The Hippocampus and Entorhinal Cortex Encode the Path and Euclidean Distances to Goals during Navigation

Current Biology - Tập 24 - Trang 1331-1340 - 2014
Lorelei R. Howard1,2, Amir Homayoun Javadi1, Yichao Yu3, Ravi D. Mill4, Laura C. Morrison1, Rebecca Knight5, Michelle M. Loftus1, Laura Staskute1, Hugo J. Spiers1
1UCL Institute of Behavioural Neuroscience, Research Department of Experimental Psychology, Division of Psychology and Language Sciences, University College London, London WC1H 0AP, UK
2Aging & Cognition Research Group, German Center for Neurodegenerative Diseases (DZNE), 39120 Magdeburg, Germany
3UCL Centre for Advanced Biomedical Imaging, University College London, London WC1E 6DD, UK
4School of Psychology & Neuroscience, University of St. Andrews, Fife KY16 9JP, UK
5Department of Psychology, University of Hertfordshire, Hertfordshire, AL10 9AB, UK

Tài liệu tham khảo

Hafting, 2005, Microstructure of a spatial map in the entorhinal cortex, Nature, 436, 801, 10.1038/nature03721 O’Keefe, 1978 Taube, 1990, Head-direction cells recorded from the postsubiculum in freely moving rats. I. Description and quantitative analysis, J. Neurosci., 10, 420, 10.1523/JNEUROSCI.10-02-00420.1990 Brown, 2010, Which way was I going? Contextual retrieval supports the disambiguation of well learned overlapping navigational routes, J. Neurosci., 30, 7414, 10.1523/JNEUROSCI.6021-09.2010 Hartley, 2003, The well-worn route and the path less traveled: distinct neural bases of route following and wayfinding in humans, Neuron, 37, 877, 10.1016/S0896-6273(03)00095-3 Iaria, 2008, Detection of unexpected events during spatial navigation in humans: bottom-up attentional system and neural mechanisms, Eur. J. Neurosci., 27, 1017, 10.1111/j.1460-9568.2008.06060.x Rauchs, 2008, Partially segregated neural networks for spatial and contextual memory in virtual navigation, Hippocampus, 18, 503, 10.1002/hipo.20411 Rodriguez, 2010, Neural decoding of goal locations in spatial navigation in humans with fMRI, Hum. Brain Mapp., 31, 391 Rosenbaum, 2004, “I have often walked down this street before”: fMRI studies on the hippocampus and other structures during mental navigation of an old environment, Hippocampus, 14, 826, 10.1002/hipo.10218 Spiers, 2007, A navigational guidance system in the human brain, Hippocampus, 17, 618, 10.1002/hipo.20298 Spiers, 2006, Thoughts, behaviour, and brain dynamics during navigation in the real world, Neuroimage, 31, 1826, 10.1016/j.neuroimage.2006.01.037 Voermans, 2004, Interaction between the human hippocampus and the caudate nucleus during route recognition, Neuron, 43, 427, 10.1016/j.neuron.2004.07.009 Wolbers, 2007, Differential recruitment of the hippocampus, medial prefrontal cortex, and the human motion complex during path integration in humans, J. Neurosci., 27, 9408, 10.1523/JNEUROSCI.2146-07.2007 Xu, 2010, Persistent posterior and transient anterior medial temporal lobe activity during navigation, Neuroimage, 52, 1654, 10.1016/j.neuroimage.2010.05.074 Evensmoen, 2013, The anterior hippocampus supports a coarse, global environmental representation and the posterior hippocampus supports fine-grained, local environmental representations, J. Cogn. Neurosci., 25, 1908, 10.1162/jocn_a_00436 Sherrill, 2013, Hippocampus and retrosplenial cortex combine path integration signals for successful navigation, J. Neurosci., 33, 19304, 10.1523/JNEUROSCI.1825-13.2013 Bilkey, 2005, The dynamic nature of spatial encoding in the hippocampus, Behav. Neurosci., 119, 1533, 10.1037/0735-7044.119.6.1533 Burgess, 1996, Neuronal computations underlying the firing of place cells and their role in navigation, Hippocampus, 6, 749, 10.1002/(SICI)1098-1063(1996)6:6<749::AID-HIPO16>3.0.CO;2-0 Kubie, 2012, Linear look-ahead in conjunctive cells: an entorhinal mechanism for vector-based navigation, Front. Neural Circuits, 6, 20, 10.3389/fncir.2012.00020 Kubie, 2009, Heading-vector navigation based on head-direction cells and path integration, Hippocampus, 19, 456, 10.1002/hipo.20532 Huhn, 2009, Distance coding strategies based on the entorhinal grid cell system, Neural Netw., 22, 536, 10.1016/j.neunet.2009.06.029 Chersi, 2012, Using hippocampal-striatal loops for spatial navigation and goal-directed decision-making, Cogn. Process., 13, S125, 10.1007/s10339-012-0475-7 Erdem, 2014, A biologically inspired hierarchical goal directed navigation model, J. Physiol. Paris, 108, 28, 10.1016/j.jphysparis.2013.07.002 Martinet, 2011, Spatial learning and action planning in a prefrontal cortical network model, PLoS Comput. Biol., 7, e1002045, 10.1371/journal.pcbi.1002045 Matsumoto, 2011, A computational model of the hippocampus that represents environmental structure and goal location, and guides movement, Biol. Cybern., 105, 139, 10.1007/s00422-011-0454-6 Muller, 1996, The hippocampus as a cognitive graph, J. Gen. Physiol., 107, 663, 10.1085/jgp.107.6.663 Trullier, 2000, Animat navigation using a cognitive graph, Biol. Cybern., 83, 271, 10.1007/s004220000170 Poppenk, 2013, Long-axis specialization of the human hippocampus, Trends Cogn. Sci., 17, 230, 10.1016/j.tics.2013.03.005 Maguire, 1998, Knowing where and getting there: a human navigation network, Science, 280, 921, 10.1126/science.280.5365.921 Viard, 2011, Anterior hippocampus and goal-directed spatial decision making, J. Neurosci., 31, 4613, 10.1523/JNEUROSCI.4640-10.2011 Morgan, 2011, Distances between real-world locations are represented in the human hippocampus, J. Neurosci., 31, 1238, 10.1523/JNEUROSCI.4667-10.2011 Dupret, 2010, The reorganization and reactivation of hippocampal maps predict spatial memory performance, Nat. Neurosci., 13, 995, 10.1038/nn.2599 Thorndyke, 1981, Distance estimation from cognitive maps, Cognit. Psychol., 13, 526, 10.1016/0010-0285(81)90019-0 Iaria, 2007, Retrosplenial and hippocampal brain regions in human navigation: complementary functional contributions to the formation and use of cognitive maps, Eur. J. Neurosci., 25, 890, 10.1111/j.1460-9568.2007.05371.x Andersen, 1997, Multimodal representation of space in the posterior parietal cortex and its use in planning movements, Annu. Rev. Neurosci., 20, 303, 10.1146/annurev.neuro.20.1.303 Aggleton, 2012, Multiple anatomical systems embedded within the primate medial temporal lobe: implications for hippocampal function, Neurosci. Biobehav. Rev., 36, 1579, 10.1016/j.neubiorev.2011.09.005 Ranganath, 2012, Two cortical systems for memory-guided behaviour, Nat. Rev. Neurosci., 13, 713, 10.1038/nrn3338 Jung, 1994, Comparison of spatial firing characteristics of units in dorsal and ventral hippocampus of the rat, J. Neurosci., 14, 7347, 10.1523/JNEUROSCI.14-12-07347.1994 Johnson, 2007, Neural ensembles in CA3 transiently encode paths forward of the animal at a decision point, J. Neurosci., 27, 12176, 10.1523/JNEUROSCI.3761-07.2007 Pfeiffer, 2013, Hippocampal place-cell sequences depict future paths to remembered goals, Nature, 497, 74, 10.1038/nature12112 Kumaran, 2007, Match mismatch processes underlie human hippocampal responses to associative novelty, J. Neurosci., 27, 8517, 10.1523/JNEUROSCI.1677-07.2007 Howard, 2011, Double dissociation between hippocampal and parahippocampal responses to object-background context and scene novelty, J. Neurosci., 31, 5253, 10.1523/JNEUROSCI.6055-10.2011 Duncan, 2012, Evidence for area CA1 as a match/mismatch detector: a high-resolution fMRI study of the human hippocampus, Hippocampus, 22, 389, 10.1002/hipo.20933 Shidara, 2002, Anterior cingulate: single neuronal signals related to degree of reward expectancy, Science, 296, 1709, 10.1126/science.1069504 Kennerley, 2006, Optimal decision making and the anterior cingulate cortex, Nat. Neurosci., 9, 940, 10.1038/nn1724 Hirshhorn, 2012, Brain regions involved in the retrieval of spatial and episodic details associated with a familiar environment: an fMRI study, Neuropsychologia, 50, 3094, 10.1016/j.neuropsychologia.2012.08.008 Maguire, 2006, Navigation around London by a taxi driver with bilateral hippocampal lesions, Brain, 129, 2894, 10.1093/brain/awl286