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算盘训练对听力正常儿童听觉空间成熟度的影响。

Effects of Abacus Training on Auditory Spatial Maturation in Children with Normal Hearing.

作者信息

Sanjana M, Nisha K V

机构信息

Department of Speech and Hearing, Manipal College of Health Professions (MCHP), Manipal, Karnataka, India.

Center for Hearing Sciences, Center of Excellence, All India Institute of Speech and Hearing (AIISH), Naimisham Campus, Manasagangothri, Mysore, Karnataka, India.

出版信息

Int Arch Otorhinolaryngol. 2022 Sep 6;27(1):e56-e66. doi: 10.1055/s-0041-1741434. eCollection 2023 Jan.

Abstract

The spatial auditory system, though developed at birth, attains functional maturity in the late childhood (12 years). Spatial changes during childhood affect navigation in the environment and source segregation. Accommodation of a new skill through learning, especially during childhood, can expedite this process.  To explore the auditory spatial benefits of abacus training on psychoacoustic metrics in children. The study also aimed to identify the most sensitive metric to abacus training related changes in spatial processing, and utilize this metric for a detailed spatial error profiling.  A standard group comparison analysis with 90 participants divided into three groups: I: children with abacus training (C-AT); II: children with no training (C-UT); III: adults with no training (A-UT). The groups underwent a series of psychoacoustic tests, such as interaural time difference (ITD), interaural level difference (ILD), and virtual auditory space identification (VASI), as well as perceptual tests such as the Kannada version of the speech, spatial, and quality questionnaire (K-SSQ).  Significant group differences were observed in the multivariate analysis of variance (MANOVA) and post-hoc tests, with the C-AT group showing significantly lower ILD scores (  = 0.01) and significantly higher VASI scores ( <0.001) compared to the C-UT group, which is indicative of better spatial processing abilities in the former group. The discriminant function (DF) analyses showed that the VASI was the most sensitive metric for training-related changes, based on which elaborate error analyses were performed.  Despite the physiological limits of the immature neural framework, the performance of the C-AT group was equivalent to that of untrained adults on psychoacoustic tests, which is reflective of the positive role of abacus training in expediting auditory spatial maturation.

摘要

空间听觉系统虽然在出生时就已发育,但在童年后期(12岁)才达到功能成熟。童年时期的空间变化会影响在环境中的导航和声源分离。通过学习来适应一项新技能,尤其是在童年时期,可以加速这一过程。

为了探究算盘训练对儿童心理声学指标的听觉空间益处。该研究还旨在确定对与算盘训练相关的空间处理变化最敏感的指标,并利用该指标进行详细的空间误差分析。

对90名参与者进行标准的组间比较分析,分为三组:I:接受算盘训练的儿童(C-AT);II:未接受训练的儿童(C-UT);III:未接受训练的成年人(A-UT)。这些组进行了一系列心理声学测试,如耳间时间差(ITD)、耳间声级差(ILD)和虚拟听觉空间识别(VASI),以及诸如卡纳达语版的语音、空间和质量问卷(K-SSQ)等感知测试。

在多变量方差分析(MANOVA)和事后检验中观察到显著的组间差异,与C-UT组相比,C-AT组的ILD分数显著更低(P = 0.01),VASI分数显著更高(P < 0.001),这表明前一组具有更好的空间处理能力。判别函数(DF)分析表明,VASI是对训练相关变化最敏感的指标,并基于此进行了详细的误差分析。

尽管未成熟神经框架存在生理限制,但C-AT组在心理声学测试中的表现与未训练的成年人相当,这反映了算盘训练在加速听觉空间成熟方面的积极作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2514/9879648/eb487a72d4f8/10-1055-s-0041-1741434-i210497-1.jpg

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