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求解两个未知数:基于地标导航的向量模型的扩展

Solving for two unknowns: an extension of vector-based models of landmark-based navigation.

作者信息

Sturz Bradley R, Cooke S Paul, Bodily Kent D

机构信息

Department of Psychology, Armstrong Atlantic State University,229 Science Center, 11935 Abercorn Street, Savannah, GA 31419, USA.

出版信息

J Exp Psychol Anim Behav Process. 2011 Jul;37(3):368-74. doi: 10.1037/a0022938.

Abstract

Vectors are mathematical representations of distance and direction information that take the form of line segments where length represents distance and orientation in space represents direction. Vector-based models have proven beneficial in understanding the spatial behavior of a variety of species in tasks that require landmark-based navigation via vector addition and vector averaging to determine a location. Extant research regarding vector-based representational and computational accounts of landmark-based navigation has involved tasks that required solving for one unknown (i.e., a location). Using a novel landmark-based navigation task, we provide evidence consistent with a form of vector algebra that involves solving two simultaneous equations with two unknowns in order to determine a location in space. Results extend vector-based accounts of landmark-based navigation and provide a novel methodological approach to the testing of mobile organisms.

摘要

向量是距离和方向信息的数学表示形式,呈线段形式,其中长度代表距离,空间中的方向代表方向。基于向量的模型已被证明在理解各种物种在需要通过向量加法和向量平均来确定位置的基于地标导航的任务中的空间行为方面是有益的。关于基于地标导航的基于向量的表示和计算解释的现有研究涉及需要求解一个未知数(即一个位置)的任务。通过使用一种新颖的基于地标导航任务,我们提供了与一种向量代数形式一致的证据,该向量代数涉及求解两个具有两个未知数的联立方程,以便确定空间中的一个位置。研究结果扩展了基于地标导航的基于向量的解释,并为测试移动生物提供了一种新颖的方法。

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