Arid
DOI10.1002/hipo.20532
Heading-Vector Navigation Based on Head-Direction Cells and Path Integration
Kubie, John L.1; Fenton, Andre A.2
通讯作者Kubie, John L.
来源期刊HIPPOCAMPUS
ISSN1050-9631
EISSN1098-1063
出版年2009
卷号19期号:5页码:456-479
英文摘要

Insect navigation is guided by heading vectors that are computed by path integration. Mammalian navigation models, on the other hand, are typically based on map-like place representations provided by hippocampal place cells. Such models compute optimal routes as a continuous series of locations that connect the current location to a goal. We propose a "heading-vector" model in which head-direction cells or their derivatives serve both as key elements in constructing the optimal route and as the straight-line guidance during route execution. The model is based on a memory structure termed the "shortcut matrix," which is constructed during the initial exploration of an environment when a set of shortcut vectors between sequential pairs of visited waypoint locations is stored. A mechanism is proposed for calculating and storing these vectors that relies on a hypothesized cell type termed an "accumulating head-direction cell." Following exploration, shortcut vectors connecting all pairs of waypoint locations are computed by vector arithmetic and stored in the shortcut matrix. On re-entry, when local view or place representations query the shortcut matrix with a current waypoint and goal, a shortcut trajectory is retrieved. Since the trajectory direction is in head-direction compass coordinates, navigation is accomplished by tracking the firing of head-direction cells that are tuned to the heading angle. Section 1 of the manuscript describes the properties of accumulating head-direction cells. It then shows how accumulating head-direction cells can store local vectors and perform vector arithmetic to perform path-integration-based homing. Section 2 describes the construction and use of the shortcut matrix for computing direct paths between any pair of locations that have been registered in the shortcut matrix. In the discussion, we analyze the advantages of heading-based navigation over map-based navigation. Finally, we survey behavioral evidence that nonhippocampal, heading-based navigation is used in small mammals and humans. (C) 2008 Wiley-Liss, Inc.


英文关键词hippocampus navigation head direction cell place cell
类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000265727500004
WOS关键词HIPPOCAMPAL PLACE FIELDS ; DESERT ANT NAVIGATION ; NEURAL-NETWORK MODEL ; FREELY-MOVING RAT ; MORRIS WATER MAZE ; ENTORHINAL CORTEX ; SPATIAL REPRESENTATION ; SINGLE UNITS ; LESIONS ; MEMORY
WOS类目Neurosciences
WOS研究方向Neurosciences & Neurology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/160887
作者单位1.Suny Downstate Med Ctr, Dept Anat & Cell Biol, Robert F Furchgott Ctr Neural & Behav Sci, Brooklyn, NY 11203 USA;
2.Suny Downstate Med Ctr, Dept Physiol & Pharmacol, Robert F Furchgott Ctr Neural & Behav Sci, Brooklyn, NY 11203 USA
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GB/T 7714
Kubie, John L.,Fenton, Andre A.. Heading-Vector Navigation Based on Head-Direction Cells and Path Integration[J],2009,19(5):456-479.
APA Kubie, John L.,&Fenton, Andre A..(2009).Heading-Vector Navigation Based on Head-Direction Cells and Path Integration.HIPPOCAMPUS,19(5),456-479.
MLA Kubie, John L.,et al."Heading-Vector Navigation Based on Head-Direction Cells and Path Integration".HIPPOCAMPUS 19.5(2009):456-479.
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