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Encoding of variability of landmark-based spatial information

机译:基于地标的空间信息的变异性编码

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Recent evidence suggests humans optimally weight visual and haptic information (i.e., in inverse proportion to their variances). A more recent proposal is that spatial information (i.e., distance and direction) may also adhere to Bayesian principles and be weighted in an optimal fashion. A fundamental assumption of this proposal is that participants encode the variability of spatial information. In a three-dimensional virtual-environment open-field search task, we provide evidence that participants encoded the variability of landmark-based spatial information. Specifically, participants searched for a hidden goal location in a 5 × 5 matrix of raised bins. Participants experienced five training phases in which they searched for a hidden goal that maintained a unique spatial relationship to each of four distinct landmarks. Each landmark was assigned an a priori value of locational uncertainty such that each varied in its ability to predict a goal (i.e., varied in number of potential goal locations). Following training, participants experienced conflict trials in which two distinct landmarks were presented simultaneously. Participants preferentially responded to the landmark with the lower uncertainty value (i.e., smaller number of potential goal locations). Results provide empirical evidence for the encoding of variability of landmark-based spatial information and have implications for theoretical accounts of spatial learning.
机译:最近的证据表明,人类可以最佳地加权视觉和触觉信息(即与他们的差异成反比)。最近的提议是空间信息(即距离和方向)也可以遵循贝叶斯原理并以最佳方式加权。该提议的基本假设是,参与者对空间信息的可变性进行编码。在三维虚拟环境开放域搜索任务中,我们提供了参与者编码基于地标的空间信息的可变性的证据。具体来说,参与者在5×5的凸起箱矩阵中搜索隐藏的目标位置。参与者经历了五个训练阶段,其中他们寻找一个隐藏的目标,该目标与四个不同地标的每一个都保持独特的空间关系。为每个地标分配位置不确定性的先验值,以使每个地标预测目标的能力各不相同(即,潜在目标位置的数量各不相同)。培训后,参与者经历了冲突试验,其中同时显示了两个不同的地标。参与者优先以较低的不确定性值(即,较少的潜在目标位置)响应地标。结果为基于地标的空间信息的可变性编码提供了经验证据,并且对空间学习的理论解释具有影响。

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