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基于声觉与动觉反馈的感知训练对人类三维声音定位能力的影响。

Effect of Perceptual Training with Sound-Guided and Kinesthetic Feedback on Human 3D Sound Localization Capabilities.

机构信息

Department of Electrical and Computer Engineering, Sungkyunkwan University, Suwon 16419, Republic of Korea.

Department of Artificial Intelligence, Sungkyunkwan University, Suwon 16419, Republic of Korea.

出版信息

Sensors (Basel). 2023 May 24;23(11):5023. doi: 10.3390/s23115023.

Abstract

In this paper, we experimentally investigate how the 3D sound localization capabilities of the blind can improve through perceptual training. To this end, we develop a novel perceptual training method with sound-guided feedback and kinesthetic assistance to evaluate its effectiveness compared to conventional training methods. In perceptual training, we exclude visual perception by blindfolding the subjects to apply the proposed method to the visually impaired. Subjects used a specially designed pointing stick to generate a sound at the tip, indicating localization error and tip position. The proposed perceptual training aims to evaluate the training effect on 3D sound localization, including variations in azimuth, elevation, and distance. The six days of training based on six subjects resulted in the following outcomes: (1) In general, accuracy in full 3D sound localization can be improved based on training. (2) Training based on relative error feedback is more effective than absolute error feedback. (3) Subjects tend to underestimate distance when the sound source is near, less than 1000 mm, or larger than 15° to the left, and overestimate the elevation when the sound source is near or in the center, and within ±15° in azimuth estimations.

摘要

在本文中,我们通过感知训练实验研究了盲人的 3D 声音定位能力如何通过感知训练得到提高。为此,我们开发了一种新的基于声音引导反馈和动觉辅助的感知训练方法,并将其与传统的训练方法进行了比较,以评估其有效性。在感知训练中,我们通过蒙住受试者的眼睛来排除视觉感知,将所提出的方法应用于视障人士。受试者使用专门设计的指点棒在尖端发出声音,指示定位误差和尖端位置。所提出的感知训练旨在评估对 3D 声音定位的训练效果,包括方位、仰角和距离的变化。基于六名受试者的六天训练得出以下结果:(1)总体而言,基于训练可以提高全 3D 声音定位的准确性。(2)基于相对误差反馈的训练比基于绝对误差反馈的训练更有效。(3)当声源在距离较近、小于 1000mm 或偏左大于 15°时,受试者倾向于低估距离,当声源在距离较近或在中心,以及在方位估计值在±15°内时,受试者倾向于高估仰角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a25f/10255483/bf5f103239af/sensors-23-05023-g001.jpg

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