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盲人回声定位专家具有超精细的空间感知能力。

Ultrafine spatial acuity of blind expert human echolocators.

机构信息

Department of Psychology, The University of California at Berkeley, 3210 Tolman Hall, Berkeley, CA 94720, USA.

出版信息

Exp Brain Res. 2012 Feb;216(4):483-8. doi: 10.1007/s00221-011-2951-1. Epub 2011 Nov 20.

Abstract

Echolocating organisms represent their external environment using reflected auditory information from emitted vocalizations. This ability, long known in various non-human species, has also been documented in some blind humans as an aid to navigation, as well as object detection and coarse localization. Surprisingly, our understanding of the basic acuity attainable by practitioners-the most fundamental underpinning of echoic spatial perception-remains crude. We found that experts were able to discriminate horizontal offsets of stimuli as small as ~1.2° auditory angle in the frontomedial plane, a resolution approaching the maximum measured precision of human spatial hearing and comparable to that found in bats performing similar tasks. Furthermore, we found a strong correlation between echolocation acuity and age of blindness onset. This first measure of functional spatial resolution in a population of expert echolocators demonstrates precision comparable to that found in the visual periphery of sighted individuals.

摘要

回声定位生物利用从发出的叫声中反射的听觉信息来表示外部环境。这种能力在各种非人类物种中早已为人所知,也有一些盲人将其作为导航、物体检测和粗略定位的辅助手段。令人惊讶的是,我们对从业者所能达到的基本敏锐度的理解——回声空间感知的最基本基础——仍然很粗糙。我们发现,专家能够辨别出在额-中平面上小至~1.2°听觉角的刺激水平偏移,分辨率接近人类空间听觉的最大实测精度,与执行类似任务的蝙蝠相当。此外,我们还发现回声定位的敏锐度与失明开始的年龄之间存在很强的相关性。这是在一群专家回声定位者中首次对功能空间分辨率进行的测量,其精度与有视力者的视觉外围相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50d2/3849401/23bab55170b6/nihms532921f1.jpg

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