/10.1113/jphysiol.1968.sp008519.
[19]
Brundin, P. et al. 2010. Neural Grafting in Parkinson’s Disease. Recent Advances in Parkinson’S Disease - Translational and Clinical Research. Elsevier. 265–294.
[20]
Budisavljevic, S. and Ramnani, N. 2012. Cognitive Deficits From a Cerebellar Tumour: A Historical Case Report From Luria’s Laboratory. Cortex. 48, 1 (2012), 26–35. DOI:https://doi.org/10.1016/j.cortex.2011.07.001.
[21]
Buonomano, D.V. and Merzenich, M.M. 1998. Cortical Plasticity: From Synapses to Maps. Annual Review of Neuroscience. 21, 1 (1998), 149–186. DOI:https://doi.org/10.1146/annurev.neuro.21.1.149.
[22]
Chapin, J.K. et al. 1999. Real-Time Control of a Robot Arm Using Simultaneously Recorded Neurons in the Motor Cortex. Nature Neuroscience. 2, 7 (1999), 664–670. DOI:https://doi.org/10.1038/10223.
[23]
Constantinidis, C. 2001. Coding Specificity in Cortical Microcircuits: A Multiple-Electrode Analysis of Primate Prefrontal Cortex. Journal of Neuroscience. 21, 10 (2001), 3646–3655.
[24]
Cramer, S.C. et al. 2006. Activity in the Peri-Infarct Rim in Relation to Recovery From Stroke. Stroke. 37, 1 (2006), 111–115. DOI:https://doi.org/10.1161/01.STR.0000195135.70379.1f.
[25]
Cramer, S.C. 2008. Repairing the Human Brain After Stroke: I. Mechanisms of Spontaneous Recovery. Annals of Neurology. 63, 3 (2008), 272–287. DOI:https://doi.org/10.1002/ana.21393.
[26]
Dagnelie, G. 2008. Psychophysical Evaluation for Visual Prosthesis. Annual Review of Biomedical Engineering. 10, 1 (2008), 339–368. DOI:https://doi.org/10.1146/annurev.bioeng.10.061807.160529.
[27]
Di Chiara, G. and Imperato, A. 1988. Drugs Abused by Humans Preferentially Increase Synaptic Dopamine Concentrations in the Mesolimbic System of Freely Moving Rats. Proceedings of the National Academy of Sciences of the United States of America. 85, 14 (1988), 5274–5278.
[28]
Dobelle, Wm.H. 2000. Artificial Vision for the Blind by Connecting a Television Camera. ASAIO Journal. 46, 1 (2000), 3–9.
[29]
Donoghue, J.P. 2008. Bridging the Brain to the World: A Perspective on Neural Interface Systems. Neuron. 60, 3 (2008), 511–521. DOI:https://doi.org/10.1016/j.neuron.2008.10.037.
[30]
Duvernoy, H.M. et al. 1999. Human Brain: Surface, Three-Dimensional Sectional Anatomy With MRI, and Blood Supply. Springer.
[31]
Engel, A.K. and Singer, W. 2001. Temporal Binding and the Neural Correlates of Sensory Awareness. Trends in Cognitive Sciences. 5, 1 (2001), 16–25. DOI:https://doi.org/10.1016/S1364-6613(00)01568-0.
[32]
Farnè, A. et al. 2002. Face or Hand, Not Both. Current Biology. 12, 15 (2002), 1342–1346. DOI:https://doi.org/10.1016/S0960-9822(02)01018-7.
[33]
Feldman, D.E. and Brecht, M. 2005. Map Plasticity in Somatosensory Cortex. Science. 310, 5749 (2005), 810–815.
[34]
Flor, H. et al. 2006. Phantom Limb Pain: A Case of Maladaptive CNS Plasticity? Nature Reviews Neuroscience. 7, 11 (2006), 873–881. DOI:https://doi.org/10.1038/nrn1991.
[35]
Fox, S.H. and Brotchie, J.M. 2010. The MPTP-Lesioned Non-Human Primate Models of Parkinson’s Disease. Past, Present, and Future. Recent Advances in Parkinson’S Disease - Translational and Clinical Research. Progress in Brain Research 184, (2010), 133–157.
[36]
Fox, S.H. and Brotchie, J.M. 2010. The MPTP-Lesioned Non-Human Primate Models of Parkinson’s Disease. Past, Present, and Future. Recent Advances in Parkinson’S Disease - Translational and Clinical Research. Progress in Brain Research 184, (2010), 133–157. DOI:https://doi.org/10.1016/S0079-6123(10)84007-5.
[37]
Freedman, D.J. 2003. A Comparison of Primate Prefrontal and Inferior Temporal Cortices during Visual Categorization. Journal of Neuroscience. 23, 12 (2003), 5235–5246.
[38]
Freedman, D.J. et al. 2001. Categorical Representation of Visual Stimuli in the Primate Prefrontal Cortex. Science. 291, 5502 (2001), 312–316.
[39]
Fries, P. 2005. A Mechanism for Cognitive Dynamics: Neuronal Communication Through Neuronal Coherence. Trends in Cognitive Sciences. 9, 10 (2005), 474–480. DOI:https://doi.org/10.1016/j.tics.2005.08.011.
[40]
Fries, P. 2009. Neuronal Gamma-Band Synchronization as a Fundamental Process in Cortical Computation. Annual Review of Neuroscience. 32, 1 (2009), 209–224. DOI:https://doi.org/10.1146/annurev.neuro.051508.135603.
[41]
Frost, S.B. 2003. Reorganization of Remote Cortical Regions After Ischemic Brain Injury: A Potential Substrate for Stroke Recovery. Journal of Neurophysiology. 89, 6 (2003), 3205–3214. DOI:https://doi.org/10.1152/jn.01143.2002.
[42]
Fuster, J.M. 2000. Prefrontal Neurons in Networks of Executive Memory. Brain Research Bulletin. 52, 5 (2000), 331–336. DOI:https://doi.org/10.1016/S0361-9230(99)00258-0.
[43]
Fuster, J.M. 2001. The Prefrontal Cortex - An Update: Time Is of the Essence. Neuron. 30, 2 (2001), 319–333. DOI:https://doi.org/10.1016/S0896-6273(01)00285-9.
[44]
Fuster, J.M. 2004. Upper Processing Stages of the Perception–action Cycle. Trends in Cognitive Sciences. 8, 4 (2004), 143–145. DOI:https://doi.org/10.1016/j.tics.2004.02.004.
[45]
Gaillard, A. et al. 2007. Reestablishment of Damaged Adult Motor Pathways by Grafted Embryonic Cortical Neurons. Nature Neuroscience. 10, 10 (2007), 1294–1299. DOI:https://doi.org/10.1038/nn1970.
[46]
Gaillard, A. and Jaber, M. 2011. Rewiring the Brain With Cell Transplantation in Parkinson’s Disease. Trends in Neurosciences. 34, 3 (2011), 124–133. DOI:https://doi.org/10.1016/j.tins.2011.01.003.
[47]
Giraux, P. et al. 2001. Cortical Reorganization in Motor Cortex After Graft of Both Hands. Nature Neuroscience. 4, 7 (2001), 691–692. DOI:https://doi.org/10.1038/89472.
[48]
Glickstein, M. et al. 2009. Cerebellum: History. Neuroscience. 162, 3 (2009), 549–559. DOI:https://doi.org/10.1016/j.neuroscience.2009.02.054.
[49]
Glickstein, M. et al. 1985. Corticopontine Projection in the Macaque: The Distribution of Labelled Cortical Cells After Large Injections of Horseradish Peroxidase in the Pontine Nuclei. The Journal of Comparative Neurology. 235, 3 (1985), 343–359. DOI:https://doi.org/https://doi.org/10.1002/cne.902350306.
[50]
Glickstein, M. 1993. Motor Skills but Not Cognitive Tasks. Trends in Neurosciences. 16, 11 (1993), 450–451. DOI:https://doi.org/10.1016/0166-2236(93)90074-V.
[51]
Glickstein, M. 2007. What Does the Cerebellum Really Do? Current Biology. 17, 19 (2007), R824–R827. DOI:https://doi.org/10.1016/j.cub.2007.08.009.
[52]
Goldberg, S.R. et al. 2000. Self-Administration Behavior Is Maintained by the Psychoactive Ingredient of Marijuana in Squirrel Monkeys. Nature Neuroscience. 3, 11 (2000), 1073–1074. DOI:https://doi.org/10.1038/80577.
[53]
Gould, E. 2007. How Widespread Is Adult Neurogenesis in Mammals? Nature Reviews Neuroscience. 8, 6 (2007), 481–488. DOI:https://doi.org/10.1038/nrn2147.
[54]
Gross, C.G. 2000. Neurogenesis in the Adult Brain: Death of a Dogma. Nature Reviews Neuroscience. 1, 1 (2000), 67–73. DOI:https://doi.org/10.1038/35036235.
[55]
Gustavsson, A. et al. 2011. Cost of Disorders of the Brain in Europe 2010. European Neuropsychopharmacology. 21, 10 (2011), 718–779. DOI:https://doi.org/10.1016/j.euroneuro.2011.08.008.
[56]
Harris, A.J. 1999. Cortical Origin of Pathological Pain. The Lancet. 354, 9188 (1999), 1464–1466. DOI:https://doi.org/10.1016/S0140-6736(99)05003-5.
[57]
Hauser, R.A. 2009. Levodopa: Past, Present, and Future. European Neurology. 62, 1 (2009), 1–8. DOI:https://doi.org/10.1159/000215875.
[58]
Hayter, A.L. et al. 2007. Cerebellar Contributions to Working Memory. NeuroImage. 36, 3 (2007), 943–954. DOI:https://doi.org/10.1016/j.neuroimage.2007.03.011.
[59]
Hochberg, L.R. et al. 2006. Neuronal Ensemble Control of Prosthetic Devices by a Human With Tetraplegia. Nature. 442, 7099 (2006), 164–171. DOI:https://doi.org/10.1038/nature04970.
[60]
Horn, S.D. et al. 2005. Stroke Rehabilitation Patients, Practice, and Outcomes: Is Earlier and More Aggressive Therapy Better? Archives of Physical Medicine and Rehabilitation. 86, 12 (2005), 101–114. DOI:https://doi.org/10.1016/j.apmr.2005.09.016.
[61]
Ikemoto, S. and Wise, R.A. 2004. Mapping of Chemical Trigger Zones for Reward. Neuropharmacology. 47, (2004), 190–201. DOI:https://doi.org/10.1016/j.neuropharm.2004.07.012.
[62]
Iversen, L. 2003. Cannabis and the Brain. Brain. 126, 6 (2003), 1252–1270. DOI:https://doi.org/10.1093/brain/awg143.
[63]
Jain, N. et al. 1997. Deactivation and Reactivation of Somatosensory Cortex After Dorsal Spinal Cord Injury. Nature. 386, 6624 (1997), 495–498. DOI:https://doi.org/10.1038/386495a0.
[64]
Jenkinson, N. and Brown, P. 2011. New Insights Into the Relationship Between Dopamine, Beta Oscillations and Motor Function. Trends in Neurosciences. 34, 12 (2011), 611–618. DOI:https://doi.org/10.1016/j.tins.2011.09.003.
[65]
Jones, E.G. 2000. Cortical and Subcortical Contributions to Activity-Dependent Plasticity in Primate Somatosensory Cortex. Annual Review of Neuroscience. 23, 1 (2000), 1–37. DOI:https://doi.org/10.1146/annurev.neuro.23.1.1.
[66]
Jueptner, M. 1997. Anatomy of Motor Learning. I. Frontal Cortex and Attention to Action. Journal of Neurophysiology. 77, 3 (1997), 1313–1324.
[67]
Justinova, Z. et al. 2003. Self-Administration of delta9-Tetrahydrocannabinol (THC) by Drug Naive Squirrel Monkeys. Psychopharmacology. 169, 2 (2003), 135–140. DOI:https://doi.org/10.1007/s00213-003-1484-0.
[68]
Kaas, J.H. et al. 1983. The Reorganization of Somatosensory Cortex Following Peripheral Nerve Damage in Adult and Developing Mammals. Annual Review of Neuroscience. 6, 1 (1983), 325–356. DOI:https://doi.org/10.1146/annurev.ne.06.030183.001545.
[69]
Kelly, R.M. and Strick, P.L. 2003. Cerebellar Loops with Motor Cortex and Prefrontal Cortex of a Nonhuman Primate. The Journal of Neuroscience. 23, 23 (2003), 8432–8444. DOI:https://doi.org/10.1523/JNEUROSCI.23-23-08432.2003.
[70]
Kim, S.G. et al. 1994. Activation of a Cerebellar Output Nucleus During Cognitive Processing. Science. 265, 5174 (1994), 949–951.
[71]
Kirschen, M.P. et al. 2005. Load- and Practice-Dependent Increases in Cerebro-Cerebellar Activation in Verbal Working Memory: An fMRI Study. NeuroImage. 24, 2 (2005), 462–472. DOI:https://doi.org/10.1016/j.neuroimage.2004.08.036.
[72]
Kirschen, M.P. et al. 2005. Load- and Practice-Dependent Increases in Cerebro-Cerebellar Activation in Verbal Working Memory: An fMRI Study. NeuroImage. 24, 2 (2005), 462–472. DOI:https://doi.org/10.1016/j.neuroimage.2004.08.036.
[73]
Koechlin, E. et al. 2003. The Architecture of Cognitive Control in the Human Prefrontal Cortex. Science. 302, 5648 (2003), 1181–1185.
[74]
Koechlin, E. and Summerfield, C. 2007. An Information Theoretical Approach to Prefrontal Executive Function. Trends in Cognitive Sciences. 11, 6 (2007), 229–235. DOI:https://doi.org/10.1016/j.tics.2007.04.005.
[75]
Krack, P. et al. 2003. Five-Year Follow-up of Bilateral Stimulation of the Subthalamic Nucleus in Advanced Parkinson’s Disease. New England Journal of Medicine. 349, 20 (2003), 1925–1934. DOI:https://doi.org/10.1056/NEJMoa035275.
[76]
Krakauer, J.W. 2006. Motor Learning: Its Relevance to Stroke Recovery and Neurorehabilitation. Current Opinion in Neurology. 19, 1 (2006), 84–90.
[77]
Kringelbach, M.L. et al. 2007. Translational Principles of Deep Brain Stimulation. Nature Reviews Neuroscience. 8, 8 (2007), 623–635. DOI:https://doi.org/10.1038/nrn2196.
[78]
Langston, J.W. et al. 1983. Chronic Parkinsonism in Humans Due to a Product of Meperidine-Analog Synthesis. Science. 219, 4587 (1983), 979–980.
[79]
Leiner, H.C. et al. 1993. Cognitive and Language Functions of the Human Cerebellum. Trends in Neurosciences. 16, 11 (1993), 444–447. DOI:https://doi.org/10.1016/0166-2236(93)90072-T.
[80]
Leon, M.I. and Shadlen, M.N. 1999. Effect of Expected Reward Magnitude on the Response of Neurons in the Dorsolateral Prefrontal Cortex of the Macaque. Neuron. 24, 2 (1999), 415–425. DOI:https://doi.org/10.1016/S0896-6273(00)80854-5.
[81]
Liepert, J. et al. 1998. Motor Cortex Plasticity During Constraint-Induced Movement Therapy in Stroke Patients. Neuroscience Letters. 250, 1 (1998), 5–8. DOI:https://doi.org/10.1016/S0304-3940(98)00386-3.
[82]
Lingford-Hughes, A.R. et al. 2012. BAP Updated Guidelines: Evidence-Based Guidelines for the Pharmacological Management of Substance Abuse, Harmful Use, Addiction and Comorbidity: Recommendations From BAP. Journal of Psychopharmacology. 26, 7 (2012), 899–952. DOI:https://doi.org/10.1177/0269881112444324.
[83]
Lipsanen, A. and Jolkkonen, J. 2011. Experimental Approaches to Study Functional Recovery Following Cerebral Ischemia. Cellular and Molecular Life Sciences. 68, 18 (2011), 3007–3017. DOI:https://doi.org/10.1007/s00018-011-0733-3.
[84]
Litvak, V. et al. 2011. EEG and MEG Data Analysis in SPM8. Computational Intelligence and Neuroscience. 2011, (2011), 1–32. DOI:https://doi.org/10.1155/2011/852961.
[85]
Lotze, M. 2001. Phantom Movements and Pain an fMRI Study in Upper Limb Amputees. Brain. 124, 11 (2001), 2268–2277. DOI:https://doi.org/10.1093/brain/124.11.2268.
[86]
Mai, J.K. et al. 2008. 3.1 Surface Views of the Atlas Brain. Atlas of the human brain. Academic.
[87]
McDonald, M.W. et al. 2018. Is Environmental Enrichment Ready for Clinical Application in Human Post-stroke Rehabilitation? Frontiers in Behavioral Neuroscience. 12, (2018). DOI:https://doi.org/10.3389/fnbeh.2018.00135.
[88]
Merabet, L.B. et al. 2005. Opinion: What Blindness Can Tell Us About Seeing Again: Merging Neuroplasticity and Neuroprostheses. Nature Reviews Neuroscience. 6, 1 (2005), 71–77. DOI:https://doi.org/10.1038/nrn1586.
[89]
Merabet, L.B. et al. 2005. Opinion: What Blindness Can Tell Us About Seeing Again: Merging Neuroplasticity and Neuroprostheses. Nature Reviews Neuroscience. 6, 1 (2005), 71–77. DOI:https://doi.org/10.1038/nrn1586.
[90]
Merola, A. et al. 2011. Parkinson’s disease progression at 30 years: a study of subthalamic deep brain-stimulated patients. Brain. 134, 7 (Jul. 2011), 2074–2084. DOI:https://doi.org/10.1093/brain/awr121.
[91]
Middleton, F.A. and Strick, P.L. 1994. Anatomical Evidence for Cerebellar and Basal Ganglia Involvement in Higher Cognitive Function. Science. 266, 5184 (1994), 458–461.
[92]
Middleton, F.A. and Strick, P.L. 1997. Dentate Output Channels: Motor and Cognitive Components. The Cerebellum: From Structure to Control. Progress in Brain Research 114, (1997), 553–566. DOI:https://doi.org/10.1016/S0079-6123(08)63386-5.
[93]
Miller, E.K. 2000. The Prefrontal Cortex and Cognitive Control. Nature Reviews Neuroscience. 1, 1 (2000), 59–65. DOI:https://doi.org/10.1038/35036228.
[94]
Miller, E.K. et al. 2002. The Prefrontal Cortex: Categories, Concepts and Cognition. Philosophical Transactions: Biological Sciences. 357, 1424 (2002), 1123–1136.
[95]
Modo, M. et al. 2002. Effects of Implantation Site of Stem Cell Grafts on Behavioral Recovery From Stroke Damage. Stroke. 33, 9 (2002), 2270–2278. DOI:https://doi.org/10.1161/01.STR.0000027693.50675.C5.
[96]
Moritz, C.T. et al. 2008. Direct Control of Paralysed Muscles by Cortical Neurons. Nature. 456, 7222 (2008), 639–642. DOI:https://doi.org/10.1038/nature07418.
[97]
Murphy, T.H. and Corbett, D. 2009. Plasticity During Stroke Recovery: From Synapse to Behaviour. Nature Reviews Neuroscience. 10, 12 (2009), 861–872. DOI:https://doi.org/10.1038/nrn2735.
[98]
Nicolelis, M.A.L. et al. 2000. Real-Time Prediction of Hand Trajectory by Ensembles of Cortical Neurons in Primates. Nature. 408, 6810 (2000), 361–365. DOI:https://doi.org/10.1038/35042582.
[99]
Nicolelis, M.A.L. and Lebedev, M.A. 2009. Principles of Neural Ensemble Physiology Underlying the Operation of Brain–machine Interfaces. Nature Reviews Neuroscience. 10, 7 (2009), 530–540. DOI:https://doi.org/10.1038/nrn2653.
[100]
Nudo, R.J. 2006. Mechanisms for Recovery of Motor Function Following Cortical Damage. Current Opinion in Neurobiology. 16, 6 (2006), 638–644. DOI:https://doi.org/10.1016/j.conb.2006.10.004.
[101]
Nudo, R.J. et al. 1996. Neural Substrates for the Effects of Rehabilitative Training on Motor Recovery After Ischemic Infarct. Science. 272, 5269 (1996), 1791–1794.
[102]
Nudo, R.J. and Milliken, G.W. 1996. Reorganization of Movement Representations in Primary Motor Cortex Following Focal Ischemic Infarcts in Adult Squirrel Monkeys. Journal of Neurophysiology. 75, 5 (1996), 2144–2149. DOI:https://doi.org/10.1152/jn.1996.75.5.2144.
[103]
Nutt, D.J. et al. 2015. The Dopamine Theory of Addiction: 40 Years of Highs and Lows. Nature Reviews Neuroscience. 16, 5 (2015), 305–312. DOI:https://doi.org/10.1038/nrn3939.
[104]
O’Doherty, J.E. et al. 2011. Active Tactile Exploration Using a Brain–Machine–Brain Interface. Nature. 479, 7372 (2011), 228–231. DOI:https://doi.org/10.1038/nature10489.
[105]
Olds, J. 1958. Self-Stimulation of the Brain; Its Use to Study Local Effects of Hunger, Sex, and Drugs. Science. 127, 3294 (1958), 315–324.
[106]
Olds, J. and Milner, P. 1954. Positive Reinforcement Produced by Electrical Stimulation of Septal Area and Other Regions of Rat Brain. Journal of Comparative Psychology. 6 (1954), 419–427.
[107]
O’Reilly, J.X. et al. 2010. Distinct and Overlapping Functional Zones in the Cerebellum Defined by Resting State Functional Connectivity. Cerebral Cortex. 20, 4 (Apr. 2010), 953–965. DOI:https://doi.org/10.1093/cercor/bhp157.
[108]
Passingham, R.E. et al. 1996. Attention to Action. Philosophical Transactions: Biological Sciences. 351, 1346 (1996), 1473–1479.
[109]
Passingham, R.E. and Wise, S.P. 2012. The Neurobiology of the Prefrontal Cortex: Anatomy, Evolution, and the Origin of Insight. Oxford University Press.
[110]
Passingham, R.E. and Wise, S.P. 2012. The Neurobiology of the Prefrontal Cortex: Anatomy, Evolution, and the Origin of Insight. Oxford University Press.
[111]
Patel, N.K. et al. 2003. Unilateral Subthalamotomy in the Treatment of Parkinson’s Disease. Brain. 126, 5 (2003), 1136–1145. DOI:https://doi.org/10.1093/brain/awg111.
[112]
Piccini, P. et al. 1999. Dopamine Release From Nigral Transplants Visualized in Vivo in a Parkinson’s Patient. Nature Neuroscience. 2, 12 (1999), 1137–1140. DOI:https://doi.org/10.1038/16060.
[113]
Pierce, R.C. and Kumaresan, V. 2006. The Mesolimbic Dopamine System: The Final Common Pathway for the Reinforcing Effect of Drugs of Abuse? Neuroscience & Biobehavioral Reviews. 30, 2 (2006), 215–238. DOI:https://doi.org/10.1016/j.neubiorev.2005.04.016.
[114]
Pons, T.P. et al. 1991. Massive Cortical Reorganization After Sensory Deafferentation in Adult Macaques. Science. 252, 5014 (1991), 1857–1860.
[115]
Purves, D. 2008. Modulation of Movement by the Basal Ganglia. Neuroscience. Sinauer.
[116]
Qiang, L. et al. 2011. Directed Conversion of Alzheimer’s Disease Patient Skin Fibroblasts into Functional Neurons. Cell. 146, 3 (2011), 359–371. DOI:https://doi.org/10.1016/j.cell.2011.07.007.
[117]
Quintana, J. 1999. From Perception to Action: Temporal Integrative Functions of Prefrontal and Parietal Neurons. Cerebral Cortex. 9, 3 (1999), 213–221. DOI:https://doi.org/10.1093/cercor/9.3.213.
[118]
Ramachandran, V. 1998. The Perception of Phantom Limbs. the D. O. Hebb Lecture. Brain. 121, 9 (1998), 1603–1630. DOI:https://doi.org/10.1093/brain/121.9.1603.
[119]
Ramnani, N. 2014. Automatic and Controlled Processing in the Corticocerebellar System. Cerebellar learning. N. Ramnani, ed. Elsevier. 255–285.
[120]
Ramnani, N. 2014. Cerebellar Learning. Elsevier Science & Technology.
[121]
Ramnani, N. 2012. Frontal Lobe and Posterior Parietal Contributions to the Cortico-Cerebellar System. The Cerebellum. 11, 2 (2012), 366–383. DOI:https://doi.org/10.1007/s12311-011-0272-3.
[122]
Ramnani, N. 2005. The Evolution of Prefrontal Inputs to the Cortico-pontine System: Diffusion Imaging Evidence from Macaque Monkeys and Humans. Cerebral Cortex. 16, 6 (2005), 811–818. DOI:https://doi.org/10.1093/cercor/bhj024.
[123]
Ramnani, N. 2006. The Primate Cortico-Cerebellar System: Anatomy and Function. Nature Reviews Neuroscience. 7, 7 (2006), 511–522. DOI:https://doi.org/10.1038/nrn1953.
[124]
Ramnani, N. and Owen, A.M. 2004. Anterior Prefrontal Cortex: Insights Into Function From Anatomy and Neuroimaging. Nature Reviews Neuroscience. 5, 3 (2004), 184–194. DOI:https://doi.org/10.1038/nrn1343.
[125]
Ramnani, N. and Passingham, R.E. 2001. Changes in the Human Brain During Rhythm Learning. Journal of Cognitive Neuroscience. 13, 7 (2001), 952–966. DOI:https://doi.org/10.1162/089892901753165863.
[126]
Rowe, J.B. et al. 2000. The Prefrontal Cortex: Response Selection or Maintenance Within Working Memory? Science. 288, 5471 (2000), 1656–1660.
[127]
Sakai, K. et al. 2002. Active Maintenance in Prefrontal Area 46 Creates Distractor-Resistant Memory. Nature Neuroscience. 5, 5 (2002), 479–484. DOI:https://doi.org/10.1038/nn846.
[128]
Salter, K. et al. 2006. Impact of Early vs Delayed Admission to Rehabilitation on Functional Outcomes in Persons With Stroke. Journal of Rehabilitation Medicine. 38, 2 (2006), 113–117. DOI:https://doi.org/10.1080/16501970500314350.
[129]
Schieber, M.H. 2001. Constraints on Somatotopic Organization in the Primary Motor Cortex. Journal of Neurophysiology. 86, 5 (2001), 2125–2143.
[130]
Schiller, P.H. and Tehovnik, E.J. 2008. Visual Prosthesis. Perception. 37, 10 (2008), 1529–1559. DOI:https://doi.org/10.1068/p6100.
[131]
Schmahmann, J. 1998. The Cerebellar Cognitive Affective Syndrome. Brain. 121, 4 (1998), 561–579. DOI:https://doi.org/10.1093/brain/121.4.561.
[132]
Schultz, W. 2002. Getting Formal with Dopamine and Reward. Neuron. 36, 2 (2002), 241–263. DOI:https://doi.org/10.1016/S0896-6273(02)00967-4.
[133]
Schwartz, A.B. et al. 2006. Brain-Controlled Interfaces: Movement Restoration with Neural Prosthetics. Neuron. 52, 1 (2006), 205–220. DOI:https://doi.org/10.1016/j.neuron.2006.09.019.
[134]
Serruya, M.D. et al. 2002. Brain-Machine Interface: Instant Neural Control of a Movement Signal. Nature. 416, 6877 (2002), 141–142. DOI:https://doi.org/10.1038/416141a.
[135]
Shallice, T. et al. 1996. The Domain of Supervisory Processes and Temporal Organization of Behaviour [And Discussion]. Philosophical Transactions: Biological Sciences. 351, 1346 (1996), 1405–1412.
[136]
Stein, J. 2001. The Magnocellular Theory of Developmental Dyslexia. Dyslexia. 7, 1 (2001), 12–36. DOI:https://doi.org/10.1002/dys.186.
[137]
Stem Cell Basics: Introduction [Stem Cell Information]: https://web-beta.archive.org/web/20121120094520/https://stemcells.nih.gov/info/basics/basics1.asp.
[138]
Strick, P.L. et al. 2009. Cerebellum and Nonmotor Function. Annual Review of Neuroscience. 32, 1 (2009), 413–434. DOI:https://doi.org/10.1146/annurev.neuro.31.060407.125606.
[139]
Strick, P.L. et al. 2009. Cerebellum and Nonmotor Function. Annual Review of Neuroscience. 32, 1 (2009), 413–434. DOI:https://doi.org/10.1146/annurev.neuro.31.060407.125606.
[140]
Tallon-Baudry, C. 1999. Oscillatory Gamma Activity in Humans and Its Role in Object Representation. Trends in Cognitive Sciences. 3, 4 (1999), 151–162. DOI:https://doi.org/10.1016/S1364-6613(99)01299-1.
[141]
TSN: Neural Oscillations in Schizophrenia: Perspectives From MEG: http://thesciencenetwork.org/programs/rhythmic-dynamics-and-cognition/peter-uhlhaas.
[142]
Uhlhaas, P.J. and Singer, W. 2010. Abnormal Neural Oscillations and Synchrony in Schizophrenia. Nature Reviews Neuroscience. 11, 2 (2010), 100–113. DOI:https://doi.org/10.1038/nrn2774.
[143]
Vargas, C.D. et al. 2009. Re-Emergence of Hand-Muscle Representations in Human Motor Cortex After Hand Allograft. Proceedings of the National Academy of Sciences of the United States of America. 106, 17 (2009), 7197–7202.
[144]
Velliste, M. et al. 2008. Cortical Control of a Prosthetic Arm for Self-Feeding. Nature. 453, 7198 (2008), 1098–1101. DOI:https://doi.org/10.1038/nature06996.
[145]
Veraart, C. et al. 1998. Visual Sensations Produced by Optic Nerve Stimulation Using an Implanted Self-Sizing Spiral Cuff Electrode. Brain Research. 813, 1 (1998), 181–186. DOI:https://doi.org/10.1016/S0006-8993(98)00977-9.
[146]
Volkow, N.D. et al. 2012. Addiction Circuitry in the Human Brain. Annual Review of Pharmacology and Toxicology. 52, 1 (2012), 321–336. DOI:https://doi.org/10.1146/annurev-pharmtox-010611-134625.
[147]
Volkow, N.D. et al. 2012. Addiction Circuitry in the Human Brain. Annual Review of Pharmacology and Toxicology. 52, 1 (2012), 321–336. DOI:https://doi.org/10.1146/annurev-pharmtox-010611-134625.
[148]
Volkow, N.D. et al. 1999. Reinforcing Effects of Psychostimulants in Humans Are Associated with Increases in Brain Dopamine and Occupancy of D2Receptors. Journal of Pharmacology and Experimental Therapeutics. 291, 1 (1999), 409–415.
[149]
Weinstein, A.M. 2011. Pharmacological Treatment of Cannabis Dependence. Current pharmaceutical design. 17, 14 (2011), 1351–1358.
[150]
Wichmann, T. et al. 2011. Milestones in Research on the Pathophysiology of Parkinson’s Disease. Movement Disorders. 26, 6 (2011), 1032–1041. DOI:https://doi.org/10.1002/mds.23695.
[151]
Wichmann, T. 2014. Oscillatory Neuronal Activity Patterns in Parkinson’s Disease. The Biomedical & Life Sciences Collection. (2014).
[152]
Wichmann, T. and DeLong, M.R. 2006. Deep Brain Stimulation for Neurologic and Neuropsychiatric Disorders. Neuron. 52, 1 (2006), 197–204. DOI:https://doi.org/10.1016/j.neuron.2006.09.022.
[153]
Wichmann, T. and DeLong, M.R. 2006. Deep Brain Stimulation for Neurologic and Neuropsychiatric Disorders. Neuron. 52, 1 (2006), 197–204. DOI:https://doi.org/10.1016/j.neuron.2006.09.022.
[154]
Widner, H. et al. 1992. Bilateral Fetal Mesencephalic Grafting in Two Patients With Parkinsonism Induced by 1-Methyl-4-Phenyl-L,2,3,6-Tetrahydropyridine (MPTP). New England Journal of Medicine. 327, 22 (1992), 1556–1563. DOI:https://doi.org/10.1056/NEJM199211263272203.
[155]
Williams, C. 2018. The Secret of You. New Scientist. 239, 3185 (2018), 36–39. DOI:https://doi.org/10.1016/S0262-4079(18)31211-9.
[156]
Zangen, A. 2006. Two Brain Sites for Cannabinoid Reward. Journal of Neuroscience. 26, 18 (2006), 4901–4907.
[157]
2014. Amplitude, Frequency, and Phase.
[158]
2012. Brain Oscillations: A Video Quick Guide.
[159]
2015. Fundamentals of Neuronal Oscillations and Synchrony.
[160]
2015. Fundamentals of Neuronal Oscillations and Synchrony.
[161]
2014. Introduction to Brain Waves.
[162]
2010. Jan’s Interview With Wolf Singer (Full-Length) on Vimeo.
[163]
Massachusetts Institute of Technology (MIT)  - YouTube.
[164]
2016. MEG and Neural Oscillations in ScZ: A Translational Perspective.
[165]
2015. Neurexpert - The EEG and Gamma Oscillations.
[166]
2015. Oscillating Neural Network Demonstration.
[167]
2013. Sleep Basics:  Wave Form and Sleep Stages.
[168]
Stem Cells.
[169]
2008. Synchronized Neural Oscillations in the Pathophysiology of Schizophrenia.
[170]
1998. The Cerebellum: Connections, Computations and Cognition. Trends in Cognitive Sciences. 2, 9 (1998).
[171]
2014. Theta Oscillations and Their Role in Creating Place and Grid Cell Representations | John O’Keefe.