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Large manual pointing errors but accurate verbal reports for indications of target azimuth

机译:较大的手动指向错误但准确的口头报告用于指示目标方位角

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摘要

Many tasks have been used to probe human directional knowledge, but relatively little is known about the comparative merits of different means of indicating target azimuth. Few studies have compared action-based versus non-action-based judgments for targets encircling the observer. This comparison promises to illuminate not only the perception of azimuths in the front and rear hemispaces, but also the frames of reference underlying various azimuth judgments, and ultimately their neural underpinnings. We compared a response in which participants aimed a pointer at a nearby target, with verbal azimuth estimates. Target locations were distributed between 20 and 340 deg. Non-visual pointing responses exhibited large constant errors (up to −32 deg) that tended to increase with target eccentricity. Pointing with eyes open also showed large errors (up to −21 deg). In striking contrast, verbal reports were highly accurate, with constant errors rarely exceeding +/− 5 deg. Under our testing conditions, these results are not likely to stem from differences in perception-based vs. action-based responses, but instead reflect the frames of reference underlying the pointing and verbal responses. When participants used the pointer to match the egocentric target azimuth rather than the exocentric target azimuth relative to the pointer, errors were reduced.
机译:已经使用了许多任务来探究人类方向性知识,但是对于指示目标方位角的不同方法的比较优点知之甚少。很少有研究将围绕观察者的目标的基于动作和非基于动作的判断进行比较。这种比较有望不仅阐明前后半空间中的方位角感知,而且还将阐明各种方位角判断基础的参考框架,并最终阐明它们的神经基础。我们比较了参与者将口头指向附近目标和语音方位角估计的响应。目标位置分布在20至340度之间。非视觉指向响应表现出较大的恒定误差(最大-32度),该误差会随着目标偏心率而增加。睁大眼睛指向也显示出较大的误差(最大-21度)。与之形成鲜明对比的是,口头报告非常准确,经常出现的误差很少超过+/- 5度。在我们的测试条件下,这些结果不太可能源于基于感知的响应与基于动作的响应的差异,而是反映了指向性和口头响应背后的参考框架。当参与者使用指针匹配以自我为中心的目标方位角而不是相对于指针的以外为中心的目标方位角时,误差减少了。

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