首页> 外文期刊>Hippocampus >Heading-vector navigation based on head-direction cells and path integration.
【24h】

Heading-vector navigation based on head-direction cells and path integration.

机译:基于头方向单元和路径集成的头向导航。

获取原文
获取原文并翻译 | 示例
           

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.
机译:昆虫导航由通过路径积分计算的航向矢量引导。另一方面,哺乳动物导航模型通常基于海马位置细胞提供的地图状位置表示。这样的模型将最佳路线计算为将当前位置连接到目标的连续位置序列。我们提出了一个“航向矢量”模型,其中航向单元或它们的派生元素既是构建最佳路线的关键要素,又是路线执行过程中的直线引导。该模型基于称为“快捷方式矩阵”的内存结构,该内存结构是在环境的初始探索过程中构造的,该环境是在连续访问的航路点位置的成对对之间存储一组快捷方式矢量的情况下构建的。提出了一种用于计算和存储这些矢量的机制,该机制依赖于被称为“累积头部方向单元”的假设单元类型。在探索之后,通过向量算法计算连接所有成对航路点位置的快捷方式矢量,并将其存储在快捷方式矩阵中。重新输入时,当局部视图或位置表示以当前航路点和目标查询快捷方式矩阵时,将检索到快捷方式轨迹。由于轨迹方向位于头部方向的罗盘坐标中,因此通过跟踪已调整至方向角的头部方向单元的发射来完成导航。手稿的第1节描述了累积头向单元的属性。然后,它显示了累积的头部方向单元如何可以存储局部向量并执行向量算术以执行基于路径积分的归位。第2节介绍了快捷方式矩阵的构造和使用,用于计算已在快捷方式矩阵中注册的任何一对位置之间的直接路径。在讨论中,我们分析了基于标题的导航比基于地图的导航的优势。最后,我们调查了行为证据,即小哺乳动物和人类都使用基于海马,航向的导航。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号