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Beyond distance and direction: The brain represents target locations non-metrically

机译:超越距离和方向:大脑以非度量方式表示目标位置

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In their day-to-day activities human beings are constantly generating behavior, such as pointing, grasping or verbal reports, on the basis of visible target locations. The question arises how the brain represents target locations. One possibility is that the brain represents them metrically, i.e. in terms of distance and direction. Another equally plausible possibility is that the brain represents locations non-metrically, using for example ordered geometry or topology. Here we report two experiments that were designed to test if the brain represents locations metrically or non-metrically. We measured accuracy and variability of visually guided reach-to-point movements (Experiment 1) and probe-stimulus adjustments (Experiment 2). The specific procedure of informing subjects about the relevant response on each trial enabled us to dissociate the use of non-metric target location from the use of metric distance and direction in head/eye-centered, hand-centered and externally defined (allocentric) coordinates. The behavioral data show that subjects' responses are least variable when they can direct their response at a visible target location, the only condition that permitted the use of non-metric information about target location in our experiments. Data from Experiments 1 and 2 correspond well quantitatively. Response variability in non-metric conditions cannot be predicted based on response variability in metric conditions. We conclude that the brain uses non-metric geometrical structure to represent locations.
机译:在日常活动中,人类根据可见的目标位置不断产生行为,例如指向,抓握或口头报告。问题是大脑如何代表目标位置。一种可能性是大脑以距离,方向等度量标准表示它们。另一个同样合理的可能性是,大脑使用例如有序的几何形状或拓扑结构来非度量地表示位置。在这里,我们报告了两个实验,旨在测试大脑是按公制还是非公制表示位置。我们测量了视觉引导的到达点移动(实验1)和探头刺激调整(实验2)的准确性和可变性。在每次试验中告知受试者有关反应的具体程序,使我们能够将非度量目标位置的使用与头部/眼睛为中心,手为中心以及外部定义的(定心)坐标的度量距离和方向的使用分开。行为数据表明,当受试者的反应可以定向到可见的目标位置时,其反应变化最小,这是唯一允许在我们的实验中使用有关目标位置的非度量信息的条件。实验1和2的数据在定量上很好地对应。无法基于度量标准条件下的响应可变性来预测非度量标准条件下的响应可变性。我们得出结论,大脑使用非度量几何结构来表示位置。

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