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Human Click-Based Echolocation of Distance: Superfine Acuity and Dynamic Clicking Behaviour

机译:基于人类点击的距离回声:超细敏锐度和动态点击行为

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摘要

Some people who are blind have trained themselves in echolocation using mouth clicks. Here, we provide the first report of psychophysical and clicking data during echolocation of distance from a group of 8 blind people with experience in mouth click-based echolocation (daily use for > 3 years). We found that experienced echolocators can detect changes in distance of 3 cm at a reference distance of 50 cm, and a change of 7 cm at a reference distance of 150 cm, regardless of object size (i.e. 28.5 cm vs. 80 cm diameter disk). Participants made mouth clicks that were more intense and they made more clicks for weaker reflectors (i.e. same object at farther distance, or smaller object at same distance), but number and intensity of clicks were adjusted independently from one another. The acuity we found is better than previous estimates based on samples of sighted participants without experience in echolocation or individual experienced participants (i.e. single blind echolocators tested) and highlights adaptation of the perceptual system in blind human echolocators. Further, the dynamic adaptive clicking behaviour we observed suggests that number and intensity of emissions serve separate functions to increase SNR. The data may serve as an inspiration for low-cost (i.e. non-array based) artificial ‘cognitive’ sonar and radar systems, i.e. signal design, adaptive pulse repetition rate and intensity. It will also be useful for instruction and guidance for new users of echolocation.
机译:一些失明的人已经通过点击来训练自己在回声定位中的地位。在这里,我们提供了8位盲人的远距离回声定位过程中的心理和点击数据的首次报告,这些盲人有基于嘴部单击的回声定位经验(每天使用超过3年)。我们发现经验丰富的回声定位器可以检测到50 cm的参考距离处3 cm的距离变化,以及150 cm的参考距离处7 cm的变化,而与物体大小无关(即28.5 cm与80 cm直径的圆盘) 。参与者发出的咔哒声更加强烈,而对于较弱的反射镜(即,距离较远的同一物体或距离相同的较小物体)发出的喀嗒声更多,但是咔嗒声的数量和强度相互独立地进行了调整。我们发现的敏锐度比之前基于没有回声定位经验的有经验参与者或个别有经验的参与者(即测试的单个盲回声定位器)样本的估计值要好,并且突出了感知系统在盲人回声定位器中的适应性。此外,我们观察到的动态自适应点击行为表明,发射的数量和强度具有增加SNR的独立功能。数据可能会启发低成本(即基于非阵列的)人造“认知”声纳和雷达系统,即信号设计,自适应脉冲重复频率和强度。这对于回声定位的新用户的指导和指导也很有用。

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