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学习寻找空间反转的声音。

Learning to find spatially reversed sounds.

机构信息

Centro de Investigación y Transferencia en Acústica, Universidad Tecnológica Nacional - Facultad Regional Córdoba, CONICET, CP 5016, Córdoba, Argentina.

Facultad de Psicología, Universidad Nacional de Córdoba, CP 5016, Córdoba, Argentina.

出版信息

Sci Rep. 2020 Mar 12;10(1):4562. doi: 10.1038/s41598-020-61332-4.

DOI:10.1038/s41598-020-61332-4
PMID:32165690
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7067813/
Abstract

Adaptation to systematic visual distortions is well-documented but there is little evidence of similar adaptation to radical changes in audition. We use a pseudophone to transpose the sound streams arriving at the left and right ears, evaluating the perceptual effects it provokes and the possibility of learning to locate sounds in the reversed condition. Blindfolded participants remain seated at the center of a semicircular arrangement of 7 speakers and are asked to orient their head towards a sound source. We postulate that a key factor underlying adaptation is the self-generated activity that allows participants to learn new sensorimotor schemes. We investigate passive listening conditions (very short duration stimulus not permitting active exploration) and dynamic conditions (continuous stimulus allowing participants time to freely move their heads or remain still). We analyze head movement kinematics, localization errors, and qualitative reports. Results show movement-induced perceptual disruptions in the dynamic condition with static sound sources displaying apparent movement. This effect is reduced after a short training period and participants learn to find sounds in a left-right reversed field for all but the extreme lateral positions where motor patterns are more restricted. Strategies become less exploratory and more direct with training. Results support the hypothesis that self-generated movements underlie adaptation to radical sensorimotor distortions.

摘要

系统视觉扭曲的适应是有充分记录的,但很少有证据表明听觉会发生类似的根本性变化。我们使用伪音来改变左右耳听到的声音流,评估它引起的感知效果以及在反转条件下学习定位声音的可能性。蒙住眼睛的参与者坐在 7 个扬声器半圆形排列的中心,被要求将头朝向声源。我们假设,适应的一个关键因素是自我产生的活动,使参与者能够学习新的感觉运动方案。我们研究被动听条件(持续时间极短的刺激不允许主动探索)和动态条件(连续刺激允许参与者有时间自由移动头部或保持静止)。我们分析头部运动运动学、定位误差和定性报告。结果表明,在动态条件下,运动引起的感知中断,静态声源显示出明显的运动。经过短暂的训练期后,这种效果会降低,参与者学会在左右反转场中找到声音,除了运动模式受到更多限制的极外侧位置外。随着训练的进行,策略变得不那么具有探索性,而更直接。结果支持了这样一种假设,即自我产生的运动是适应激进的感觉运动扭曲的基础。

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Rediscovering Richard Held: Activity and Passivity in Perceptual Learning.重新发现理查德·赫尔德:知觉学习中的主动与被动
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本文引用的文献

1
Head Movements Allow Listeners Bilaterally Implanted With Cochlear Implants to Resolve Front-Back Confusions.头部运动使双侧植入人工耳蜗的听众能够解决前后混淆问题。
Ear Hear. 2018 Nov/Dec;39(6):1224-1231. doi: 10.1097/AUD.0000000000000581.
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The Perception of Auditory Motion.听觉运动感知
Trends Hear. 2016 Apr 19;20:2331216516644254. doi: 10.1177/2331216516644254.
3
Sensorimotor strategies for recognizing geometrical shapes: a comparative study with different sensory substitution devices.用于识别几何形状的感觉运动策略:与不同感觉替代装置的对比研究。
Front Psychol. 2015 Jun 9;6:679. doi: 10.3389/fpsyg.2015.00679. eCollection 2015.
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Localization training results in individuals with unilateral severe to profound hearing loss.定位训练会导致单侧严重至极重度听力损失的个体出现相应结果。
Hear Res. 2015 Jan;319:48-55. doi: 10.1016/j.heares.2014.11.005. Epub 2014 Nov 29.
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Accommodating to new ears: the effects of sensory and sensory-motor feedback.适应新的听觉:感觉和感觉运动反馈的作用。
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The plastic ear and perceptual relearning in auditory spatial perception.塑料耳朵与听觉空间感知中的知觉再学习。
Front Neurosci. 2014 Aug 6;8:237. doi: 10.3389/fnins.2014.00237. eCollection 2014.
7
The role of head movements in the discrimination of 2-D shape by blind echolocation experts.头部运动在盲人回声定位专家对二维形状辨别中的作用。
Atten Percept Psychophys. 2014 Aug;76(6):1828-37. doi: 10.3758/s13414-014-0695-2.
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Effects of head movement and proprioceptive feedback in training of sound localization.头部运动和本体感觉反馈在声音定位训练中的作用
Iperception. 2013 Jun 3;4(4):253-64. doi: 10.1068/i0522. eCollection 2013.
9
Effect of long-term training on sound localization performance with spectrally warped and band-limited head-related transfer functions.长期训练对具有频谱扭曲和频带限制的头相关传递函数的声音定位性能的影响。
J Acoust Soc Am. 2013 Sep;134(3):2148-59. doi: 10.1121/1.4816543.
10
Sound localization with bilateral cochlear implants in noise: how much do head movements contribute to localization?双侧人工耳蜗在噪声环境中的声音定位:头部运动对定位有多大贡献?
Cochlear Implants Int. 2014 Jan;15(1):36-42. doi: 10.1179/1754762813Y.0000000040. Epub 2013 Nov 25.