Akram, Harith, and others, ‘Connectivity Derived Thalamic Segmentation in Deep Brain Stimulation for Tremor’, NeuroImage: Clinical, 18 (2018), pp. 130–42, doi:10.1016/j.nicl.2018.01.008
Alberts, Bruce, and others, Essential Cell Biology, Fourth edition (Garland Science, 2014)
Amthor, Frank, Neuroscience for Dummies (Wiley, 2012)
Baev, Konstantin V., ‘A New Conceptual Understanding of Brain Function: Basic Mechanisms of Brain-Initiated Normal and Pathological Behaviors’, Critical ReviewsTM in Neurobiology, 19.2–3 (2007), pp. 119–202, doi:10.1615/CritRevNeurobiol.v19.i2-3.30
Balendra, Rubika, and Rickie Patani, ‘Quo Vadis Motor Neuron Disease?’, World Journal of Methodology, 6.1 (2016), doi:10.5662/wjm.v6.i1.56
Barker, Roger A., Francesca Cicchetti, and Emma S. J. Robinson, Neuroanatomy and Neuroscience at a Glance, Fifth edition (Wiley Blackwell, 2018) <https://bibliu.com/users/saml/samlUCL?RelayState=eyJjdXN0b21fbGF1bmNoX3VybCI6IiMvdmlldy9ib29rcy85NzgxMTE5MTY4NDIzL2VwdWIvT1BTL2Z0b2MuaHRtbCJ9>
Bäumer, Dirk, Kevin Talbot, and Martin R Turner, ‘Advances in Motor Neurone Disease’, Journal of the Royal Society of Medicine, 107.1 (2014), pp. 14–21, doi:10.1177/0141076813511451
Blackstone, Craig, ‘Hereditary Spastic Paraplegia’, in Neurogenetics, Part II (Elsevier, 2018), cxlviii, pp. 633–52, doi:10.1016/B978-0-444-64076-5.00041-7
Burré, Jacqueline, ‘The Synaptic Function of α-Synuclein’, Journal of Parkinson’s Disease, 5.4 (2015), pp. 699–713, doi:10.3233/JPD-150642
Castiello, Umberto, ‘The Neuroscience of Grasping’, Nature Reviews Neuroscience, 6.9 (2005), pp. 726–36, doi:10.1038/nrn1744
Clarke, Charles, and others (eds), Neurology: A Queen Square Textbook, Second edition (Wiley Blackwell, 2016) <https://onlinelibrary.wiley.com/doi/book/10.1002/9781118486160>
Davare, Marco, and others, ‘Interactions between Areas of the Cortical Grasping Network’, Current Opinion in Neurobiology, 21.4 (2011), pp. 565–70, doi:10.1016/j.conb.2011.05.021
Dehay, Benjamin, and others, ‘Alpha-Synuclein Propagation: New Insights from Animal Models’, Movement Disorders, 31.2 (2016), pp. 161–68, doi:10.1002/mds.26370
Diamond, Marian Cleeves, Arnold B. Scheibel, and Lawrence M. Elson, The Human Brain Coloring Book, 1st ed (Barnes & Noble Books, 1985), cccvi
Dietz, Volker, and Thomas Sinkjaer, ‘Spastic Movement Disorder: Impaired Reflex Function and Altered Muscle Mechanics’, The Lancet Neurology, 6.8 (2007), pp. 725–33, doi:10.1016/S1474-4422(07)70193-X
Friston, Karl, Jérémie Mattout, and James Kilner, ‘Action Understanding and Active Inference’, Biological Cybernetics, 104.1–2 (2011), pp. 137–60, doi:10.1007/s00422-011-0424-z
Gerbella, Marzio, Stefano Rozzi, and Giacomo Rizzolatti, ‘The Extended Object-Grasping Network’, Experimental Brain Research, 235.10 (2017), pp. 2903–16, doi:10.1007/s00221-017-5007-3
Goodale, Melvyn A., and others, ‘Separate Neural Pathways for the Visual Analysis of Object Shape in Perception and Prehension’, Current Biology, 4.7 (1994), pp. 604–10, doi:10.1016/S0960-9822(00)00132-9
Grafton, Scott T., ‘The Cognitive Neuroscience of Prehension: Recent Developments’, Experimental Brain Research, 204.4 (2010), pp. 475–91, doi:10.1007/s00221-010-2315-2
Institute of Neurology, Queen Square and National Hospital for Neurology and Neurosurgery (London, England), Neurology: A Queen Square Textbook, ed. by Charles Clarke and others, Second edition (John Wiley & Sons, Inc, 2016) <https://onlinelibrary.wiley.com/doi/book/10.1002/9781118486160>
Iodice, Valeria, and others, ‘Cardiovascular Autonomic Dysfunction in MSA and Parkinson’s Disease: Similarities and Differences’, Journal of the Neurological Sciences, 310.1–2 (2011), pp. 133–38, doi:10.1016/j.jns.2011.07.014
——, and Paola Sandroni, ‘Autonomic Neuropathies’, CONTINUUM: Lifelong Learning in Neurology, 20 (2014), pp. 1373–97, doi:10.1212/01.CON.0000455875.76179.b1
Jakobson, L.S., and M.A. Goodale, ‘Factors Affecting Higher-Order Movement Planning: A Kinematic Analysis of Human Prehension’, Experimental Brain Research, 86.1 (1991), doi:10.1007/BF00231054
Jeannerod, M., and others, ‘Grasping Objects: The Cortical Mechanisms of Visuomotor Transformation’, Trends in Neurosciences, 18.7 (1995), pp. 314–20, doi:10.1016/0166-2236(95)93921-J
Jellinger, Kurt A., ‘Neuropathology of Sporadic Parkinson’s Disease: Evaluation and Changes of Concepts’, Movement Disorders, 27.1 (2012), pp. 8–30, doi:10.1002/mds.23795
Johansson, Roland S., and J. Randall Flanagan, ‘Coding and Use of Tactile Signals from the Fingertips in Object Manipulation Tasks’, Nature Reviews Neuroscience, 10.5 (2009), pp. 345–59, doi:10.1038/nrn2621
——, and J. Randall Flanagan, ‘Sensory Control of Object Manipulation’, in Sensorimotor Control of Grasping, ed. by Dennis A. Nowak and Joachim Hermsdorfer (Cambridge University Press, 2009), pp. 141–60, doi:10.1017/CBO9780511581267.012
Johns, Paul, Clinical Neuroscience: An Illustrated Colour Text (Churchill Livingstone, 2014) <https://www.clinicalkey.com/student/content/toc/3-s2.0-C20090355117>
Kandel, Eric R., and others (eds), Principles of Neural Science, Fifth edition (McGraw Hill Medical, 2013) <https://neurology-mhmedical-com.libproxy.ucl.ac.uk/book.aspx?bookid=1049>
Körding, Konrad P., and Daniel M. Wolpert, ‘Bayesian Decision Theory in Sensorimotor Control’, Trends in Cognitive Sciences, 10.7 (2006), pp. 319–26, doi:10.1016/j.tics.2006.05.003
Kratz, René Fester, Molecular & Cell Biology for Dummies (Wiley, 2009)
Krebs, Jocelyn E., and others, Lewin’s Genes X, International ed (Jones and Bartlett, 2011) <https://app.kortext.com/Shibboleth.sso/Login?entityID=https://shib-idp.ucl.ac.uk/shibboleth&target=https://app.kortext.com/borrow/323975>
Kumaran, Ravindran, and Mark R. Cookson, ‘Pathways to Parkinsonism Redux: Convergent Pathobiological Mechanisms in Genetics of Parkinson’s Disease’, Human Molecular Genetics, 24.R1 (2015), pp. R32–44, doi:10.1093/hmg/ddv236
Lemon, Roger N., ‘Descending Pathways in Motor Control’, Annual Review of Neuroscience, 31.1 (2008), pp. 195–218, doi:10.1146/annurev.neuro.31.060407.125547
——, ‘Descending Pathways in Motor Control’, Annual Review of Neuroscience, 31.1 (2008), pp. 195–218, doi:10.1146/annurev.neuro.31.060407.125547
Levitan, Irwin B., and Leonard K. Kaczmarek, The Neuron: Cell and Molecular Biology, Fourth edition (Oxford University Press, 2015) <http://dx.doi.org/10.1093/med/9780199773893.001.0001>
Marsden, C. D., and J. A. Obeso, ‘The Functions of the Basal Ganglia and the Paradox of Stereotaxic Surgery in Parkinson’s Disease’, Brain, 117.4 (1994), pp. 877–97, doi:10.1093/brain/117.4.877
Mathias, Christopher J., and Sir Roger Bannister (eds), Autonomic Failure (Oxford University Press, 2013), i, doi:10.1093/med/9780198566342.001.0001
‘OMIM - Online Mendelian Inheritance in Man’, n.d. <https://www.omim.org/>
Picard, Nathalie, and Peter L Strick, ‘Imaging the Premotor Areas’, Current Opinion in Neurobiology, 11.6 (2001), pp. 663–72, doi:10.1016/S0959-4388(01)00266-5
Pritchard, Dorian J., and Bruce R. Korf, Medical Genetics at a Glance, 3rd edition (Wiley, 2013) <https://bibliu.com/users/saml/samlUCL?RelayState=eyJjdXN0b21fbGF1bmNoX3VybCI6IiMvdmlldy9ib29rcy85NzgxMTE4Njg5MDExL2VwdWIvT0VCUFMvY29udGVudHMuaHRtbCJ9>
Robinson, T. R. and Wiley InterScience (Online service), Genetics for Dummies, 2nd ed (Wiley Pub, 2010) <http://dx.doi.org/10.1002/9781118269275>
Roosen, Dorien A., and Mark R. Cookson, ‘LRRK2 at the Interface of Autophagosomes, Endosomes and Lysosomes’, Molecular Neurodegeneration, 11.1 (2016), doi:10.1186/s13024-016-0140-1
Sarlegna, Fabrice R., and Pratik K. Mutha, ‘The Influence of Visual Target Information on the Online Control of Movements’, Vision Research, 110 (2015), pp. 144–54, doi:10.1016/j.visres.2014.07.001
Stefanis, L., ‘ -Synuclein in Parkinson’s Disease’, Cold Spring Harbor Perspectives in Medicine, 2.2 (2012), pp. a009399–a009399, doi:10.1101/cshperspect.a009399
Surmeier, D. James, José A. Obeso, and Glenda M. Halliday, ‘Selective Neuronal Vulnerability in Parkinson Disease’, Nature Reviews Neuroscience, 18.2 (2017), pp. 101–13, doi:10.1038/nrn.2016.178
Walsh, Dominic M., and Dennis J. Selkoe, ‘A Critical Appraisal of the Pathogenic Protein Spread Hypothesis of Neurodegeneration’, Nature Reviews Neuroscience, 17.4 (2016), pp. 251–60, doi:10.1038/nrn.2016.13
Wolpert, Daniel M., and Zoubin Ghahramani, ‘Computational Principles of Movement Neuroscience’, Nature Neuroscience, 3.Supp (2000), pp. 1212–17, doi:10.1038/81497
Wood, N. W., Neurogenetics: A Guide for Clinicians (Cambridge University Press, 2012) <http://ucl.alma.exlibrisgroup.com/view/action/uresolver.do?operation=resolveService&package_service_id=2910094060004761&institutionId=4761&customerId=4760>
Xilouri, Maria, Oeystein Roed Brekk, and Leonidas Stefanis, ‘Autophagy and Alpha-Synuclein: Relevance to Parkinson’s Disease and Related Synucleopathies’, Movement Disorders, 31.2 (2016), pp. 178–92, doi:10.1002/mds.26477
Zrinzo, Ludvic, ‘The Role of Imaging in the Surgical Treatment of Movement Disorders’, Neuroimaging Clinics of North America, 20.1 (2010), pp. 125–40, doi:10.1016/j.nic.2009.08.002